首页|Composites of porous materials with ionic liquids: Synthesis, characterization, applications, and beyond

Composites of porous materials with ionic liquids: Synthesis, characterization, applications, and beyond

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Modification of the physicochemical properties of porous materials by using ionic liquids (ILs) has been widely studied for various applications. The combined advantages of ILs and porous materials provide great potential in gas adsorption and separation, catalysis, liquid-phase adsorption and separation, and ionic conductivity owing to the superior performances of the hybrid composites. In this review, we aimed to provide a perspective on the evolution of IL/porous material composites as a research field by discussing several different types of porous materials, including metal organic frameworks (MOFs), covalent organic frameworks (COFs), zeolites, and carbonaceous-materials. The main challenges and opportunities in synthesis methods, characterization techniques, applications, and future opportunities of IL/porous materials are discussed in detail to create a road map for the area. Future advances of the field addressed in this review will provide in-depth insights into the design and development of these novel hybrid materials and their replacement with conventional materials.

Porous materialsIonic liquidHybrid materialsAdsorptionCatalysisIonic conductivityMETAL-ORGANIC FRAMEWORKMIXED-MATRIX MEMBRANEGAS SEPARATION PERFORMANCESOLID-PHASE EXTRACTIONDENSITY-FUNCTIONAL THEORYSELECTIVE CO2 ADSORPTIONCARBON-DIOXIDEHETEROGENEOUS CATALYSTSGRAPHENE OXIDECU-BTC

Zeeshan, Muhammad、Habib, Nitasha、Gulbalkan, Hasan Can、Alsuhile, Ala Abdulalem Abdo Moqbel、Caglayan, Hatice Pelin、Kurtoglu-Oztulum, Samira F.、Durak, Ozce、Zhao, Yuxin、Haslak, Zeynep Pinar、Uzun, Alper、Keskin, Seda

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Koc Univ

2022

Microporous and mesoporous materials

Microporous and mesoporous materials

EISCI
ISSN:1387-1811
年,卷(期):2022.332
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