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Communication: The electronic entropy of charged defect formation and its impact on thermochemical redox cycles

机译:通讯:带电缺陷形成的电子熵及其对热化学氧化还原循环的影响

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摘要

The ideal material for solar thermochemical water splitting, which has yet to be discovered, must satisfy stringent conditions for the free energy of reduction, including, in particular, a sufficiently large positive contribution from the solid-state entropy. By inverting the commonly used relationship between defect formation energy and defect concentration, it is shown here that charged defect formation causes a large electronic entropy contribution manifesting itself as the temperature dependence of the Fermi level. This result is a general feature of charged defect formation and motivates new materials design principles for solar thermochemical hydrogen production. Published by AIP Publishing.
机译:尚未发现的太阳能热化学水分裂的理想材料必须满足可减少自由能量的严格条件,特别是从固态熵的充分呈正贡献。 通过反转缺陷形成能量和缺陷浓度之间的常用关系,这里示出了充电缺陷形成导致大型电子熵贡献表现为Fermi水平的温度依赖性。 该结果是带电缺陷地层的一般特征,并激励新材料设计原理,用于太阳能热化学氢气生产。 通过AIP发布发布。

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