Results 231 to 240 of about 2,592,817 (298)
Heterostructured Materials for Room-Temperature Na-S Batteries: Directional Design Strategies and Multifaceted Applications. [PDF]
Yang Y, Li X, Zhu K, Huang XL, Wang YX.
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Research progress on NASICON-type solid electrolytes in all-solid-state sodium batteries: bulk optimization and interfacial regulation. [PDF]
Xia X +10 more
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Silicon-based anode materials for high-capacity lithium-ion batteries: recent advances and challenges. [PDF]
Li S, Xie J, Li Z, Wang Z, Wang X.
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Liquid-phase synthesis of a series of superionic sulfide electrolytes for all-solid-state lithium-sulfur battery. [PDF]
Wang M +5 more
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Russian Journal of Electrochemistry, 2010
Studies of composite ionic conductors are overviewed. Mechanisms of defect formation at ionic crystal surfaces and at interphase boundaries in the composites are discussed; the Stern model that allows calculating surface potential has been involved.
N. F. Uvarov +2 more
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Studies of composite ionic conductors are overviewed. Mechanisms of defect formation at ionic crystal surfaces and at interphase boundaries in the composites are discussed; the Stern model that allows calculating surface potential has been involved.
N. F. Uvarov +2 more
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Membrany i membrannye tehnologii
The review describes composite electrolytes based on classical salt matrix phases, and also shows the possibilities of creating composites using simple or complex oxide matrices, where simple substances, salts, simple and complex oxides are used as heterogeneous dopant.
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The review describes composite electrolytes based on classical salt matrix phases, and also shows the possibilities of creating composites using simple or complex oxide matrices, where simple substances, salts, simple and complex oxides are used as heterogeneous dopant.
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Composite polyether based solid electrolytes
Electrochimica Acta, 1995Composite polymeric electrolytes form a new group of solid ionic conductors. Several desirable properties make them suitable for application in various electrochemical devices working over a wide temperature range. In this paper some recent developments in the field of composite polymeric electrolytes are described.
W. Wieczorek +2 more
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Composite solid electrolytes LiClO4–Al2O3
Solid State Ionics, 2006Abstract Composite solid electrolytes in the system (1 − x )LiClO 4 – x Al 2 O 3 were prepared by sintering of preliminarily dehydrated components at 300 °C; their thermodynamic, electrical and electrochemical properties were investigated. Conductivity of pure anhydrous lithium perchlorate did not exceed 10 − 5 S/cm at 200 °C. Heterogeneous doping
A ULIHIN +4 more
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Composite Solid Polymer Electrolyte Membrane
ECS Meeting Abstracts, 2016Due to safety issues in the lithium batteries with organic liquid electrolytes, it is expected that the next-generation safe lithium batteries would be the all-solid-state batteries. New solid electrolytes with high Li+ ion conduction such as Li10GeP2S12, Li1.3Al0.3Ti1.7(PO4)3 and Li7La3Zr2O12 have attracted extensive attentions in the development of
Ting Wang +3 more
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Composite Materials as Solid Electrolytes
1985According to classical theories, when an insulator is added to an electrical conductor, the conductivity of the two phase composite decreases. However, in many cases when the particle size is small, of the order of a micron, the electrical conductivity increases. C. Liang [1] was the first to report this phenomenon for a solid electrolyte.
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