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THE NEW MODEL FOR CALCULATION OF STANDARD ENTROPIES OF SOLID COMPOUNDS Ⅲ CALCULATION FOR STANDARD ENTROPIES OF SOLID BINARY OXIDES
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作者 Xun Min YU Yuan Li ZHAO Dao Wu YANG (Jingzhou Educalional College Hubei. 414100) 《Chinese Chemical Letters》 SCIE CAS CSCD 1991年第5期405-406,共2页
This paper establishes a new model for calculation of the standard entropies of solid binary oxides as follows: S_(29)=27.07×Φ_1+1.120×Φ_2+n_1×k×Φ, -22.19 e.u (R=0.9960) We have invesigated 103 ... This paper establishes a new model for calculation of the standard entropies of solid binary oxides as follows: S_(29)=27.07×Φ_1+1.120×Φ_2+n_1×k×Φ, -22.19 e.u (R=0.9960) We have invesigated 103 binary oxides. and found good agreemenl between estimated and experimental entropies. 展开更多
关键词 calculation FOR STANDARD ENTROPIES OF SOLID BINARY OXIDES THE NEW MODEL FOR calculation OF STANDARD ENTROPIES OF SOLID COMPOUNDS
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Accelerating structure relaxation in chemically disordered materials with a chemistry-driven model
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作者 Liying An Huan Ma +2 位作者 Jinjia Liu Wenping Guo Xiaodong Wen 《npj Computational Materials》 2025年第1期2437-2446,共10页
Chemically disordered materials are widely utilized,yet establishing structure-property relationship remains challenging due to their vast configurational space.Identifying thermal accessible low energy configurations... Chemically disordered materials are widely utilized,yet establishing structure-property relationship remains challenging due to their vast configurational space.Identifying thermal accessible low energy configurations of these materials through standard ab initio calculations is computationally expensive for doping induced structure changes.In this work,we propose a straightforward algorithm to optimize random structures into ground state configurations by matching chemical subgraphs.This algorithm constructs harmonic potential with chemistry-driven parameterization,without relying on iterative training to accelerate the relaxation process.It can completely bypass the need for relaxation with ab initio calculations in rigid systems and reduce computational costs by 30%in flexible systems.Leveraging its exceptional structural relaxation capabilities,we have also developed a generalized workflow for screening low-energy structures in disordered materials,aimed at expediting the screening process and accelerating new material discovery. 展开更多
关键词 accelerating structure relaxation harmonic potential matching chemical subgraphsthis optimize random structures ground state configurations standard ab initio calculations chemically disordered materials chemistry driven model thermal accessible low energy configurations
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