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A Dual-Ligand Porous Coordination Polymer Chemiresistor with Modulated Conductivity and Porosity.

Ming-Shui YaoJia-Jia ZhengAi-Qian WuGang XuSanjog S NagarkarGen ZhangMasahiko TsujimotoShigeyoshi SakakiSatoshi HorikeKen-Ichi OtakeSusumu Kitagawa
Published in: Angewandte Chemie (International ed. in English) (2019)
Single-ligand-based electronically conductive porous coordination polymers/metal-organic frameworks (EC-PCPs/MOFs) fail to meet the requirements of numerous electronic applications owing to their limited tunability in terms of both conductivity and topology. In this study, a new 2D π-conjugated EC-MOF containing copper units with mixed trigonal ligands was developed: Cu3 (HHTP)(THQ) (HHTP=2,3,6,7,10,11-hexahydrotriphenylene, THQ=tetrahydroxy-1,4-quinone). The modulated conductivity (σ≈2.53×10-5  S cm-1 with an activation energy of 0.30 eV) and high porosity (ca. 441.2 m2  g-1 ) of the Cu3 (HHTP)(THQ) semiconductive nanowires provided an appropriate resistance baseline and highly accessible areas for the development of an excellent chemiresistive gas sensor.
Keyphrases
  • metal organic framework
  • room temperature
  • reduced graphene oxide
  • gold nanoparticles
  • protein kinase
  • carbon dioxide
  • highly efficient
  • aqueous solution