A comprehensive review of carbon capture science and technologies DOI Creative Commons
Chunfei Wu, Qi Huang, Zhicheng Xu

et al.

Carbon Capture Science & Technology, Journal Year: 2023, Volume and Issue: 11, P. 100178 - 100178

Published: Dec. 10, 2023

Language: Английский

Introduction: Ionic Liquids DOI Open Access
Zhigang Lei, Biaohua Chen,

Yoon-Mo Koo

et al.

Chemical Reviews, Journal Year: 2017, Volume and Issue: 117(10), P. 6633 - 6635

Published: May 24, 2017

ADVERTISEMENT RETURN TO ISSUEEditorialNEXTIntroduction: Ionic LiquidsZhigang Lei*, Biaohua Chen, Yoon-Mo Koo, and Douglas R. MacFarlaneView Author Information State Key Laboratory of Chemical Resource Engineering, Beijing University Technology, China Department Biological Inha University, Korea School Chemistry, Monash Australia*E-mail: [email protected]Cite this: Chem. Rev. 2017, 117, 10, 6633–6635Publication Date (Web):May 24, 2017Publication History Published online24 May 2017Published inissue 24 2017https://pubs.acs.org/doi/10.1021/acs.chemrev.7b00246https://doi.org/10.1021/acs.chemrev.7b00246editorialACS PublicationsCopyright © 2017 American Society. This publication is available under these Terms Use. Request reuse permissions free to access through this site. Learn MoreArticle Views98151Altmetric-Citations896LEARN ABOUT THESE METRICSArticle Views are the COUNTER-compliant sum full text article downloads since November 2008 (both PDF HTML) across all institutions individuals. These metrics regularly updated reflect usage leading up last few days.Citations number other articles citing article, calculated by Crossref daily. Find more information about citation counts.The Altmetric Attention Score a quantitative measure attention that research has received online. Clicking on donut icon will load page at altmetric.com with additional details score social media presence for given article. how calculated. Share Add toView InAdd Full Text ReferenceAdd Description ExportRISCitationCitation abstractCitation referencesMore Options onFacebookTwitterWechatLinked InRedditEmail (199 KB) Get e-AlertscloseSUBJECTS:Catalysts,Extraction,Liquids,Salts,Solvents e-Alerts

Language: Английский

Citations

1139

New Concepts in Electrolytes DOI
Matthew Li, Chunsheng Wang, Zhongwei Chen

et al.

Chemical Reviews, Journal Year: 2020, Volume and Issue: 120(14), P. 6783 - 6819

Published: Feb. 5, 2020

Over the past decades, Li-ion battery (LIB) has turned into one of most important advances in history technology due to its extensive and in-depth impact on our life. Its omnipresence all electric vehicles, consumer electronics grids relies precisely tuned electrochemical dynamics interactions among electrolytes diversified anode cathode chemistries therein. With consumers' demand for performance ever increasing, more stringent requirements are being imposed upon established equilibria these LIB components, it became clear that state-of-the-art electrolyte systems could no longer sustain desired technological trajectory. Driven by such gap, researchers started explore unconventional systems. From superconcentrated solvent-in-salt solid-state electrolytes, current research realm novel grown unprecedented levels. In this review, we will avoid discussions but instead focus exclusively represent new concepts.

Language: Английский

Citations

739

Functionalised heterogeneous catalysts for sustainable biomass valorisation DOI Creative Commons
Putla Sudarsanam, Ruyi Zhong, Sander Van den Bosch

et al.

Chemical Society Reviews, Journal Year: 2018, Volume and Issue: 47(22), P. 8349 - 8402

Published: Jan. 1, 2018

Functionalised heterogeneous catalysts show great potentials for efficient valorisation of renewable biomass to value-added chemicals and high-energy density fuels.

Language: Английский

Citations

591

A Theory/Experience Description of Support Effects in Carbon-Supported Catalysts DOI
Iann C. Gerber, Philippe Serp

Chemical Reviews, Journal Year: 2019, Volume and Issue: 120(2), P. 1250 - 1349

Published: Oct. 2, 2019

The support plays an important role for supported metal catalysts by positioning itself as a macromolecular ligand, which conditions the nature of active site and contributes indirectly but also sometimes directly to reactivity. Metal species such nanoparticles, clusters, or single atoms can be deposited on carbon materials various catalytic reactions. All used catalyst constitute large family compounds that vary both at textural structural levels. Today, recent developments well-controlled synthesis methodologies, advanced characterization techniques, modeling tools allow one correlate relationships between metal/support/reactant molecular level. Based these considerations, in this Review article, we wish provide some answers question "How why anchoring catalysis?". To do this, will rely experimental theoretical studies. We first analyze what sites are available surface phase. Then, describe effects catalysis inherent presence carbon-type (metal–support interaction, confinement, spillover, functional group effects). These commented putting into perspective results obtained numerous reactions thermal catalysis, electrocatalysis, photocatalysis.

Language: Английский

Citations

571

The peculiar effect of water on ionic liquids and deep eutectic solvents DOI Creative Commons
Chunyan Ma, Aatto Laaksonen, Chang Liu

et al.

Chemical Society Reviews, Journal Year: 2018, Volume and Issue: 47(23), P. 8685 - 8720

Published: Jan. 1, 2018

Comprehensive review of unique effects water on ionic liquids and deep eutectic solvents observed in experimental theoretical studies.

Language: Английский

Citations

465

Microstructural and Dynamical Heterogeneities in Ionic Liquids DOI Creative Commons
Yong‐Lei Wang, Bin Li, Sten Sarman

et al.

Chemical Reviews, Journal Year: 2020, Volume and Issue: 120(13), P. 5798 - 5877

Published: April 15, 2020

Ionic liquids (ILs) are a special category of molten salts solely composed ions with varied molecular symmetry and charge delocalization. The versatility in combining cation-anion moieties functionalizing different atoms groups contributes to their peculiar interactions ranging from weak isotropic associations strong, specific, anisotropic forces. A delicate interplay among intra- intermolecular facilitates the formation heterogeneous microstructures liquid morphologies, which further striking dynamical properties. Microstructural heterogeneities ILs lead multifaceted properties described by an inherent designer feature, makes important candidates for novel solvents, electrolytes, functional materials academia industrial applications. Due massive number combinations ion pairs species having distinct structures IL mixtures containing comprehensive understanding hierarchical structural quantities is great significance rational selection appropriate thereafter advancing macroscopic functionalities In this review, we comprehensively trace recent advances strong that underpin complex phase behaviors particular emphasis on dynamics bulk liquids, cosolvents, interfacial regions.

Language: Английский

Citations

352

Ionic liquid lubricants: when chemistry meets tribology DOI
Meirong Cai, Qiangliang Yu, Weimin Liu

et al.

Chemical Society Reviews, Journal Year: 2020, Volume and Issue: 49(21), P. 7753 - 7818

Published: Jan. 1, 2020

Ionic liquids demonstrate sufficient design versatility as a type of model lubricant to meet the requirements mechanical engineering.

Language: Английский

Citations

329

Ionogel Electrolytes for High‐Performance Lithium Batteries: A Review DOI
Nan Chen, Haiqin Zhang, Li Li

et al.

Advanced Energy Materials, Journal Year: 2018, Volume and Issue: 8(12)

Published: Jan. 31, 2018

Abstract Ionic liquids (ILs) are important electrolytes for applications in electrochemical devices. An emerging trend ILs research is their hybridization with solid matrices, named ionogels. These ionogels can not only overcome the fluidity of but also exhibit high mechanical strength matrix. Therefore, they show promise building lithium batteries. In this review, various types matrices confining summarized, including nonmetallic oxides, metal IL‐tethered nanoparticles, functionalized SiO 2 , metal–organic frameworks, and other structural materials. The synthetic strategies first documented, focusing on physical confinement covalent grafting. Then, structure, ionic conductivity, thermal stability, stability addressed detail. Furthermore, authors highlight potential state‐of‐art conclude review by outlining remaining challenges as well personal perspectives hot area research.

Language: Английский

Citations

257

Ionic Liquid/Metal–Organic Framework Composites: From Synthesis to Applications DOI
F. Pelin Kinik, Alper Uzun, Seda Keskın

et al.

ChemSusChem, Journal Year: 2017, Volume and Issue: 10(14), P. 2842 - 2863

Published: May 29, 2017

Abstract Metal–organic frameworks (MOFs) have been widely studied for different applications owing to their fascinating properties such as large surface areas, high porosities, tunable pore sizes, and acceptable thermal chemical stabilities. Ionic liquids (ILs) recently incorporated into the pores of MOFs cavity occupants change physicochemical gas affinities MOFs. Several recent studies shown that IL/MOF composites show superior performances compared with pristine in various fields, storage, adsorption membrane‐based separation, catalysis, ionic conductivity. In this review, we address advances syntheses provide a comprehensive overview applications. Opportunities challenges using many are reviewed requirements utilization these composite materials real industrial processes discussed define future directions field.

Language: Английский

Citations

253

Metal organic frameworks for biomass conversion DOI
Ruiqi Fang, Amarajothi Dhakshinamoorthy, Yingwei Li

et al.

Chemical Society Reviews, Journal Year: 2020, Volume and Issue: 49(11), P. 3638 - 3687

Published: Jan. 1, 2020

This review narrates the recent developments on catalytic applications of pristine metal–organic frameworks (MOFs), functionalized MOFs, guests embedded over MOFs and derived carbon composites for biomass conversion into platform chemicals.

Language: Английский

Citations

246