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Redox-Active Polymers for Batteries
Electrochemical energy storage is critical in accelerating the transition to a low-carbon future for grid storage and transportation. While most... -
Mo do** provokes two electron reaction in MnO2 with ultrahigh capacity for aqueous zinc ion batteries
Rechargeable aqueous zinc ion batteries (AZIBs) based on manganese dioxide (MnO 2 ) have received much attention for large-scale energy storage...
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Oxygen Redox in Battery Cathodes: A Brief Overview
The participation of oxygen or other anionic species in redox activities in cathode materials for lithium- and sodium-ion battery systems is known to... -
Aqueous Organic Redox Flow Batteries
Since the 1970s, substantial research has been conducted on redox flow batteries (RFBs), which are today regarded as one of the most promising... -
Rational design and prospects for advanced aqueous Zn–organic batteries enabled by multielectron redox reactions
Due to their environmental compatibility, customizable molecular structures, and abundant organic host resources, aqueous Zn–organic batteries...
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Decoupling the roles of Ni and Co in anionic redox activity of Li-rich NMC cathodes
Li[Li x Ni y Mn z Co 1− x − y − z ]O 2 (lithium-rich NMCs) are benchmark cathode materials receiving considerable attention due to the abnormally high capacities...
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Molecular redox-active organic materials for electrochemical carbon capture
This prospective is a forward-looking outlook for researchers investigating electrochemical carbon capture utilizing molecular redox-active organic...
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Chemistry and Operation of Li-S Batteries
Lithium-sulfur (Li-S) batteries are promising high-energy-density energy storage systems. It is generally agreed that shuttle of the polysulfides in... -
Electrodes for All-Vanadium Redox Flow Batteries
All-vanadium redox flow battery (VFB) is deemed as one of the most promising energy storage technologies with attracting advantages of long cycle,... -
Redox Active Electrolytes in Supercapacitors
Supercapacitors are highly promising for future electrochemical energy storage systems due to their excellent energy density, power density, and... -
Ab Initio Interfacial Electrochemistry Applied to Understanding, Tuning and Designing Battery Chemistry
Ab initio calculations are now standardly used to investigate interfacial reactivity in many different fields including catalysis, energy materials... -
Radical organometallic nanocages with redox switchable poly-NHC ligands
Develo** discrete radical organometallic nanocages is essential for fabricating functional materials. In this study, we construct a series of...
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Enantioselective redox gold catalysis
Au(I)/Au(III) redox catalysis, also known as redox gold catalysis, has evolved as a new technique in the past decade, opening up possibilities for...
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The role of thioredoxin system in the maintenance of redox homeostasis in Mycobacterium tuberculosis
Maintenance of intracellular redox homeostasis is pivotal for the survival of an organism. During intricate host–pathogen interactions, pathogens...
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Fabrication of highly effective electrodes for iron chromium redox flow battery
Iron-chromium redox flow batteries (ICRFBs) have emerged as promising energy storage devices due to their safety, environmental protection, and...
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Going beyond atom visualization—Characterization of supported two-atom single-cluster catalysts with scanning transmission electron microscopy
As an innovative development of single-atom catalysts (SACs), single-cluster catalysts (SCCs) such as dual-atom catalysts have attracted considerable...
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Rational design of carbon-based electrocatalysts for enhancing redox reactions in rechargeable metal batteries
Exploitation of the efficient and cost-effective electrode materials is urgently desirable for the development of advanced energy devices. With the...
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An organometallic salt as the electrolyte additive to regulate lithium polysulfide redox and stabilize lithium anodes for robust lithium-sulfur batteries
Lithium-sulfur (Li-S) batteries with high theoretical specific energy are considered to be one of the highly promising next-generation energy storage...
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Materials challenges of aqueous redox flow batteries
Merits and drawbacks of representative inorganic and organic redox active electrolytes used in aqueous redox flow batteries are discussed....
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The Effect of Redox Electrolyte on the Electrochemical Characteristics of a PEDOT–(Sodium 1,2-Naphthoquinone-4-sulfonate)/WMNT Nanocomposite Electrode
AbstractThe methods of cyclic voltammetry, galvanostatic charge–discharge, and electrochemical impedance spectroscopy were used to study the effect...