Opportunities in Na/K [hexacyanoferrate] frameworks for sustainable non-aqueous Na+/K+ batteries

文献信息

发布日期 2021-12-03
DOI 10.1039/D1SE01653A
影响因子 6.367
作者

Ashwani Tyagi, Nagmani, Sreeraj Puravankara


查看原文

摘要

In the past decade, the most sought-after cathode materials for SIBs and PIBs have included transition metal oxides (TMOs), polyanionic phosphates and fluorophosphates, NASICON-type polyanionic compounds, and alkali metal hexacyanoferrates (AMHCFs/PBAs). From the commercialization perspective, Novasis Energies, Inc. and Faradion Ltd. have successfully used AMHCFs and TMOs as cathode materials, respectively, for large-scale energy storage in sodium-ion batteries (SIBs). The open framework voids (∼3.4 Å) in AMHCFs are ideal for the insertion of the larger K+/Na+ ions into PIBs and SIBs. The lower cost/performance ratio due to cheaper raw materials and sustainability due to coulombically efficient cycling stability make AMHCFs ideal cathode materials for sustainable future batteries. In terms of commercial prospects, we review the AMHCFs as cathode materials for both SIBs and PIBs with the focus on optimizing AMHCF cathodes through morphology control, reducing [Fe(CN)6] vacancies, and minimizing interstitial water, while maintaining high crystallinity and Na+/K+ content in the AMHCFs to enhance the electrochemical performance. Surface engineering, gradient compounds, graphene-based composites, and multiple cation substitutions can create efficient Na+/K+ ion diffusion pathways. The storage mechanisms and optimizing the electrolyte systems in AMHCFs are critical for efficient Na+/K+ ion batteries for stationary storage.

相关文献

Total synthesis of buergerinin F via effective construction of the asymmetric quaternary carbons using an enantioselective aldol reaction

Isamu Shiina, Yo-ichi Kawakita, Ryoutarou Ibuka, Kazutoshi Yokoyama, Yu-suke Yamai

2005-07-14 Communication

DOI: 10.1039/B507401K

Back matter

Front/Back Matter

DOI: 10.1039/B511386P

In situ formation of ligandandcatalyst—application in ruthenium-catalyzed enantioselective reduction of ketones

Patrik Västilä, Jenny Wettergren, Hans Adolfsson

2005-07-12 Communication

DOI: 10.1039/B505516D

Porous polystyrene microspheres having dimpled surface structures prepared within micellar assemblies of amphiphilic silica particles in water

Yoshiko K. Takahara, Koji Tachi, Takao Sakata, Toshiaki Hasegawa, Hirotaro Mori, Michio Matsumura, Bunsho Ohtani

2005-07-21 Communication

DOI: 10.1039/B507123B

First snapshot of a nonpolymeric hydrogelator interacting with its gelling solvents

D. Krishna Kumar, D. Amilan Jose, Amitava Das, Parthasarathi Dastidar

2005-07-13 Communication

DOI: 10.1039/B506941F

The vicinal F–C–C–F moiety as a tool for influencing peptide conformation

Martin Schüler, David O'Hagan, Alexandra M. Z. Slawin

2005-07-14 Communication

DOI: 10.1039/B506010A

Analysis of key steps in the catalytic cross-coupling of alkyl electrophiles under Negishi-like conditions

Gavin D. Jones, Chris McFarland, Thomas J. Anderson, David A. Vicic

2005-07-22 Communication

DOI: 10.1039/B504996B

Highly luminescent water-soluble CdTe nanowires as fluorescent probe to detect copper(ii)

Bo Tang, Jinye Niu, Chengguang Yu, Linhai Zhuo, Jiechao Ge

2005-07-19 Communication

DOI: 10.1039/B502978C

Networked calix[4]arenepolymers with unusual mechanical properties

Joseph N. Grima, Kenneth E. Evans

2005-07-14 Communication

DOI: 10.1039/B505839B

Self-repairing polymers: poly(dioxaborolane)s containing trigonal planar boron

Weijun Niu, Caroline O'Sullivan, Brett M. Rambo, Mark D. Smith, John J. Lavigne

2005-07-28 Communication

DOI: 10.1039/B504634C

您可能还喜欢

化合物问答

4-[[6-(3-苯基苯基)-7H-嘌呤-2-基]氨基]苯磺酰胺(CAS号:2079895-42-2)适用哪些法规指南?

该化合物需遵循REACH法规以确保其安全使用和管理。同时,根据其潜在的生物降解性和毒性,也需要符合GHS分类中的相应要求。此外,若用于医药或食品相关领域,则还需...

2079895-42-24-{[6-(3-Biphenylyl)...
化合物问答

反式-度骨化醇(CAS号:74007-20-8)的物理化学性质是什么?

反式-度骨化醇是一种脂溶性维生素D3的衍生物,呈无色或白色结晶性粉末,不溶于水,溶于乙醇、丙酮、氯仿等有机溶剂。其分子式为C28H44O,分子量为404.65。...

74007-20-8trans-Doxercalcifero...
化合物问答

莲花掌苷(CAS号:59282-56-3)的市场或研究趋势如何?

莲花掌苷作为一种天然产物,近年来在抗炎、抗癌等生物活性研究方面显示出一定的潜力,因此市场需求逐渐增长。市场动态方面,随着天然产物开发的深入,预计该化合物的研究会...

59282-56-3Lindleyin
化合物问答

2-溴-6-(吡咯烷-1-基)吡啶-4-硼酸频那醇酯(CAS号:1150271-64-9)应用于哪些行业?

2-溴-6-(吡咯烷-1-基)吡啶-4-硼酸频那醇酯在医药领域有着广泛的应用,它可以用作药物合成中的中间体。此外,它还可以用于有机合成,特别是在构建复杂杂环化合...

1150271-64-92-Bromo-6-(1-pyrroli...
化合物问答

什么是methyl 2-(4-bromophenyl)-3-methylbutanoate(CAS号:1061284-70-5)?

methyl 2-(4-溴苯基)-3-甲基丁酸甲酯是一种化学物质,分子式为C12H13BrO2。它是一种有机化合物,具有一定的挥发性和易燃性。

1061284-70-52-(4-Bromo-phenyl)-3...
化合物问答

CJC1-295(CAS号:863288-34-0)的物理化学性质是什么?

CJC1-295是一种具有复杂肽链结构的化合物,其分子量约为1875 Da。该化合物在水中具有一定的溶解性,但在有机溶剂中的溶解性不佳。它是一种反应活性化合物,...

863288-34-0L-tyrosyl-D-alanyl-L...
化合物问答

三正丁基锍碘(CAS号:18146-62-8)的市场或研究趋势如何?

三正丁基锍碘作为一种重要的有机硫化合物,主要用于有机合成中作为亲电试剂。近年来,由于其在合成中的广泛应用,市场对其需求持续增长。此外,随着绿色化学的发展,对其替...

18146-62-8Tributylsulfonium io...
化合物问答

雌二醇-[13C3]同位素内标(CAS号:1261254-48-1)通常如何合成?

雌二醇-[13C3]同位素内标通常通过在雌二醇分子中引入[13C3]同位素来合成。常见的方法是通过化学标记反应,如与[13C3]标记的甲基溴化物进行亲核取代反应...

1261254-48-117beta-Estradiol-2,3...
化合物问答

N1-(2-吡啶甲基)-N2-(2-甲基-1-萘基)草酰胺(CAS号:2611225-93-3)的物理化学性质是什么?

N1-(2-吡啶甲基)-N2-(2-甲基-1-萘基)草酰胺为固体化合物,具有良好的结晶形态,分子量为340.34 g/mol。该化合物在水中的溶解度较低,但在有...

2611225-93-3N-(2-Methyl-1-naphth...
化合物问答

如何处理含有十五碳烯酸甲酯(顺-10)(C15:1)标准品(CAS号:90176-52-6)的废料?

含有十五碳烯酸甲酯(顺-10)(C15:1)标准品的废料应首先进行适当收集和储存,避免与其他化学品混合。然后,可采用焚烧或交由专业废物处理公司进行处理。处理过程...

90176-52-6(Z)-10-Pentadecenoic...
免责声明
本页面提供的学术期刊信息仅供参考和研究使用。我们与任何期刊出版商均无关联,也不处理投稿事宜。如有投稿相关咨询,请直接联系相关期刊出版商。
如发现页面信息有误,请发送邮件至 support@chemtradehub.com 联系我们。我们将及时核实并处理您的问题。