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Instantaneous Formation of Metal and Metal Oxide Nanoparticles on Carbon Nanotubes and Graphene via Solvent-Free Microwave Heating

机译:通过无溶剂微波加热在碳纳米管和石墨烯上瞬间形成金属和金属氧化物纳米颗粒

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Microwave irradiation was shown to be an effective energy source for the rapid decomposition of organic metal salts (such as silver acetate) in a solid mixture with various carbon and noncarbon substrates under completely solvent-free conditions. The rapid and local Joule heating of microwave absorbing substrates (i.e., carbon-based) resulted in the instantaneous formation of metal and metal oxide nanoparticles on the substrate surfaces within seconds of microwave exposure. Other less absorbing substrates (such as hexagonal boron nitride) required longer exposure times for the salt decomposition to occur. Details of the effects of microwave reaction time, temperature, power, and other experimental parameters were investigated and discussed. The solvent-free microwave method was shown to be widely applicable to various organic metal salts with different substrates including single-and multiwalled carbon nanotubes, graphene, expanded graphite, hexagonal boron nitride and silica-alumina particles, forming substrate-supported metal (e.g., Ag, Au, Co, Ni, Pd, Pt) or metal oxide (e.g., Fe3O4, MnO, TiO2) nanoparticles in high yields within short duration of microwave irradiation. The method was also successfully applied to large structural substrates such as nanotube yarns, further suggesting its application potential and versatility. To demonstrate one potential application, we successfully used both carbon nanotube powder and yarn samples decorated with Ag nanoparticles prepared via the above method to improve data acquisition in surface enhanced Raman spectroscopy.
机译:微波辐射是在完全无溶剂的条件下,与各种碳和非碳底物的固体混合物中,有机金属盐(例如乙酸银)快速分解的有效能源。微波吸收基质(即碳基)的快速和局部焦耳加热导致在微波暴露的几秒钟内在基质表面上瞬时形成金属和金属氧化物纳米颗粒。其他吸收性较低的基材(例如六方氮化硼)需要更长的暴露时间才能发生盐分解。研究和讨论了微波反应时间,温度,功率和其他实验参数的影响的细节。事实证明,无溶剂微波方法可广泛应用于具有不同基材的各种有机金属盐,包括单壁和多壁碳纳米管,石墨烯,膨胀石墨,六方氮化硼和二氧化硅-氧化铝颗粒,从而形成基材支撑的金属(例如, Ag,Au,Co,Ni,Pd,Pt)或金属氧化物(例如Fe3O4,MnO,TiO2)纳米粒子在微波辐射的短时间内就以高收率获得。该方法还成功地应用于大型结构基材,例如纳米管纱线,进一步表明了其应用潜力和多功能性。为了展示一种潜在的应用,我们成功地使用了碳纳米管粉末和通过上述方法制备的用Ag纳米粒子修饰的纱线样品,以改善表面增强拉曼光谱中的数据采集。

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