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Pathak, Abhishek; Shen, Jing-Wen; Usman, Muhammad; Wei, Ling-Fang; Mendiratta, Shruti; Chang, Yu-Shin; Sainbileg, Batjargal; Ngue, Chin-May; Chen, Ruei-San; Hayashi, Michitoshi; Luo, Tzuoo-Tsair; Chen, Fu-Rong; Chen, Kuei-Hsien; Tseng, Tien-Wen; Chen, Li-Chyong; Lu, Kuang-Lieh
Nature communications, 04/2019, Letnik: 10, Številka: 1Journal Article
Designing highly conducting metal-organic frameworks (MOFs) is currently a subject of great interest for their potential applications in diverse areas encompassing energy storage and generation. Herein, a strategic design in which a metal-sulfur plane is integrated within a MOF to achieve high electrical conductivity, is successfully demonstrated. The MOF {Cu (6-Hmna)(6-mn)·NH } (1, 6-Hmna = 6-mercaptonicotinic acid, 6-mn = 6-mercaptonicotinate), consisting of a two dimensional (-Cu-S-) plane, is synthesized from the reaction of Cu(NO ) , and 6,6'-dithiodinicotinic acid via the in situ cleavage of an S-S bond under hydrothermal conditions. A single crystal of the MOF is found to have a low activation energy (6 meV), small bandgap (1.34 eV) and a highest electrical conductivity (10.96 S cm ) among MOFs for single crystal measurements. This approach provides an ideal roadmap for producing highly conductive MOFs with great potential for applications in batteries, thermoelectric, supercapacitors and related areas.
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JCR | SNIP | JCR | SNIP | JCR | SNIP | JCR | SNIP |
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in: SICRIS
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