2015Inorganic ChemistryRequires access

Novel Microporous Metal–Organic Framework Exhibiting High Acetylene and Methane Storage Capacities

Xing Duan, Chuan‐De Wu, Shengchang Xiang, Wei Zhou, Taner Yildirim, Yuanjing Cui, Yu Yang, Banglin Chen, Guodong Qian

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Abstract

A new organic hexacarboxylic acid, 5,5',5″-(9H-carbazole-3,6,9-triyl)triisophthalic acid (H6CTIA), was developed to construct its first microporous metal-organic framework (MOF), Cu6(CTIA)2 (ZJU-70). With open metal sites and suitable pore sizes, this MOF exhibits high acetylene and methane storage capacities at room temperature.

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What this paper is about

A new organic hexacarboxylic acid, 5,5',5″-(9H-carbazole-3,6,9-triyl)triisophthalic acid (H6CTIA), was developed to construct its first microporous metal-organic framework (MOF), Cu6(CTIA)2 (ZJU-70). With open metal sites and suitable pore sizes, this MOF exhibits high acetylene and methane storage capacities at room temperature.

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OpenAlex reports 38 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

A new organic hexacarboxylic acid, 5,5',5″-(9H-carbazole-3,6,9-triyl)triisophthalic acid (H6CTIA), was developed to construct its first microporous metal-organic framework (MOF), Cu6(CTIA)2 (ZJU-70). With open metal sites and suitable pore sizes, this MOF exhibits high acetylene and methane storage capacities at room temperature.

Key concepts: Chemistry, Microporous material, Acetylene, Methane, Metal-organic framework, Chemical engineering, Inorganic chemistry, Organic chemistry

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