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4篇 您的检索式:作者名="Jorge EN"
    题名 作者 年代 出处 被引量
1G eneralised modelling approach for anaerobic co-digestion of fermentable substrates显示文摘Santiago García G en Juan M Lema Jorge Rodríguez 2013Bioresource Technology2013,147,:1
2Evaluation of oculometric parameters by facial digital photography: use of iris diameter as a reference 显示文摘Miot HA Pivotto DR Jorge EN 2008Arq Bras Oftalmol2008,71,5:1
3达康斯办公楼设计显示文摘该项目位于北墨西哥一个中等城市的郊区,当人们驾车来到这里,会发现建筑与道路形成一个恰如中世纪小镇的的拱门,透过它,人们可以看到围绕城市的乡野风光。该建筑捕捉该地区的景观特征,同时也成为城市与乡村的一条分界地标。ARQUITECTURA EN PROCESO JORGE CAJIGA ROBERTO VILLARREAL RAUL RODRIGUEZ REYES BAEZA FRANCISCO LUBBERT 2009建筑技艺2009,15,2:0
4Dynamics of lattice disorder in perovskite materials, polarization nanoclusters and ferroelectric domain wall structures显示文摘The nexus between classic ferroelectricity and the structure of perovskite materials hinges on the concept of lattice disorder.Although the ordered perovskites display short-range displacements of the central cations around their equilibrium points,the lattice disorder dynamically unfolds to generate a myriad of distorted rhombohedral lattices characterized by the hopping of the central cations across<111>directions.It is discovered that the lattice disorder correlates with the emergence of minimum configuration energy<100>pathways for the central cations,resulting in spatially modulated ultrafast polarization nanocluster arrangements that are stabilized by the electric charge defects in the material.Through high-resolution phonon dispersion analyses encompassing molecular dynamics(MD)and density functional theory(DFT)simulations,we provide unequivocal evidence linking the hopping of central cations to the development of diffuse soft phonon modes observed throughout the phase transitions of the perovskite.Through massive MD simulations,we unveil the impact of lattice disorder on the structures of domain walls at finite-temperature vis-à-vis collective activation and deactivation of<100>pathways.Furthermore,our simulations demonstrate the development of hierarchical morphotropic phase boundary(MPB)nanostructures under the combined influence of externally applied pressure and stress relaxation,characterized by sudden emergence of zig-zagged monoclinic arrangements that involve dual<111>shifts of the central cations.These findings have implications for tailoring MPBs in thin-film structures and for the light-induced mobilization of DWs.Avenues are finally uncovered to the exploration of lattice disorder through gradual shear strain application.Jan Očenášek Ján Minár Jorge Alcalá 2023npj Computational Materials2023,,1:0
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