September 27, 2020 article Li 10 GeP 2 S 12 ‐Type Superionic Conductors: Synthesis, Structure, and Ionic Transportation Advanced Energy Materials DOI: 10.1002/aenm.202002153 OpenAlex Authors 0 Author list not loaded yet. Cited by 5 stored of 237 Search Sort Most cited Newest Oldest Patent citations Title Any typearticle review book-chapter conference-paper preprint dissertation book dataset other Any fieldAgricultural and Biological Sciences Arts and Humanities Biochemistry, Genetics and Molecular Biology Business, Management and Accounting Chemical Engineering Chemistry Computer Science Decision Sciences Dentistry Earth and Planetary Sciences Economics, Econometrics and Finance Energy Engineering Environmental Science Health Professions Immunology and Microbiology Materials Science Mathematics Medicine Neuroscience Nursing Pharmacology, Toxicology and Pharmaceutics Physics and Astronomy Psychology Social Sciences Veterinary Open access A Descriptor for Non‐Arrhenius Ion Transport Enables Design of Sulfide Superionic Conductors 2026 Angewandte Chemie International Edition article Engineering Advanced Battery Materials and Technologies Open access 0 citations A Descriptor for Non‐Arrhenius Ion Transport Enables Design of Sulfide Superionic Conductors 2026 Angewandte Chemie article Engineering Advanced Battery Materials and Technologies Open access 0 citations Li-Ion Conductivity of Single-Step Synthesized Glassy-Ceramic Li10GeP2S12 and Post-heated Highly Crystalline Li10GeP2S12 2023 ACS Applied Materials & Interfaces article Engineering Advanced Battery Materials and Technologies Open access 17 citations Lithium phosphosulfide electrolytes for solid-state batteries: Part II 2022 Functional Materials Letters article Engineering Advanced Battery Materials and Technologies Open access 10 citations Lithium phosphosulfide electrolytes for solid-state batteries: Part I 2022 Functional Materials Letters article Engineering Advanced Battery Materials and Technologies Open access 27 citations 5 results References 0