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Fabrication of hybrids based on graphene and metal nanoparticles by in situ and self-assembled methods

机译:基于石墨烯和金属制造的混合动力车纳米颗粒原位自组装方法

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摘要

In this work, we developed two novel strategies to attach metal nanoparticles (Au and Ag) to the surface of graphene nanosheets, in which graphene oxide was first modified by the linking molecule (3-mercaptopropyl)triethoxysilane and then subjected to different treatments including in situ and self-assembled techniques. The synthesis processes and the resulting hybrids were investigated by ultraviolet-visible measurements, scanning electron microscopy, transmission electron microscopy, and X-ray photoelectron spectroscopy. It was found that both approaches could effectively immobilize metal nanoparticles onto a graphene surface, and that better distribution and size control of metal nanoparticles were obtained by the self-assembled method. Moreover, we prepared poly(vinylidene fluoride)/graphene-Ag nanocomposites by a solution blending method. The AC conductivity of the resulting nanocomposites could be increased significantly when the loading amount of graphene-Ag was only 2 wt%. We expect that such graphene-metal nanoparticle hybrids may be potentially useful in composite reinforcement, sensors, and electronic devices.
机译:在这项工作中,我们开发了两个小说策略将金属纳米粒子(盟和Ag)石墨烯表面nanosheets,石墨烯根据连接分子氧化首次修改(3-mercaptopropyl) triethoxysilane然后接受不同的治疗方法包括现场和自组装技术。过程和由此产生的混合动力车研究了紫外-可见测量,扫描电子显微镜,透射电子显微镜和x射线光电子光谱学。可以有效地将金属纳米粒子固定住到石墨烯表面,更好控制金属的分布和大小纳米粒子自组装得到的方法。氟)/ graphene-Ag纳米复合材料混合方法的解决方案。所得到的纳米复合材料可能会增加当装载数量的显著graphene-Ag只有2 wt %。graphene-metal纳米颗粒混合动力车在复合强化,可能有用传感器和电子设备。

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