Department of Chemistry, Visva-Bharati University, Santiniketan 731235, India.
Dalton Trans. 2019 Nov 26;48(46):17388-17394. doi: 10.1039/c9dt03373d.
A novel mechanically stable supramolecular Co(ii)-metallohydrogel has been synthesized. Cobalt(ii) nitrate hexahydrate and monoethanolamine, as a low molecular weight organic gelator, are used to get the gel. The mechanical stability of the supramolecular hydrogel was analyzed. The morphology of the supramolecular metallohydrogel was scrutinized. The semiconducting features of the metallohydrogel were studied. The conducting properties of the Co(ii)-metallohydrogel establish a Schottky barrier diode type nature. The catalytic nature of the Co(ii)-metallohydrogel based room temperature single pot aryl-S coupling reaction was explored. Most interestingly, the Co(ii)-metallohydrogel based catalytic aryl-S coupling reaction does not require any column-chromatographic purification protocol to get pure aryl-thioethers. Thus, through this work a semiconducting Schottky barrier diode application and catalytic role in the room temperature single pot aryl-S coupling reaction of a supramolecular Co(ii)-metallohydrogel have been explored.
一种新型的机械稳定的超分子 Co(ii)-金属水凝胶已经被合成。六水合硝酸钴和单乙醇胺,作为一种低分子量的有机凝胶剂,被用来得到凝胶。对超分子水凝胶的机械稳定性进行了分析。对超分子金属水凝胶的形态进行了仔细研究。研究了金属水凝胶的半导体特性。Co(ii)-金属水凝胶的导电性能建立了肖特基势垒二极管类型的性质。还探索了基于 Co(ii)-金属水凝胶的室温一锅芳基-S 偶联反应的催化性质。最有趣的是,基于 Co(ii)-金属水凝胶的催化芳基-S 偶联反应不需要任何柱层析纯化方案即可得到纯芳基硫醚。因此,通过这项工作,探索了超分子 Co(ii)-金属水凝胶在室温单锅芳基-S 偶联反应中的半导体肖特基势垒二极管应用和催化作用。