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Oxygen vacancies play crucial roles in defining physical and chemical properties of materials to enhance the performances in electronics, solar cells, catalysis, sensors, and energy conversion and storage. Conventional approaches to incorporate oxygen defects mainly rely on reducing the oxygen partial pressure for the removal of product to change the equilibrium position. However, directly affecting...
A new strategy for incorporating oxygen vacancies into electrodes under aerobic conditions is realized by Shuzhou Li, Xiaodong Chen, and co‐workers, as described in article number 1906156, by applying interfacial lattice strain via surface coating, using TiO2(B) as a model system. The obtained oxygen‐deficient electrode exhibits an impressively high level of capacitive charge storage and significantly...
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