Li10GeP2S12 (LGPS) is the fastest known Li-ion conductor to date due to the formation of one-dimensional channels with a very high Li mobility. A knowledge-based optimization of such materials for use, for example, as solid electrolyte in all-solid-state batteries requires, however, a more comprehensive understanding of Li ion conduction that considers mobility in all three dimensions, mobility between crystallites and different phases, as well as their distributions within the material. The spin alignment echo (SAE) nuclear magnetic resonance (NMR) technique is suitable to directly probe slow Li ion hops with correlation times down to about 10−5 s, but distinction between hopping time constants and relaxation processes may be ambiguous. Th...
A detailed understanding of the atomistic processes within a lithium ion battery is expected to faci...
6Li spin-alignment echo (SAE) nuclear-magnetic-resonance (NMR) spectroscopy is used to monitor singl...
Solid-state nuclear magnetic resonance spectroscopy is an efficient technique to characterize dynami...
Li10GeP2S12 (LGPS) is the fastest known Li-ion conductor to date due to the formation of one-dimensi...
Li10GeP2S12 (LGPS) is the fastest known Li-ion conductor to date due to the formation of one-dimensi...
Li10GeP2S12 (LGPS) is the fastest known Li-ion conductor to date due to the formation of one-dimensi...
Li10GeP2S12 (LGPS) is the fastest known Li-ion conductor to date due to the formation of one-dimensi...
Li10GeP2S12 (LGPS) is the fastest known Li-ion conductor to date due to the formation of one-dimensi...
Li10GeP2S12 (LGPS) is the fastest known Li-ion conductor to date due to the formation of one-dimensi...
Li10GeP2S12 (LGPS) is the fastest known Li-ion conductor to date due to the formation of one-dimensi...
\u3cp\u3eLi\u3csub\u3e10\u3c/sub\u3eGeP\u3csub\u3e2\u3c/sub\u3eS\u3csub\u3e12\u3c/sub\u3e (LGPS) is ...
This work includes the introduction and analysis of a new 2D spin-lattice relaxation ($T_\text{1}$)/...
This contribution addresses the experimental proof of the relaxation coupling of the 7Li (I = 3/2) l...
This contribution addresses the experimental proof of the relaxation coupling of the 7Li (I = 3/2) l...
Fundamental research on lithium ion dynamics in solids is important to develop functional materials ...
A detailed understanding of the atomistic processes within a lithium ion battery is expected to faci...
6Li spin-alignment echo (SAE) nuclear-magnetic-resonance (NMR) spectroscopy is used to monitor singl...
Solid-state nuclear magnetic resonance spectroscopy is an efficient technique to characterize dynami...
Li10GeP2S12 (LGPS) is the fastest known Li-ion conductor to date due to the formation of one-dimensi...
Li10GeP2S12 (LGPS) is the fastest known Li-ion conductor to date due to the formation of one-dimensi...
Li10GeP2S12 (LGPS) is the fastest known Li-ion conductor to date due to the formation of one-dimensi...
Li10GeP2S12 (LGPS) is the fastest known Li-ion conductor to date due to the formation of one-dimensi...
Li10GeP2S12 (LGPS) is the fastest known Li-ion conductor to date due to the formation of one-dimensi...
Li10GeP2S12 (LGPS) is the fastest known Li-ion conductor to date due to the formation of one-dimensi...
Li10GeP2S12 (LGPS) is the fastest known Li-ion conductor to date due to the formation of one-dimensi...
\u3cp\u3eLi\u3csub\u3e10\u3c/sub\u3eGeP\u3csub\u3e2\u3c/sub\u3eS\u3csub\u3e12\u3c/sub\u3e (LGPS) is ...
This work includes the introduction and analysis of a new 2D spin-lattice relaxation ($T_\text{1}$)/...
This contribution addresses the experimental proof of the relaxation coupling of the 7Li (I = 3/2) l...
This contribution addresses the experimental proof of the relaxation coupling of the 7Li (I = 3/2) l...
Fundamental research on lithium ion dynamics in solids is important to develop functional materials ...
A detailed understanding of the atomistic processes within a lithium ion battery is expected to faci...
6Li spin-alignment echo (SAE) nuclear-magnetic-resonance (NMR) spectroscopy is used to monitor singl...
Solid-state nuclear magnetic resonance spectroscopy is an efficient technique to characterize dynami...