Wide bandgap perovskite oxides with high room temperature conductivities and structural compatibility with a diverse family of organic/inorganic perovskite materials are of significant …
A Prakash, B Jalan - Advanced Materials Interfaces, 2019 - Wiley Online Library
Perovskite oxides are ABO3‐type compounds with a crystal structure capable of accommodating a large number of elements at A‐and B‐sites. Owing to their flexible …
Crystal field (CF) control of rare-earth (RE) ions has been employed to minimize decoherence in qubits and to enhance the effective barrier of single-molecule magnets. The …
ASnO 3 (A= Ba, Sr) are unique perovskite oxides in that they have superior electron conductivity despite their wide optical band gaps. Using first-principles band structure …
Designing alternatives to TiO 2 electron-transport layers (ETLs) for facile electron extraction and transport to enhance the efficiency of nip structured carbon perovskite solar cells …
BaSnO 3 (BSO) is a transparent perovskite oxide with high room-temperature mobility, a property that is highly desirable for a channel material in transistors. However, its low density …
BaSnO 3 (BSO) is a promising transparent conducting oxide with reported room-temperature (RT) Hall mobility exceeding 320 cm 2 V− 1 s− 1. Among perovskite oxides, it has the …
Owing to its high room-temperature electron mobility and wide bandgap, BaSnO 3 has recently become of significant interest for potential room-temperature oxide electronics. A …
We report optical properties of doped n-type SrSnO 3 and ZnSnO 3 in relation to potential application as transparent conductors. We find that the orthorhombic distortion of the …