Anti-perovskites for solid-state batteries: recent developments, current challenges and future prospects
Current commercial batteries cannot meet the requirements of next-generation technologies,
meaning that the creation of new high-performance batteries at low cost is essential for the …
meaning that the creation of new high-performance batteries at low cost is essential for the …
Antiperovskite superionic conductors: a critical review
Antiperovskites of composition M3AB (M= Li, Na, K; A= O; B= Cl, Br, I, NO2, etc.) have
recently been investigated as solid-state electrolytes for all-solid-state batteries. Inspired by …
recently been investigated as solid-state electrolytes for all-solid-state batteries. Inspired by …
A Hybrid Antiperovskite with Strong Linear and Second‐Order Nonlinear Optical Responses
M Li, X Zhang, Z ** and defect clustering in the anti-perovskite Na 3 OCl sodium-ion conductor
Solid-state batteries present potential advantages over their liquid-based electrolyte
equivalents, including enhanced safety and increased energy density. In the search for …
equivalents, including enhanced safety and increased energy density. In the search for …
Novel synthesis of semiconductor chalcohalide anti-perovskites by low-temperature molecular precursor ink deposition methodologies
In recent years, a growing interest in the development of new energy harvesting
technologies based on earth-abundant, environmentally-friendly semiconductors, has led to …
technologies based on earth-abundant, environmentally-friendly semiconductors, has led to …
Accelerated Workflow for Antiperovskite‐based Solid State Electrolytes
BH Sjølin, PB Jørgensen, A Fedrigucci… - Batteries & …, 2023 - Wiley Online Library
We developed and implemented a multi‐target multi‐fidelity workflow to explore the
chemical space of antiperovskite materials with general formula X3BA (X= Li, Na, Mg) and …
chemical space of antiperovskite materials with general formula X3BA (X= Li, Na, Mg) and …
Exploring the synthesis of alkali metal anti-perovskites
The development of solid-state batteries has been slowed by limited understanding of the
features that control ion mobility in solid electrolytes (SEs). In the case of anti-perovskite (AP) …
features that control ion mobility in solid electrolytes (SEs). In the case of anti-perovskite (AP) …
Fast ion-conducting thioboracite with a perovskite topology and argyrodite-like lithium substructure
We report a new fast ion-conducting lithium thioborate halide, Li6B7S13I, that crystallizes in
either a cubic or tetragonal thioboracite structure, which is unprecedented in boron–sulfur …
either a cubic or tetragonal thioboracite structure, which is unprecedented in boron–sulfur …