4.6 Article

Development of bulk-type all-solid-state lithium-sulfur battery using LiBH4 electrolyte

Related references

Note: Only part of the references are listed.
Article Chemistry, Multidisciplinary

Complex Hydrides for Electrochemical Energy Storage

Atsushi Unemoto et al.

ADVANCED FUNCTIONAL MATERIALS (2014)

Article Chemistry, Multidisciplinary

Sodium superionic conduction in Na2B12H12

Terrence J. Udovic et al.

CHEMICAL COMMUNICATIONS (2014)

Article Chemistry, Multidisciplinary

A novel inorganic solid state ion conductor for rechargeable Mg batteries

Shougo Higashi et al.

CHEMICAL COMMUNICATIONS (2014)

Review Chemistry, Multidisciplinary

Lithium-Sulfur Batteries: Electrochemistry, Materials, and Prospects

Ya-Xia Yin et al.

ANGEWANDTE CHEMIE-INTERNATIONAL EDITION (2013)

Article Chemistry, Physical

Li-ion Conduction in the LiBH4:Lil System from Density Functional Theory Calculations and Quasi-Elastic Neutron Scattering

Jon Steinar Gardarsson Myrdal et al.

JOURNAL OF PHYSICAL CHEMISTRY C (2013)

Article Chemistry, Physical

Solvent Effect of Room Temperature Ionic Liquids on Electrochemical Reactions in Lithium-Sulfur Batteries

Jun-Woo Park et al.

JOURNAL OF PHYSICAL CHEMISTRY C (2013)

Article Chemistry, Physical

All-solid-state Li-sulfur batteries with mesoporous electrode and thio-LISICON solid electrolyte

Miki Nagao et al.

JOURNAL OF POWER SOURCES (2013)

Review Chemistry, Physical

Liquid electrolyte lithium/sulfur battery: Fundamental chemistry, problems, and solutions

Sheng S. Zhang

JOURNAL OF POWER SOURCES (2013)

Article Electrochemistry

Solvate Ionic Liquid Electrolyte for Li-S Batteries

Kaoru Dokko et al.

JOURNAL OF THE ELECTROCHEMICAL SOCIETY (2013)

Article Physics, Applied

Sodium ionic conduction in complex hydrides with [BH4]- and [NH2]- anions

Motoaki Matsuo et al.

APPLIED PHYSICS LETTERS (2012)

Article Physics, Applied

Sodium-ion conduction in complex hydrides NaAlH4 and Na3AlH6

H. Oguchi et al.

JOURNAL OF APPLIED PHYSICS (2012)

Article Chemistry, Physical

New Li Ion Conductors and Solid State Hydrogen Storage Materials: LiM(BH4)3Cl, M = La, Gd

Morten B. Ley et al.

JOURNAL OF PHYSICAL CHEMISTRY C (2012)

Review Chemistry, Physical

Li-O2 and Li-S batteries with high energy storage

Peter G. Bruce et al.

NATURE MATERIALS (2012)

Article Materials Science, Multidisciplinary

Fast-ionic conductivity of Li+ in LiBH4

Tamio Ikeshoji et al.

PHYSICAL REVIEW B (2011)

Review Chemistry, Physical

Lithium Fast-Ionic Conduction in Complex Hydrides: Review and Prospects

Motoaki Matsuo et al.

ADVANCED ENERGY MATERIALS (2011)

Article Physics, Applied

Lithium-ion conduction in complex hydrides LiAlH4 and Li3AlH6

H. Oguchi et al.

JOURNAL OF APPLIED PHYSICS (2010)

Article Chemistry, Physical

Advances in Li-S batteries

Xiulei Ji et al.

JOURNAL OF MATERIALS CHEMISTRY (2010)

Article Physics, Applied

Diffuse and doubly split atom occupation in hexagonal LiBH4

Tamio Ikeshoji et al.

APPLIED PHYSICS LETTERS (2009)

Article Chemistry, Multidisciplinary

Halide-Stabilized LiBH4, a Room-Temperature Lithium Fast-Ion Conductor

Hideki Maekawa et al.

JOURNAL OF THE AMERICAN CHEMICAL SOCIETY (2009)

Article Chemistry, Multidisciplinary

Complex Hydrides with (BH4)- and (NH2)- Anions as New Lithium Fast-Ion Conductors

Motoaki Matsuo et al.

JOURNAL OF THE AMERICAN CHEMICAL SOCIETY (2009)

Article Chemistry, Physical

All solid-state battery with sulfur electrode and thio-LISICON electrolyte

Takeshi Kobayashi et al.

JOURNAL OF POWER SOURCES (2008)

Article Physics, Applied

Lithium superionic conduction in lithium borohydride accompanied by structural transition

Motoaki Matsuo et al.

APPLIED PHYSICS LETTERS (2007)

Review Chemistry, Multidisciplinary

Complex hydrides for hydrogen storage

Shin-ichi Orimo et al.

CHEMICAL REVIEWS (2007)

Article Chemistry, Physical

Fast cycling of Li/LiCoO2 cell with low-viscosity ionic liquids based on bis(fluorosulfonyl)imide [FSI]-

Hajime Matsumoto et al.

JOURNAL OF POWER SOURCES (2006)

Article Electrochemistry

Improved dischargeability and reversibility of sulfur cathode in a novel ionic liquid electrolyte

LX Yuan et al.

ELECTROCHEMISTRY COMMUNICATIONS (2006)