首页> 外文期刊>Advanced Powder Technology: The internation Journal of the Society of Powder Technology, Japan >Switching between negative and positive electrorheological effect of g-C3N4 by copper ions doping
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Switching between negative and positive electrorheological effect of g-C3N4 by copper ions doping

机译:通过铜离子掺杂在G-C3N4的负电容效应之间切换

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Investigation of pristine g-C3N4 and copper ions doped g-C3N4 as dispersed phases in silicone-oil based electrorheological (ER) fluids is reported for the first time. Pristine g-C3N4 was prepared via standard thermal polycondensation of urea. Introduction of Cu ions into g-C3N4 polymeric network was performed by treatment of pristine powder by a solution containing tetraammoniumdiaquacopper(II) complex ions followed by annealing. The structure and properties of products were revealed with the aid of XRD, FTIR, UV-Vis and XPS, and complemented by SEM investigation of morphology, pycnometry, BET analysis, and conductivity measurements. The response of prepared ER fluids to an external electric field was examined by rheometry and the effects visualized with optical microscopy. While ER fluids based on g-C3N4 exhibited negative ER effect (decrease in viscosity when the field is switched-on), ER fluids based on a g-C3N4/Cu-doped analogue exhibited positive ER effect. Dielectric spectroscopy using Havriliak-Negami model revealed that introduction of the dopant almost doubled the dielectric relaxation strength while the relaxation time was halved. The ability of g-C3N4/Cu as a candidate for further studies necessary to increase the ER effect was demonstrated. Thereto, described modification of g-C3N4 by copper ions shall be applicable also for other metals forming ammonia complexes. (C) 2019 The Society of Powder Technology Japan. Published by Elsevier B.V. and The Society of Powder Technology Japan. All rights reserved.
机译:第一次报道了对丙氨酸G-C3N4和铜离子掺杂G-C3N4作为分散相的研究的研究。通过尿素的标准热缩聚制备原始G-C3N4。通过含有四铵喹喔浦(II)复合离子的溶液,通过含有Tetraammiumdiaquacopper(II)复合离子的溶液进行原始粉末,进行Cu离子进入G-C3N4聚合物网络。借助于XRD,FTIR,UV-Vis和XPS揭示了产品的结构和性质,并通过SEM调查形态学,Pycnometry,BET分析和电导率测量辅成。通过流变学检查制备的ER流体对外部电场的响应,并用光学显微镜观察效果。虽然基于G-C3N4的ER流体表现出负ER效应(当场接通时的粘度降低),但基于G-C3N4 / Cu掺杂类似物的ER流体表现出正面的ER效应。使用Havriliak-Negami模型的介电光谱表明,掺杂剂的引入几乎加倍介电弛豫强度,同时松弛时间减半。展示了G-C3N4 / Cu作为提高ER效应所需进一步研究的候选者的能力。其中,通过铜离子描述了G-C3N4的改性,也适用于形成氨配合物的其他金属。 (c)2019年日本粉末技术学会。由elsevier b.v发表。和日本粉末科技会。版权所有。

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