{"id":705,"date":"2023-05-06T12:08:47","date_gmt":"2023-05-06T10:08:47","guid":{"rendered":"https:\/\/www.ub.edu\/functionalmaterials\/publicacions\/"},"modified":"2023-05-25T13:12:07","modified_gmt":"2023-05-25T11:12:07","slug":"publicaciones","status":"publish","type":"page","link":"https:\/\/www.ub.edu\/functionalmaterials\/es\/publicaciones\/","title":{"rendered":"Publicaciones"},"content":{"rendered":"<p>[et_pb_section fb_built=\u00bb1&#8243; fullwidth=\u00bbon\u00bb _builder_version=\u00bb4.20.0&#8243; _module_preset=\u00bbdefault\u00bb global_colors_info=\u00bb{}\u00bb][et_pb_fullwidth_header title=\u00bbPublicaciones\u00bb _builder_version=\u00bb4.20.4&#8243; _module_preset=\u00bbdefault\u00bb title_font=\u00bb|300|||||||\u00bb title_font_size=\u00bb60px\u00bb use_background_color_gradient=\u00bbon\u00bb background_color_gradient_type=\u00bbcircular\u00bb background_color_gradient_direction_radial=\u00bbtop left\u00bb background_color_gradient_stops=\u00bbrgba(11,84,105,0.73) 0%|rgba(51,18,35,0.69) 32%|rgba(163,140,98,0.69) 56%|rgba(5,154,178,0.66) 87%\u00bb background_color_gradient_overlays_image=\u00bbon\u00bb background_image=\u00bbhttps:\/\/www.ub.edu\/functionalmaterials\/wp-content\/uploads\/2023\/05\/publicacions-capcalera.webp\u00bb min_height=\u00bb50vh\u00bb custom_padding=\u00bb15vh||15vh||false|false\u00bb hover_enabled=\u00bb0&#8243; custom_css_header_container=\u00bb||\u00bb custom_css_title=\u00bbmax-width:40%;\u00bb global_colors_info=\u00bb{}\u00bb custom_css_header_container_last_edited=\u00bbon|desktop\u00bb custom_css_title_last_edited=\u00bbon|phone\u00bb custom_css_title_tablet=\u00bbmax-width:80%;\u00bb custom_css_title_phone=\u00bbmax-width:100%;\u00bb custom_css_header_container_tablet=\u00bb||\u00bb custom_css_header_container_phone=\u00bb||\u00bb sticky_enabled=\u00bb0&#8243;][\/et_pb_fullwidth_header][\/et_pb_section][et_pb_section fb_built=\u00bb1&#8243; admin_label=\u00bbsection\u00bb _builder_version=\u00bb4.16&#8243; global_colors_info=\u00bb{}\u00bb][et_pb_row admin_label=\u00bbrow\u00bb _builder_version=\u00bb4.16&#8243; background_size=\u00bbinitial\u00bb background_position=\u00bbtop_left\u00bb background_repeat=\u00bbrepeat\u00bb global_colors_info=\u00bb{}\u00bb][et_pb_column type=\u00bb4_4&#8243; _builder_version=\u00bb4.16&#8243; custom_padding=\u00bb|||\u00bb global_colors_info=\u00bb{}\u00bb custom_padding__hover=\u00bb|||\u00bb][et_pb_text admin_label=\u00bbText\u00bb _builder_version=\u00bb4.20.4&#8243; text_font=\u00bb|300|||||||\u00bb background_size=\u00bbinitial\u00bb background_position=\u00bbtop_left\u00bb background_repeat=\u00bbrepeat\u00bb global_module=\u00bb706&#8243; saved_tabs=\u00bball\u00bb global_colors_info=\u00bb{}\u00bb]<\/p>\n<h2><strong>2023<\/strong><\/h2>\n<p>Eduardo Mendive Tapia, Christopher E Patrick, Tilmann Hickel, J\u00f6rg Neugebauer and Julie B Staunton<br \/><em>Quantification of electronic and magnetoelastic mechanisms of first-order magnetic phase transitions from first principles: application to caloric effects in La(FeSi)13<\/em><br \/>Journal of Physics: Energy\u00a0<strong>5<\/strong>,\u00a0034004 (2023).<\/p>\n<p>Llu\u00eds Ma\u00f1osa, Enric Stern-Taulats, Adri\u00e0 Gr\u00e0cia-Condal, and Antoni Planes<br \/><em>Cross-coupling contribution to the isothermal entropy change in multicaloric materials<\/em><br \/>J. Phys.: Energy (2023)<\/p>\n<p>Marcel Porta, Teresa Cast\u00e1n, Avadh Saxena, and Antoni Planes<br \/><em>Caloric Effects Induced by Uniform and Non-uniform Stress in Shape-Memory Materials<\/em><br \/>Shape Memory and Superelasticity, https:\/\/doi.org\/10.1007\/s40830-023-00412-6, (2023)<\/p>\n<h2><strong>2022<\/strong><\/h2>\n<p>Adri\u00e0 Gr\u00e0cia-Condal, Antoni Planes, Llu\u00eds Ma\u00f1osa, Zhiyang Wei Jianping Guo, Daniel Soto-Parra, and Jian Liu<br \/><em>Magnetic and structural entropy contributions to the multicaloric effects in Ni-Mn-Ga-Cu<\/em><br \/>PHYSICAL REVIEW MATERIALS\u00a0<strong>6<\/strong>, 084403 (2022)<\/p>\n<p>Cl\u00e0udia P\u00e9rez-Junyent, Marcel Porta, Emma Vald\u00e9s, Llu\u00eds Ma\u00f1osa, Antoni Planes, Avadh Saxena, and Eduard Vives<br \/><em>Flexocaloric effect in superelastic materials<\/em><br \/>APL Materials\u00a0<strong>10<\/strong>, 121103 (2022)<\/p>\n<p>Nicolas Candau, Eduard Vives, Ana In\u00e9s Fern\u00e1ndez, Oguzhan Oguz, Guillaume Corvec, Carlos Eloy Federico, Jo\u00e3o Paulo Cosas Fernandes, Gregory Stoclet, Maria Llu\u00efsa Maspoch<br \/><em>Observation of heterogeneities in elastocaloric natural\/wastes rubber composites<\/em><br \/>Express Polymer Letters\u00a0<strong>16<\/strong>, 1331\u20131347 (2022)<\/p>\n<p>Fei Xiao, Ashley Bucsek, Xuejun Jin, Marcel Porta, Antoni Planes<br \/><em>Giant elastic response and ultra-stable elastocaloric effect in tweed textured Fe-Pd single crystals<\/em><br \/>Acta Materialia\u00a0<strong>223<\/strong>, 117486 (2022)<\/p>\n<h2><strong>2021<\/strong><\/h2>\n<p>H.Chen, F. Xiao, Z. Li, X. Jin, L. Ma\u00f1osa, A. Planes<br \/><em>Elastocaloric effect with a broad temperature window and low energy loss in an <\/em><em style=\"font-size: 20px;\">ultrafine-grained Ti-44-Ni-5Cu-1Al (at%) shape memory alloy<br \/><\/em>Phys. Rev. Mat., 5, 015201 (2021)<\/p>\n<p>Michela Romanini, YiXu Wang, K\u00fcbra G\u00fcrpinar, Gladys Ornelas, Pol Lloveras, Yan Zhang, Wenkai Zheng, Maria Barrio, Araceli Aznar, Adri\u00e0 Gr\u00e0cia-Condal, Baris Emre, Orhan Atakol, Catalin Popescu, Hu Zhang, Yi Long, Luis Balicas, Josep Llu\u00eds Tamarit, Antoni Planes, Michael Shatruk, Llu\u00eds Ma\u00f1osa<br \/><em>Giant and Reversible Barocaloric Effect in Trinuclear Spin-Crossover Complex Fe<sub>3<\/sub>(bntrz)<sub>6<\/sub>(tcnset)<sub>6<br \/><\/sub><\/em>Adv. Mater., <strong>33<\/strong>, 2008076 (2021).<\/p>\n<p>A. Aznar, P. Negrier, A. Planes, L. Ma\u00f1osa, E. Stern-Taulats, X. Moya,<br \/>M. Barrio, J.-L. Tamarit, P. Lloveras<br \/><em>Reversible colossal barocaloric effects near room temperature in 1-X-adamantane (X=Cl, Br) plastic crystals<br \/><\/em>Appl. Mater. Today, <strong>23<\/strong>, 101023 (2021)<\/p>\n<p>F. J. Romero, J. M. Mart\u00edn-Olalla, J. S. Bl\u00e1zquez, M. C. Gallardo, D. Soto Parra, E. Vives, A. Planes<br \/><em>Thermo-magnetic characterization of phase transitions in a Ni-Mn-In metamagnetic shape memory alloy<br \/><\/em>Journal of Alloys and Compounds <strong>887<\/strong>, 161395 (2021)<\/p>\n<p>Lukas Pfeuffer, Adri\u00e0 Gr\u00e0cia-Condal, Tino Gottschall David Koch, Tom Faske, Enrico Bruder, Jonas Lemke, Andreas Taubel, Semih Ener, Franziska Scheibel, Karsten Durst, Konstantin P. Skokov, Llu\u00eds Ma\u00f1osa, Antoni Planes, Oliver Gutfleisch<br \/><em>Influence of microstructure on the application of Ni-Mn-In Heusler compounds for multicaloric cooling using magnetic field and uniaxial stress<br \/><\/em>Acta Materialia <strong>217<\/strong>,117157 (2021)<\/p>\n<p>V\u00edctor Navas-Portella, \u00c1lvaro Gonz\u00e1lez, Isabel Serra, Eduard Vives, and \u00c1lvaro Corral<br \/><em>Maximum likelihood estimation of power-law exponents for testing universality in complex <\/em><em>Systems in<\/em> <em>Multidisplinary Mathematical Modelling<br \/><\/em>Ed by F. Font and T.G. Myers<br \/>Springer Nature 2021<\/p>\n<p>Nicolas Candau, Eduard Vives, Ana In\u00e9s Fern\u00e1ndez, Maria Llu\u00efsa Maspoch<br \/><em>Elastocaloric effect in vulcanized natural rubber and natural\/wastes rubber blends<\/em><br \/>Polymer\u00a0<strong>236<\/strong>, 124309 (2021)<\/p>\n<p>Guillem Capellera, Lucia Ianniciello, Michela Romanini and Eduard Vives<br \/><em>Heat sink avalanche dynamics in elastocaloric Cu-Al-Ni single crystal detected by infrared calorimetry and gaussian filtering<\/em><br \/>Appl. Phys. Lett.\u00a0<strong>119<\/strong>, 151905 (2021)<\/p>\n<p>Marcel Porta, Teresa Cast\u00e1n, Avadh Saxena and Antoni Planes<br \/><em>Flexocaloric effect near a ferroelastic transition<\/em><br \/>PHYSICAL REVIEW B\u00a0<strong>104<\/strong>, 094108 (2021)<\/p>\n<p>Fei Xiao, Zhu Li, Hong Chen, Xuejun Jin, Antoni Planes and Takashi Fukuda<br \/><em>Origin of the inverse elastocaloric effect in a Ni-rich Ti-Ni shape memory alloy induced by oriented nanoprecipitates<\/em><br \/>PHYSICAL REVIEW MATERIALS\u00a0<strong>5<\/strong>, 053603 (2021)<\/p>\n<h2>2020<\/h2>\n<p>Llu\u00eds Ma\u00f1osa and Antoni Planes<br \/><em>Solid-state cooling by stress: A perspective<br \/><\/em>Appl. Phys. Lett. <strong>116<\/strong>, 050501 (2020)<\/p>\n<p>T. Gottschall, E. Bykov, A. Gr\u00e0cia-Condal, B. Beckmann, A. Taubel, L. Pfeuffer, O. Gutfleisch, Ll. Ma\u00f1osa, A. Planes, Y. Skourski, and J. Wosnitza<br \/><em>Advanced characterization of multicaloric materials in pulsed magnetic fields<\/em><br \/>J. Appl. Phys. <strong>127<\/strong>, 185107 (2020)<\/p>\n<p>Araceli Aznar, Pol Lloveras, Mar\u00eda Barrio, Philippe Negrier, Antoni Planes, Llu\u00eds Ma\u00f1osa, Neil D. Mathur, Xavier Moya and Josep-Llu\u00eds Tamarit<br \/><em>Reversible and irreversible colossal barocaloric effects in plastic crystals<\/em><br \/>J. Mater. Chem. A, <strong>8<\/strong>, 639 (2020)<\/p>\n<p>Lucia Ianniciello, Michela Romanini, Llu\u00eds Ma\u00f1osa, Antoni Planes, Kurt Engelbrecht, and Eduard Vives<br \/><em>Tracking the dynamics of power sources and sinks during the martensitic <\/em><em>transformation of a Cu-Al-Ni single crystal.<br \/><\/em>Appl. Phys. Lett. <strong>116<\/strong>, 183901 (2020)<\/p>\n<p>Beno\u00eet Blaysat, Xavier Balandraud, Michel Gr\u00e9diac, Eduard Vives, Noemi Barrera &amp; Giovanni Zanzotto<br \/><em>Concurrent tracking of strain and noise bursts at ferroelastic phase fronts<br \/><\/em>Communications Materials <strong>1<\/strong>, 3 (2020)<\/p>\n<p>Guillaume F. Nataf, Michela Romanini, Eduard Vives, Borut \u017du\u017eek, Antoni Planes, Jaka Tu\u0161ek, and Xavier Moya<br \/><em>Suppression of acoustic emission during superelastic tensile cycling of polycrystalline Ni50.4Ti49.6<br \/><\/em>Phys. Rev. Materials <strong>4<\/strong>, 093604 (2020)<\/p>\n<p>J. Li, D. Dunstan, X. Lou, A. Planes, L. Ma\u00f1osa, M. Barrio, J.L. Tamarit, P. Lloveras<br \/><em>Reversible barocaloric effects over a large temperature span in fullerite C<sub>60<\/sub>. <\/em><br \/>J. Mater. Chem. A <strong>8<\/strong> (2020) 20354. (Featured Article, Cover page).<\/p>\n<p>A. Gr\u00e0cia-Condal, T. Gottschall, L. Pfeuffer, O. Gutfleisch, A. Planes, L. Ma\u00f1osa<br \/><em>Multicaloric effects in metamagnetic Heusler Ni-Mn-In under uniaxial stress and magnetic field.<br \/><\/em>Appl. Phys. Rev. <strong>7<\/strong> (2020) 041406. (Featured Article, Scilight selected).<\/p>\n<h2>2019<\/h2>\n<p>Ekhard K. H. Salje, Hanlong Liu, Yang Xiao, Linsen Jin, Antoni Planes, Eduard Vives, Kainan Xie, and Xiang Jiang<br \/><em>Avalanche mixing and the simultaneous collapse of two media under uniaxial stress<br \/><\/em>Phys. Rev. E <strong>99<\/strong>, 023002 (2019)<\/p>\n<p>Yangyang Xu, Angeles G. Borrego, Antoni Planes, Xiangdong Ding, and Eduard Vives<br \/><em>Criticality in failure under compression: Acoustic emission study of coal and charcoal <\/em><em>with different microstructures<br \/><\/em>Phys. Rev. E <strong>99<\/strong>, 033001 (2019).<\/p>\n<p>Noam Zreihan, Eilon Faran, Eduard Vives, Antoni Planes, and Doron Shilo<br \/><em>Relations between stress drops and acoustic emission measured during mechanical loading<br \/><\/em>Phys. Rev. Materials <strong>3<\/strong>, 043603 (2019)<\/p>\n<p>Francisco Javier Romero, Jos\u00e9-Mar\u00eda Mart\u00edn-Olalla, Mar\u00eda Carmen Gallardo, Daniel Soto-Parra, Ekhard K. H. Salje, Eduard Vives, and Antoni Planes<br \/><em>Scale-invariant avalanche dynamics in the temperature-driven martensitic transition <\/em><em>of a Cu-Al-Be single cristal<br \/><\/em>Phys. Rev. B <strong>99<\/strong>, 224101 (2019)<\/p>\n<p>Kainan Xie, Xiang Jiang, Deyi Jiang, Yang Xiao, Shiwan Chen, Karin A. Dahmen, Eduard Vives, Antoni Planes, Ekhard K.H. Salje<br \/><em>Change of crackling noise in granite by thermal damage: Monitoring nuclear waste deposits<br \/><\/em>American Mineralogist <strong>104<\/strong>,1578\u20131584 (2019)<\/p>\n<p>Marcel Porta, Teresa Cast\u00e1n, Avadh Saxena, and Antoni Planes<br \/><em>Influence of the number of orientational domains on avalanche criticality in ferroelastic transitions<br \/><\/em>Phys. Rev. E <strong>100<\/strong>, 062115 (2019)<\/p>\n<p>Yuhai Qu, Adri\u00e0 Gr\u00e0cia-Condal, Llu\u00eds Ma\u00f1osa, Antoni Planes, Daoyong Cong, Zhihua Nie,Yang Ren, Yandong Wang<br \/><em>Outstanding caloric performances for energy-efficient multicaloric cooling in a Ni-Mn-based multifunctional alloy<br \/><\/em>Acta Materialia<strong> 177<\/strong>, 46-55 (2019).<\/p>\n<p>P. Lloveras, A. Aznar, M. Barrio, Ph. Negrier, C. Popescu, A. Planes, L. Ma\u00f1osa,<br \/>E. Stern-Taulats, A. Avramenko, N.D. Mathur, X. Moya and J.-Ll. Tamarit<br \/><em>Colossal barocaloric effects near room temperatura in plastic crystals of neopentylglycol<br \/><\/em>NATURE COMMUNICATIONS <strong>10<\/strong>, 1803 (2019).<\/p>\n<p>V\u00edctor Navas-Portella, \u00c1lvaro Gonz\u00e1lez, Isabel Serra, Eduard Vives, and \u00c1lvaro Corral<br \/><em>Universality of power-law exponents by means of maximum-likelihood estimation<br \/><\/em>Phys. Rev. E <strong>100<\/strong>, 062106 (2019).<\/p>\n<p>Araceli Aznar, Adri\u00e0 Gr\u00e0cia-Condal, Antoni Planes, Pol Lloveras, Maria Barrio, Josep-Llu\u00eds Tamarit, Wenxin Xiong, Daoyong Cong, Catalin Popescu, and Llu\u00eds Ma\u00f1osa<br \/><em>Giant barocaloric effect in all-d-metal Heusler shape memory alloys<br \/><\/em>Phys. Rev. Materials <strong>3<\/strong>, 044406 (2019).<\/p>\n<p>Daoyong Cong, Wenxin Xiong, Antoni Planes, Yang Ren, Llu\u00eds Ma\u00f1osa, Peiyu Cao, Zhihua Nie, Xiaoming Sun, Zhi Yang, Xiufeng Hong, and Yandong Wang<br \/><em>Colossal Elastocaloric Effect in Ferroelastic Ni-Mn-Ti Alloys<br \/><\/em>Phys. Rev. Lett. <strong>122<\/strong>, 255703 (2019)<\/p>\n<h2>2018<\/h2>\n<p>Adri\u00e0 Gr\u00e0cia-Condal, Enric Stern-Taulats, Antoni Planes, Eduard Vives, and Llu\u00eds Ma\u00f1osa,<br \/><em>The Giant Elastocaloric Effect in a Cu\u2013Zn\u2013Al Shape-Memory Alloy: a Calorimetric Study<br \/><\/em>Phys. Status Solidi B <strong>255<\/strong>, 1700422 (2018).<\/p>\n<p>D. Spasojevic, S. Mijatovic, V. Navas-Portella, E. Vives<br \/><em>Crossover from three-dimensional to two-dimensional systems in the nonequilibrium <\/em><em>zero-temperature random-field Ising model<br \/><\/em>Physical Review E <strong>97<\/strong>, 012109 (2018).<\/p>\n<p>Noam Zreihan, Eilon Faran, Eduard Vives, Antoni Planes and Doron Shilo<br \/><em>Coexistence of a well-determined kinetic law and a scale-invariant power law <\/em><em>during the same physical process<br \/><\/em>Physical Review B <strong>97<\/strong>, 014103 (2018).<\/p>\n<p>Ll. Ma\u00f1osa and A. Planes<br \/><em>Editorial: Special Issue on Caloric materials<\/em><br \/>J. Phys. D: Appl. Phys. 51, 070201 (2018).<\/p>\n<p>V. Navas-Portella, I. Serra, A. Corral and E. Vives<br \/><em>Increasing power-law range in avalanche amplitude and energy distributions<br \/><\/em>Physical Review E <strong>97<\/strong>, 022134 (2018).<\/p>\n<p>Enric Stern-Taulats, Teresa Cast\u00e1n, Llu\u00eds Ma\u00f1osa, Antoni Planes, Neil D. Mathur, and Xavier Moya<br \/><em>Multicaloric materials and effects<br \/><\/em>MRS Bulletin <strong>43<\/strong>, 295 (2018).<\/p>\n<p>Jordi Bar\u00f3, Karin A. Dahmen, J\u00f6rn Davidsen, Antoni Planes, Pedro O. Castillo, Guillaume F. Nataf, Ekhard K. H. Salje and Eduard Vives<br \/><em>Experimental Evidence of Accelerated Seismic Release without Critical Failure <\/em><em>in Acoustic Emissions of Compressed Nanoporous Materials<br \/><\/em>Physical Review Letters <strong>120<\/strong>, 245501 (2018).<\/p>\n<p>Daniel Soto-Parra, Eduard Vives, M. E. Botello-Zubiate, J. A. Matutes-Aquino, and Antoni Planes<br \/><em>Acoustic emission avalanches during compression of granular manganites<br \/><\/em>Appl. Phys. Lett. <strong>112<\/strong>, 251906 (2018).<\/p>\n<p>Adri\u00e0 Gr\u00e0cia-Condal, Enric Stern-Taulats, Antoni Planes, and Llu\u00eds Ma\u00f1osa<br \/><em>Caloric response of Fe49Rh51 subjected to uniaxial load and magnetic field<br \/><\/em>Physical Review Materials <strong>2<\/strong>, 084413 (2018)<\/p>\n<p>Marcel Porta, Teresa Cast\u00e1n, Pol Lloveras, Avadh Saxena, and Antoni Planes<br \/><em>Intermittent dynamics in externally driven ferroelastics and strain glasses<br \/><\/em>Physical Review E <strong>98<\/strong>, 032143 (2018).<\/p>\n<p>Tino Gottschall, Adri\u00e0 Gr\u00e0cia-Condal, Maximilian Fries, Andreas Taubel, Lukas Pfeuffer,Llu\u00eds Ma\u00f1osa, Antoni Planes, Konstantin P. Skokov and Oliver Gutfleisch<br \/><em>A multicaloric cooling cycle that exploits termal hysteresis<br \/><\/em>Nature Materials <strong>17<\/strong>, 929-934 (2018).<\/p>\n<p>Jonathan F. Gebbia, Teresa Cast\u00e1n, Pol Lloveras, Marcel Porta, Avadh Saxena, and Antoni Planes<br \/><em>Multiferroic and Related Hysteretic Behavior in Ferromagnetic Shape Memory Alloys<br \/><\/em>Physica Status Solidi b <strong>255<\/strong>, 1700327 (2018)<\/p>\n<p>P. Lloveras, T. Cast\u00e1n, M. Porta, A. Saxena, and A. Planes<br \/><em>Mesoscopic Modelling of Strain Glass <\/em>in \u201cFrustrated Materials and Ferroic Glasses\u201d,<br \/>Springer Series in Materials Science <strong>275<\/strong>,<br \/>Springer Nature Switzerland AG 2018<\/p>\n<h2>2017<\/h2>\n<p>L. Ma\u00f1osa &amp; A. Planes,<br \/><em>Materials with Giant Mechanocaloric Effects:Cooling by Strength<\/em>,<br \/>Adv. Mater. <strong>29<\/strong>, 1603607 (2017).<\/p>\n<p>G. Torrents, X. Illa, E. Vives &amp; A. Planes<br \/><em>Geometrical model for martensitic phase transitions: Understanding criticality and weak universality during microstructure growth,<br \/><\/em>Phys. Rev. E <strong>95<\/strong>, 013001 (2017).<\/p>\n<p>Juan-Pablo Camarillo, Christian-Omar Aguilar-Ortiz, Horacio Flores-Z\u00fa\u00f1iga, David R\u00edos-Jara, Daniel-Enrique Soto-Parra, Enric Stern-Taulats, Llu\u00eds Ma\u00f1osa and Antoni Planes<br \/><em>Large and reversible elastocaloric effect near room temperature in a Ga-doped Ni\u2013Mn\u2013In metamagnetic shape-memory alloy<br \/><\/em>Functional Materials Letters <strong>10<\/strong>,1740007 (2017).<\/p>\n<p>Enric Stern-Taulats, Teresa Cast\u00e1n, Antoni Planes, Laura H. Lewis, Radhika Barua, Sabyasachi Pramanick, Subham Majumdar and Llu\u00eds Ma\u00f1osa.<br \/><em>Giant multicaloric response of bulk Fe<sub>49<\/sub>Rh<sub>51<\/sub>,<br \/><\/em>Physical Review B <strong>95<\/strong>, 104424 (2017).<\/p>\n<p>V. Soprunyuk, S. Puchberger, A. Tr\u00f6ster, E. Vives, E.K.H.Salje and W.Schranz,<br \/><em>Strain intermittency due to avalanches in ferroelastic and porous materials<\/em>,<br \/>J. Phys.: Condens. Matter. <strong>29<\/strong>, 224002 (2017).<\/p>\n<p>Llu\u00eds Hern\u00e1ndez-Navarro, Javier G. Orlandi, Benedetta Cerruti, Eduard Vives, and Jordi Soriano,<br \/><em>Dominance of Metric Correlations in Two-Dimensional Neuronal Cultures Described through a Random Field Ising Model,<br \/><\/em>Physical Review Letters <strong>118<\/strong>, 208101 (2017)<\/p>\n<p>Tino Gottschall, Enric Stern-Taulats, Llu\u00eds Ma\u00f1osa, Antoni Planes, Konstantin P. Skokov, and Oliver Gutfleisch,<br \/><em>Reversibility of minor hysteresis loops in magnetocaloric Heusler alloys,<br \/><\/em>Appl. Phys. Lett. <strong>110<\/strong>, 223904 (2017).<\/p>\n<p>A. Planes &amp; E. Vives<br \/><em>Avalanche criticality in thermal-driven martensitic transitions: the asymmetry of the forward and <\/em><em>reverse transitions in shape-memory materials,<\/em><br \/>J. Phys.: Condens. Matter <strong>29,<\/strong> 334001 (2017).<\/p>\n<p>Ekhard K. H. Salje, Antoni Planes and Eduard Vives,<br \/><em style=\"font-size: 20px;\">Analysis of crackling noise using the maximum-likelihood method: Power-law mixing and exponential damping,<br \/><\/em>Physical Review E <strong>96<\/strong>, 042122 (2017).<\/p>\n<p>Araceli Aznar, Pol Lloveras, Michela Romanini, Mar\u00eda Barrio, Josep-Llu\u00eds Tamarit, Claudio Cazorla, Daniel Errandonea, Neil D. Mathur, Antoni Planes, Xavier Moya and Llu\u00eds Ma\u00f1osa,<br \/><em>Giant barocaloric effects over a wide temperature range in superionic conductor AgI,<br \/><\/em>Nature Communications <strong>8<\/strong>, 1851 (2017).<\/p>\n<p>Dewei Zhao, Teresa Cast\u00e1n, Antoni Planes, Zongbin Li, Wen Sun and Jian Liu,<br \/><em>Enhanced caloric effect induced by magnetoelastic coupling in NiMnGaCu Heusler alloys: Experimental study and theoretical analysis,<br \/><\/em>Physcal Review B <strong>96<\/strong>, 224105 (2017).<\/p>\n<p>Eduard Vives, Jordi Bar\u00f3 and Antoni Planes,<br \/><em>From Labquakes in Porous Materials to Earthquakes<\/em>, in Avalanches and functional materials in Geophysics, Springer-Verlag (2017).<br \/>Edited by E.K.H. Salje, A. Saxena and A. Planes<\/p>\n<p>Viktor Soprunyuk, Sabine Puchberger, Wilfried Schranz, Andreas Tr\u00f6ster, Eduard Vives and Ekhard K.H. Salje,<br \/><em>Towards a Quantitative Analysis of Crackling Noise by Strain Drop Measurements <\/em><em>in Avalanches and functional materials in Geophysics, Springer-Verlag (2017).<br \/><\/em><span style=\"font-size: 20px;\">Edited by E.K.H. Salje, A. Saxena and A. Planes<\/span><\/p>\n<h2>2016<\/h2>\n<p>J. Bar\u00f3, A. Planes, E.K. H. Salje &amp; E. Vives<br \/><em>Fracking and labquakes<br \/><\/em>Philosophical Magazine, <strong>96<\/strong>:35, 3686 (2016) Q1<\/p>\n<p>J. Bar\u00f3, P. Shyu, S. Pang, I.M. Jasiuk, E. Vives, E.K. H. Salje, and A. Planes<br \/><em>Avalanche criticality during compression of porcine cortical bone of different ages<br \/><\/em>Phys. Rev. E <strong>93<\/strong>, 053001 (2016) Q1<\/p>\n<p>E. Vives, J. Bar\u00f3, M.C. Gallardo, J.M. Mart\u00edn-Olalla, F.J. Romero, S.L. Driver, M.A. Carpenter, E.K. H. Salje, M. Stipcich, R. Romero, and A. Planes<br \/><em>Avalanche criticalities and elastic and calorimetric anomalies of the transition from <\/em><em>cubic Cu-Al-Ni to a mixture of 18R and 2H structures<br \/><\/em>Phys. Rev. B <strong>94<\/strong>, 024102 (2016). Q1<\/p>\n<p>V\u00edctor Navas-Portella and Eduard Vives<br \/><em>Influence of the aspect ratio and boundary conditions on universal finite-size scaling functions in the athermal metastable two-dimensional random field Ising model<br \/><\/em>Phys. Rev. E <strong>93<\/strong>, 022129 (2016) Q1<\/p>\n<p>D. Soto-Parra, E. Vives, L. Ma\u00f1osa, J. A. Matutes-Aquino, H. Flores-Z\u00fa\u00f1iga, and A.Planes<br \/><em>Elastocaloric effect in Ti-Ni shape-memory wires associated with the B2 \u2194 B19&#8242; and B2<br \/><\/em><em>\u2194 R structural transitions<br \/><\/em>Applied Physics Letters <strong>108<\/strong>, 071902 (2016) Q1<\/p>\n<p>Juan-Pablo Camarillo, Enric Stern-Taulats, Llu\u00eds Ma\u00f1osa, Horacio Flores-Z\u00fa\u00f1iga, David R\u00edos-Jara and Antoni Planes<br \/><em>Expanding the magnetocaloric operation range in Ni\u2013Mn\u2013In Heusler alloys by Cu-doping<br \/><\/em>J.Phys. D: Appl. Phys <strong>49<\/strong> 125006 (2016) Q1<\/p>\n<p>E. Stern-Taulats, P. Lloveras, M. Barrio, E. Defay, M. Egilmez, A. Planes, J.LI.Tamarit, L. Ma\u00f1osa, N. D. Mathur, and X. Moya<br \/><em>Inverse barocaloric effects in ferroelectric BaTiO3 ceramics<br \/><\/em>APL Mater. 4, 091102 (2016) Q2<\/p>\n<p>Jaka Tusek, Kurt Engelbrecht, Lluis Ma\u00f1osa, Eduard Vives, Nini Pryds<br \/><em>Understanding the Thermodynamic Properties of the Elastocaloric Effect Through Experimentation and Modelling<br \/><\/em>Shap. Mem. Superelasticity DOI <strong>10<\/strong>.1007\/s40830-016-0094-8 (2016).<\/p>\n<p>Antoni Planes, Teresa Cast\u00e1n and Avadh Saxena<br \/><em>Thermodynamics of multicaloric effects in multiferroic materials: application to metamagnetic shape-memory alloys and ferrotoroidics<br \/><\/em>Phil. Trans. R. Soc. A <strong>374<\/strong>: 20150304 (2016) Q1<\/p>\n<p>L. Ma\u00f1osa, A. Planes<br \/><em>\u201cMechanocaloric effects in shape memory alloys\u201d<br \/><\/em>Phil. Trans. R. Soc. A <strong>374<\/strong>, 20150310 (2016) Q1<\/p>\n<h2>2015<\/h2>\n<p><strong>\u00a0<\/strong><br \/>D. Soto-Parra, X. Zhang, S. Cao, E. Vives, E. K. H. Salje, and A. Planes<br \/><em>Avalanches in compressed Ti-Ni shape-memory porous alloys: an acoustic emission study<br \/><\/em>Phys. Rev. E, Rapid Comm., <strong>91<\/strong>, 060401(R) (2015) Q1<\/p>\n<p>Xavier Illa, Phillip Winkelmayer, and Eduard Vives<br \/><em>Local strain variability and force fluctuations during the martensitic transition under different driving mechanisms<br \/><\/em>Physical Review B <strong>92<\/strong>, 184107 (2015) Q1<\/p>\n<p>T. Charignon, P. Lloveras, D. Chatain, L. Truskinovsky, E. Vives, D.B eysens adn V.S. Nikolayev<br \/><em>Criticality in the slowed down boiling crisis at zero gravity<br \/><\/em>Phys. Rev. E <strong>91<\/strong>, 053007 (2015). Q1<\/p>\n<p>J. Tusek, K. Engelbrecht, R. Mill\u00e1n-Solsona, L. Ma\u00f1osa, E. Vives, L.P. Mikkelsen and N. Pryds<br \/><em>The Elastocaloric Effect: A Way to Cool Efficiently<br \/><\/em>Advanced Energy Materials <strong>5<\/strong>, 13 (2015) Q1<\/p>\n<p>S. Agarwal, E. Stern-Taulats, L. Ma\u00f1osa, P.K. Mukhopadhyay<br \/><em>Effect of low temperature annealing on magento-caloric effect on Ni-Mn-Sn-Al ferromagnetic shape memory alloy<br \/><\/em>Journal of Alloys and Compounds, <strong>641<\/strong>, 244-248 (2015). Q1<\/p>\n<p>E. Stern-Taulats, A. Gr\u00e0cia-Condal, A. Planes, L. Ma\u00f1osa, P. Lloveras, M. Barrio, J.L. Tamarit, S. Pramanick, S. Majumdar<br \/><em>Reversible adiabatic temperature changes at the magnetocaloric and barocaloric effects in Fe49Rh5<br \/><\/em>Applied Physics Letters <strong>107<\/strong>, 152409 (2015) Q1<\/p>\n<p>P. Lloveras, E. Stern-Taulats, M. Barrio, J.L. Tamarit, S. Crossley, W. Li, V. Pomjakushin, A. Planes, L. Ma\u00f1osa, N. D. Mathur, and X. Moya<br \/><em>Giant barocaloric effect at low pressure in ferrielectric ammonium sulphate<br \/><\/em>Nature Communications DOI: <strong>10<\/strong>.1038\/ncomms9801 (2015) Q1<\/p>\n<p>E. Stern-Taulats, A. Planes, P. Lloveras, M-Barrio, J.L. Tamarit,<br \/>S. Pramanick, S. Majumdar, S. Yu\u0308ce, B. Emre, C. Frontera, L. Ma\u00f1osa<br \/><em>Tailoring barocaloric and magnetocaloric properties in low-hysteresis magnetic shape memory alloys<br \/><\/em>Acta Materialia <strong>96<\/strong>, 324 (2015) Q1<\/p>\n<p>A. Planes, E. Stern-Taulats, T. Cast\u00e1n, E. Vives, L. Ma\u00f1osa and A. Saxena<br \/><em>Caloric and multicaloric effects in shape memory alloys<br \/><\/em>Materials Today Proceedings <strong>2S<\/strong>, S477 (2015) Q1<\/p>\n<p>J. F. Gebbia, P. Lloveras, T. Cast\u00e1n and A. Planes<br \/><em>Modelling shape-memory effects in ferromagnetic alloys<br \/><\/em>Shape memory &amp; Superelasticity, <strong>1<\/strong>, 347 (2015)<\/p>\n<p>A.Puisto, M.Mohtaschemi, M.J. Alava, and X.Illa<br \/><em>Dynamic hysteresis in the rheology of complex fluids<br \/><\/em>Physical Review E <strong>91<\/strong>, 042314 (2015) Q1<\/p>\n<p>E. Mendive-Tapia, T. Cast\u00e1n<br \/><em>Magnetocaloric and barocaloric responses in magnetovolumic systems<br \/><\/em>Phys. Rev. B<strong>91<\/strong>, 224421 (2015) Q1<\/p>\n<h2>2014<\/h2>\n<p>G. F. Nataf, P. O. Castillo-Villa, X. Illa, E. Vives, A. Planes, J. Bar\u00f3, and E. K. H. Salje<br \/><em>Avalanches in compressed porous SiO2-based materials<br \/><\/em>Phys. Rev. E, <strong>90<\/strong>, 022405 (2014) Q1<\/p>\n<p>G.F. Nataf, P. O. Castillo-Villa, P. Sellappan, W. M. Kriven, E. Vives, A. Planes, and E. K. H. Salje<br \/><em>Predicting Failure: Acoustic Emission of Berlinite under Compression<\/em><br \/>J. Phys. Cond. Matter, <strong>26<\/strong>, 275401 (2014) Q2<\/p>\n<p>R. Niemann, J.Kopecek, O.Heczko, J.Romberg, L.Schultz, S. F\u00e4hler, E.Vives, L.Ma\u00f1osa, and A.Planes<br \/><em>Localizing sources of acoustic emission during the martensitic transformation<br \/><\/em>Phys. Rev. B, <strong>89<\/strong>, 214118 (2014) Q1<\/p>\n<p>Jordi Bar\u00f3, Jos\u00e9-Mar\u00eda Mart\u00edn-Olalla, Francisco Javier Romero, Mar\u00eda Carmen Gallardo, Ekhard K H Salje, Eduard Vives and Antoni Planes<br \/><em>Avalanche correlations in the martensitic transition of a Cu\u2013Zn\u2013Al shape memory alloy: analysis of acoustic emission and calorimetry<\/em><br \/>J. Phys.: Condens. Matter <strong>26<\/strong>, 125401 (2014) Q2<\/p>\n<p>E. Stern-Taulats, P. O.Castillo-Villa, L.Ma\u00f1osa, C.Frontera, S. Pramanick, S. Majumdar, A. Planes<br \/><em>Magnetocaloric effect in the low hysteresis Ni-Mn-In metamagnetic shape-memory Heusler alloy<\/em><br \/>J. Appl. Phys., <strong>115<\/strong>, 173907 (2014). Q2<\/p>\n<p>L. Ma\u00f1osa, E. Stern-Taulats, A. Planes, P. Lloveras, M. Barrio, J. L. Tamarit, B. Emre, S. Yuce, S. Fabbrici, and F. Albertini<br \/><em>Barocaloric effect in metamagnetic shape memory alloys<br \/><\/em>Phys. Stat. Sol. b, <strong>251<\/strong>, 2080-7 (2014) Q3<\/p>\n<p>R. Millan-Solsona, E. Stern-Taulats, E. Vives, A. Planes, J. Sharma, A. K. Nayak, K. G. Suresh and Ll. Ma\u00f1osa<br \/><em>Large entropy change associated with the elastocaloric effect in polycrystalline Ni-Mn-Sb-Co magnetic shape memory alloys<br \/><\/em>Appl. Phys. Lett., <strong>105<\/strong>, 241901 (2014) Q1<\/p>\n<p>E. Stern-Taulats, A. Planes, P. Lloveras, M. Barrio, J. L. Tamarit, S. Pramanick, S. Majumdar, C. Frontera, and Ll. Ma\u00f1osa<br \/><em>Barocaloric and magnetocaloric effects in Fe49Rh51<br \/><\/em>Phys. Rev. B, <strong>89<\/strong>, 214105 (2014) Q1<\/p>\n<p>P. Lloveras, G. Touchagues, T. Cast\u00e1n, T. Lookman, M. Porta, A. Saxena, and A. Planes<br \/><em>Modelling magnetostructural textures in magnetic shape-memory alloys: strain and magnetic glass behaviour<br \/><\/em>Phys. Stat. Sol. b, <strong>251<\/strong>, 2114 (2014) Q3<\/p>\n<p>A. Planes, T. Cast\u00e1n and A. Saxena<br \/><em>Recent progress in the thermodynamics of ferrotoroidic materials<br \/><\/em>Multiferroic materials, <strong>1<\/strong>, 9-22 (2014)<\/p>\n<p>A. Planes, T. Cast\u00e1n, and A. Saxena<br \/><em>Thermodynamics of multicaloric effects in multiferroics<br \/><\/em>Philos. Mag., <strong>94<\/strong>, 1893 (2014) Q1<\/p>\n<p>Antoni Planes and Llu\u00eds Ma\u00f1osa<br \/><em>Nanoscale oxides shape up<br \/><\/em>Nature Materials <strong>13<\/strong>, 6-8 (2014) Q1<\/p>\n<p>&nbsp;<\/p>\n<p>[\/et_pb_text][\/et_pb_column][\/et_pb_row][\/et_pb_section]<\/p>\n","protected":false},"excerpt":{"rendered":"<p>2023 Eduardo Mendive Tapia, Christopher E Patrick, Tilmann Hickel, J\u00f6rg Neugebauer and Julie B StauntonQuantification of electronic and magnetoelastic mechanisms of first-order magnetic phase transitions from first principles: application to caloric effects in La(FeSi)13Journal of Physics: Energy\u00a05,\u00a0034004 (2023). Llu\u00eds Ma\u00f1osa, Enric Stern-Taulats, Adri\u00e0 Gr\u00e0cia-Condal, and Antoni PlanesCross-coupling contribution to the isothermal entropy change in multicaloric [&hellip;]<\/p>\n","protected":false},"author":1,"featured_media":0,"parent":0,"menu_order":0,"comment_status":"closed","ping_status":"closed","template":"","meta":{"_acf_changed":false,"_et_pb_use_builder":"on","_et_pb_old_content":"","_et_gb_content_width":"","inline_featured_image":false,"footnotes":""},"class_list":["post-705","page","type-page","status-publish","hentry"],"acf":[],"yoast_head":"<!-- This site is optimized with the Yoast SEO plugin v27.2 - https:\/\/yoast.com\/product\/yoast-seo-wordpress\/ -->\n<title>Publicaciones - Materiales Funcionales y Transiciones de Fase<\/title>\n<meta name=\"robots\" content=\"index, follow, max-snippet:-1, max-image-preview:large, max-video-preview:-1\" \/>\n<link rel=\"canonical\" href=\"https:\/\/www.ub.edu\/functionalmaterials\/es\/publicaciones\/\" \/>\n<meta property=\"og:locale\" content=\"es_ES\" \/>\n<meta property=\"og:type\" content=\"article\" \/>\n<meta property=\"og:title\" content=\"Publicaciones - Materiales Funcionales y Transiciones de Fase\" \/>\n<meta property=\"og:description\" content=\"2023 Eduardo Mendive Tapia, Christopher E Patrick, Tilmann Hickel, J\u00f6rg Neugebauer and Julie B StauntonQuantification of electronic and magnetoelastic mechanisms of first-order magnetic phase transitions from first principles: application to caloric effects in La(FeSi)13Journal of Physics: Energy\u00a05,\u00a0034004 (2023). Llu\u00eds Ma\u00f1osa, Enric Stern-Taulats, Adri\u00e0 Gr\u00e0cia-Condal, and Antoni PlanesCross-coupling contribution to the isothermal entropy change in multicaloric [&hellip;]\" \/>\n<meta property=\"og:url\" content=\"https:\/\/www.ub.edu\/functionalmaterials\/es\/publicaciones\/\" \/>\n<meta property=\"og:site_name\" content=\"Materiales Funcionales y Transiciones de Fase\" \/>\n<meta property=\"article:modified_time\" content=\"2023-05-25T11:12:07+00:00\" \/>\n<meta name=\"twitter:card\" content=\"summary_large_image\" \/>\n<meta name=\"twitter:label1\" content=\"Tiempo de lectura\" \/>\n\t<meta name=\"twitter:data1\" content=\"15 minutos\" \/>\n<script type=\"application\/ld+json\" class=\"yoast-schema-graph\">{\"@context\":\"https:\/\/schema.org\",\"@graph\":[{\"@type\":\"WebPage\",\"@id\":\"https:\/\/www.ub.edu\/functionalmaterials\/es\/publicaciones\/\",\"url\":\"https:\/\/www.ub.edu\/functionalmaterials\/es\/publicaciones\/\",\"name\":\"Publicaciones - Materiales Funcionales y Transiciones de Fase\",\"isPartOf\":{\"@id\":\"https:\/\/www.ub.edu\/functionalmaterials\/es\/#website\"},\"datePublished\":\"2023-05-06T10:08:47+00:00\",\"dateModified\":\"2023-05-25T11:12:07+00:00\",\"breadcrumb\":{\"@id\":\"https:\/\/www.ub.edu\/functionalmaterials\/es\/publicaciones\/#breadcrumb\"},\"inLanguage\":\"es\",\"potentialAction\":[{\"@type\":\"ReadAction\",\"target\":[\"https:\/\/www.ub.edu\/functionalmaterials\/es\/publicaciones\/\"]}]},{\"@type\":\"BreadcrumbList\",\"@id\":\"https:\/\/www.ub.edu\/functionalmaterials\/es\/publicaciones\/#breadcrumb\",\"itemListElement\":[{\"@type\":\"ListItem\",\"position\":1,\"name\":\"Inici\",\"item\":\"https:\/\/www.ub.edu\/functionalmaterials\/es\/\"},{\"@type\":\"ListItem\",\"position\":2,\"name\":\"Publicaciones\"}]},{\"@type\":\"WebSite\",\"@id\":\"https:\/\/www.ub.edu\/functionalmaterials\/es\/#website\",\"url\":\"https:\/\/www.ub.edu\/functionalmaterials\/es\/\",\"name\":\"Materials funcionals i trancicions de fase\",\"description\":\"Grupo de investigaci\u00f3n de la Universitat de Barcelona (UB)\",\"publisher\":{\"@id\":\"https:\/\/www.ub.edu\/functionalmaterials\/es\/#organization\"},\"potentialAction\":[{\"@type\":\"SearchAction\",\"target\":{\"@type\":\"EntryPoint\",\"urlTemplate\":\"https:\/\/www.ub.edu\/functionalmaterials\/es\/?s={search_term_string}\"},\"query-input\":{\"@type\":\"PropertyValueSpecification\",\"valueRequired\":true,\"valueName\":\"search_term_string\"}}],\"inLanguage\":\"es\"},{\"@type\":\"Organization\",\"@id\":\"https:\/\/www.ub.edu\/functionalmaterials\/es\/#organization\",\"name\":\"Materials funcionals i trancicions de fase\",\"url\":\"https:\/\/www.ub.edu\/functionalmaterials\/es\/\",\"logo\":{\"@type\":\"ImageObject\",\"inLanguage\":\"es\",\"@id\":\"https:\/\/www.ub.edu\/functionalmaterials\/es\/#\/schema\/logo\/image\/\",\"url\":\"https:\/\/www.ub.edu\/functionalmaterials\/wp-content\/uploads\/2023\/05\/favicon.png\",\"contentUrl\":\"https:\/\/www.ub.edu\/functionalmaterials\/wp-content\/uploads\/2023\/05\/favicon.png\",\"width\":250,\"height\":291,\"caption\":\"Materials funcionals i trancicions de fase\"},\"image\":{\"@id\":\"https:\/\/www.ub.edu\/functionalmaterials\/es\/#\/schema\/logo\/image\/\"}}]}<\/script>\n<!-- \/ Yoast SEO plugin. -->","yoast_head_json":{"title":"Publicaciones - Materiales Funcionales y Transiciones de Fase","robots":{"index":"index","follow":"follow","max-snippet":"max-snippet:-1","max-image-preview":"max-image-preview:large","max-video-preview":"max-video-preview:-1"},"canonical":"https:\/\/www.ub.edu\/functionalmaterials\/es\/publicaciones\/","og_locale":"es_ES","og_type":"article","og_title":"Publicaciones - Materiales Funcionales y Transiciones de Fase","og_description":"2023 Eduardo Mendive Tapia, Christopher E Patrick, Tilmann Hickel, J\u00f6rg Neugebauer and Julie B StauntonQuantification of electronic and magnetoelastic mechanisms of first-order magnetic phase transitions from first principles: application to caloric effects in La(FeSi)13Journal of Physics: Energy\u00a05,\u00a0034004 (2023). 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