Results 41 to 50 of about 58,322 (312)

Recent Progress in Solid Electrolytes for All-Solid-State Metal(Li/Na)–Sulfur Batteries

open access: yes, 2023
Metal–sulfur batteries, especially lithium/sodium–sulfur (Li/Na-S) batteries, have attracted widespread attention for large-scale energy application due to their superior theoretical energy density, low cost of sulfur compared to conventional
Ravindra Kumar Bhardwaj, David Zitoun
core   +1 more source

Formation of protonic defects in complex oxides: Fundamentals and methodological considerations of hydration

open access: yesEnergy Reviews
High-temperature proton-conducting oxides are extremely important materials for next-generation electrochemical energy technologies. Although the hydration chemistry of conventional perovskites has recently been well established, contemporary materials ...
Danil Matkin   +2 more
doaj   +1 more source

The Influence of Organic-Inorganic Composite Solid Electrolytes on Electrochemical Performance in Solid-State Lithium Batteries [PDF]

open access: yesE3S Web of Conferences
Lithium batteries, as the most closely watched secondary batteries, exhibit outstanding performance. Nonetheless, the formation of lithium dendrites significantly compromises their safety and hampers further development. To mitigate the impact of lithium
Chen Zhengdao, Wu Yingjun, Xu Can
doaj   +1 more source

Li0.3La0.57Ti1-xVxO3 vanadium doped to improve electrochemical performance as a solid electrolyte in lithium-ion batteries

open access: yes, 2023
: All-solid-state Li-ion batteries (ASSB) are one of the future alternatives for electrochemical energy storage, because it improves energy density and safety.
Mena Palacios, Maycol Francisco   +3 more
core  

A solid electrolyte [PDF]

open access: yesScience, 2018
Batteries In an electrochemical cell, the electrolyte has the role of separating and shuttling ions to produce a current. A good electrolyte thus should have high ionic conductivity and good thermal and electrochemical stability, although many in use do not have all these attributes.
openaire   +1 more source

Solid Electrolytes and Deoxidation [PDF]

open access: yes, 1972
A study has been made of the transformation of deoxidation products in the Fe-V-0 system in the temperature range 1545 -1640°C, using galvanic cells with solid electrolytes.
Vahed, Ahmad
core  

Hybrid solid electrolytes with excellent electrochemical properties and their applications in all-solid-state cells

open access: yes, 2017
Three types of inorganic electrolytes [Li10GeP2S12 (LGPS), 75Li(2)S center dot 24P(2)S(5)center dot 1P(2)O(5) (LPOS), Li1.5Al0.5Ge1.5(PO4)(3) (LAGP)] with different particle sizes and electrochemical properties are selected as active fillers incorporated
Zhao, Yanran   +5 more
core   +1 more source

Microstructural Evolution and Vacancy Defect Formation in Mn–Mo–Ni RPV Steel Under Low Cycle Fatigue: Insights From EBSD and PALS

open access: yesAdvanced Engineering Materials, EarlyView.
Low‐cycle fatigue damage in Mn–Mo–Ni reactor pressure vessel steel is examined using a combined electron backscatter diffraction and positron annihilation lifetime spectroscopy approach. The study correlates texture evolution, dislocation substructure development, and vacancy‐type defect formation across uniform, necked, and fracture regions, providing
Apu Sarkar   +2 more
wiley   +1 more source

Exploring ionic liquid-laden metal-organic framework composite materials as hybrid electrolytes in metal (ion) batteries

open access: yesFrontiers in Chemistry, 2022
This review focuses on the combination of metal-organic frameworks (MOFs) and ionic liquids (ILs) to obtain composite materials to be used as solid electrolytes in metal-ion battery applications.
Maitane Urgoiti-Rodriguez   +15 more
doaj   +1 more source

Electrospun polymer nanofibers: the booming cutting edge technology

open access: yes, 2012
Electrospinning has been recognized as a simple and efficient technique for the fabrication of ultrathin fibers from a variety of materials including polymers, composite and ceramics.
Lim, Du-Hyun   +6 more
core   +1 more source

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