首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Biporous Cd(II) Coordination Polymer via in Situ Disulfide Bond Formation: Self-Healing and Application to Photosensitive Optoelectronic Device
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Biporous Cd(II) Coordination Polymer via in Situ Disulfide Bond Formation: Self-Healing and Application to Photosensitive Optoelectronic Device

机译:双相CD(II)通过原位二硫键形成的配位聚合物:自我愈合和光敏光电器件的应用

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摘要

A heteroporous metal-organic framework, [Cd-2(2,2'-DSB)(2)(INH)(2)(H2O)(2)](n) (1), is fabricated by the reaction of CdI2, 2-mercaptobenzoic acid (2-MBAH), and isoniazid (INH). The X-ray structure of the compound 1 shows the bridging INH and 2,2'-disulfanediyldibenzoic acid (H(2)2,2'-DSBA) around the Cd(II) ion center. 2-MBAH has been in situ dimerized to the formation of 2,2'-DSB2- (S-S-bonded dianion), which has further extended to form the 2D network. However, supramolecular assembly via pi center dot center dot center dot pi and hydrogen bonds strengthens the structural motif within the 3D array. Optical stimulation generated the thiol radical under an argon environment followed by the electron paramagnetic resonance (EPR) study, but upon exposure to air, the EPR signal gradually disappeared by the formation of the S-S bond, which was commonly known as a self-healing property. Again, compound 1 exhibited as a semiconducting material with a band gap of 3.7 eV. The I-V characteristics of 1 show that the conductivity is intensified by an optical response. The Schottky diode property of 1 shows a lower barrier height, a lower resistance, and a higher conductivity upon illumination at 360 nm.
机译:通过CDI2的反应制造了一种单孔金属 - 有机骨架[CD-2(2,2'-DSB)(2)(2)(2)(2)(2)(2)(2)(2)(2)(2)(2)(1), 2-巯基苯甲酸(2-MBAH)和异烟肼(INH)。化合物1的X射线结构显示了围绕CD(II)离子中心的桥接INH和2,2'-二磺酰二苯甲酸(H(2)2,2'-DSBA)。 2-MBAH一直以2,2'-DSB2-(S-S-S-S-L-Coded Dianion)的形成二元,进一步扩展到形成2D网络。然而,通过PI中心点中心点中心点PI和氢键的超分子组件强化了3D阵列内的结构基序。光学刺激在氩气环境下产生硫醇自由基,然后是电子顺磁共振(EPR)研究,但在暴露于空气时,EPR信号通过形成SS键逐渐消失,其通常称为自愈性。同样,化合物1作为半导体材料呈现为具有3.7eV的带隙的半导体材料。 1的I-V特性显示,通过光学响应加强电导率。肖特基二极管特性为1显示较低的阻挡高度,较低的电阻和在360nm处的照明时的电导率较高。

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