Karmakar Kripasindhu, Dey Arka, Dhibar Subhendu, Sahu Rajib, Bhattacharjee Subham, Karmakar Priya, Chatterjee Priyajit, Mondal Aniruddha, Saha Bidyut
Colloid Chemistry Laboratory, Department of Chemistry, The University of Burdwan Golapbag Burdwan-713104 West Bengal India
Department of Physics, National Institute of Technology Durgapur Durgapur-713209 West Bengal India.
RSC Adv. 2023 Jan 17;13(4):2561-2569. doi: 10.1039/d2ra07374a. eCollection 2023 Jan 11.
A unique strategy for the synthesis of a supramolecular metallogel employing zinc ions and adipic acid in DMF medium has been established at room temperature. Rheological analysis was used to investigate the mechanical characteristics of the supramolecular Zn(ii)-metallogel. Field emission scanning electron microscopy and transmission electron microscopy were used to analyse the hexagonal shape morphological features of the Zn(ii)-metallogel. Interestingly, the electrical conductivity is observed in the electronic device with Zn(ii)-metallogel based metal-semiconductor (MS) junctions. All aspects of the metallogel's electrical properties were investigated. The electrical conductivity of the metallogel-based thin film device was 7.38 × 10 S m. The synthesised Zn(ii)-metallogel based device was investigated for its semi-conductive properties, such as its Schottky barrier diode nature.
在室温下,已建立了一种在DMF介质中使用锌离子和己二酸合成超分子金属凝胶的独特策略。流变学分析用于研究超分子Zn(II)-金属凝胶的力学特性。场发射扫描电子显微镜和透射电子显微镜用于分析Zn(II)-金属凝胶的六边形形态特征。有趣的是,在具有基于Zn(II)-金属凝胶的金属-半导体(MS)结的电子器件中观察到了电导率。对金属凝胶的电学性质的各个方面进行了研究。基于金属凝胶的薄膜器件的电导率为7.38×10 S m。对合成的基于Zn(II)-金属凝胶的器件的半导体性质进行了研究,例如其肖特基势垒二极管性质。