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Journal ArticleDOI

High-stability monoclinic nickel hexacyanoferrate cathode materials for ultrafast aqueous sodium ion battery

TLDR
In this article, a highly stable monoclinic sodium rich nickel hexacyanoferrate (II) nanocube (m-NiHCF) has been synthesized via a facile coprecipitation method with the aid of chelating agent and surfactant.
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This article is published in Chemical Engineering Journal.The article was published on 2020-05-15. It has received 77 citations till now. The article focuses on the topics: Sodium-ion battery & Monoclinic crystal system.

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Rechargeable Batteries for Grid Scale Energy Storage.

TL;DR: In this article , the overall requirements of battery technologies for practical applications with key parameters are systematically analyzed by generating standards and measures for grid scale energy storage (GSES), including metal-ion batteries, lead-acid batteries, molten-salt batteries, alkaline batteries, redox-flow batteries, metal-air batteries, and hydrogen-gas batteries.
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2021 roadmap for sodium-ion batteries

TL;DR: In this article, the authors provide an extensive review by experts in academia and industry of the current state of the art in 2019 and the different research directions and strategies currently underway to improve the performance of sodium-ion batteries.
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Highly Crystallized Prussian Blue with Enhanced Kinetics for Highly Efficient Sodium Storage.

TL;DR: Prussian blue analogs (PBAs) featuring large interstitial voids and rigid structures are broadly recognized as promising cathode materials for sodium-ion batteries as mentioned in this paper, however, they are not suitable for use in rechargeable batteries.
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Recent advances in g-C3N4 composites within four types of heterojunctions for photocatalytic CO2 reduction

TL;DR: In this paper, the authors present and compare the photocatalytic mechanisms, characteristics, and performances of g-C3N4 composites concerning these four types of heterojunctions.
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Pathways towards high energy aqueous rechargeable batteries

TL;DR: In this paper, the authors highlight the representative strategies in achieving high-energy rechargeable metal batteries, i.e., aqueous rechargeable Li/Na/K/Zn/Mg/Al ion batteries.
References
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Journal ArticleDOI

Issues and challenges facing rechargeable lithium batteries

TL;DR: A brief historical review of the development of lithium-based rechargeable batteries is presented, ongoing research strategies are highlighted, and the challenges that remain regarding the synthesis, characterization, electrochemical performance and safety of these systems are discussed.
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Electrical Energy Storage for the Grid: A Battery of Choices

TL;DR: The battery systems reviewed here include sodium-sulfur batteries that are commercially available for grid applications, redox-flow batteries that offer low cost, and lithium-ion batteries whose development for commercial electronics and electric vehicles is being applied to grid storage.
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EXPGUI, a graphical user interface for GSAS

TL;DR: A description and justification of the EXPGUI program, which implements a graphical user interface and shell for the GSAS single-crystal and Rietveld package using the Tcl/Tk scripting language, is presented.
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Opportunities and challenges for a sustainable energy future

TL;DR: This Perspective provides a snapshot of the current energy landscape and discusses several research and development opportunities and pathways that could lead to a prosperous, sustainable and secure energy future for the world.
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The Li-ion rechargeable battery: a perspective.

TL;DR: New strategies are needed for batteries that go beyond powering hand-held devices, such as using electrode hosts with two-electron redox centers; replacing the cathode hosts by materials that undergo displacement reactions; and developing a Li(+) solid electrolyte separator membrane that allows an organic and aqueous liquid electrolyte on the anode and cathode sides, respectively.
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