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Structural Investigation of Chemiresistive Sensing Mechanism in Redox-Active Porous Coordination Network.

Jaejun KimJin Young KooYoon Ho LeeTatsuhiro KojimaYumi YakiyamaHiroyoshi OhtsuJoon Hak OhMasaki Kawano
Published in: Inorganic chemistry (2017)
By changing the rate of evaporation, two kinds of crystalline films composed of redox-active porous coordination networks (1 and 2) were selectively prepared on a gold-patterned substrate using a DMF solution of 2,5,8-tri(4-pyridyl)1,3-diazaphenalene and Cd(NO3)2. We found the highly sensitive humidity sensing ability of film 1. Single crystal structures and infrared spectroscopic analyses before and after hydration of a single crystal of 1 revealed the sensing mechanism: exchange of nitrate ions with water on Cd atoms occurred in hydrated conditions to generate a conductive cationic network.
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