Roadmap on inorganic perovskites for energy applications

Author:

Irvine JohnORCID,Rupp Jennifer L. M.,Liu Gang,Xu Xiaoxiang,Haile Sossina,Qian XinORCID,Snyder Alem,Freer Robert,Ekren DursunORCID,Skinner Stephen,Celikbilek OzdenORCID,Chen Shigang,Tao Shanwen,Shin Tae HoORCID,O’Hayre RyanORCID,Huang Jake,Duan Chuancheng,Papac MeaganORCID,Li Shuangbin,Celorrio VeronicaORCID,Russell Andrea,Hayden Brian,Nolan Hugo,Huang Xiubing,Wang Ge,Metcalfe IanORCID,Neagu DragosORCID,Martín Susana Garcia

Abstract

Abstract Inorganic perovskites exhibit many important physical properties such as ferroelectricity, magnetoresistance and superconductivity as well their importance as energy materials. Many of the most important energy materials are inorganic perovskites and find application in batteries, fuel cells, photocatalysts, catalysis, thermoelectrics and solar thermal. In all these applications, perovskite oxides, or their derivatives offer highly competitive performance, often state of the art and so tend to dominate research into energy material. In the following sections, we review these functionalities in turn seeking to facilitate the interchange of ideas between domains. The potential for improvement is explored and we highlight the importance of both detailed modelling and in situ and operando studies in taking these materials forward.

Publisher

IOP Publishing

Subject

Materials Chemistry,General Energy,Materials Science (miscellaneous)

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