首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Carbon nanoflake-nanoparticle interface: A comparative study on structure and photoluminescent properties of carbon nanoflakes synthesized on nanostructured gold and carbon by hot filament CVD
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Carbon nanoflake-nanoparticle interface: A comparative study on structure and photoluminescent properties of carbon nanoflakes synthesized on nanostructured gold and carbon by hot filament CVD

机译:碳纳米蛋白纳米颗粒接口:热长丝CVD在纳米结构金和碳上合成的碳纳米薄膜结构和光致发光性能的比较研究

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摘要

Three dimensional vertically-oriented carbon nanoflakes grown on carbon and gold nanoparticles by the hot filament chemical vapor deposition in CH4 environment demonstrate quite similar structure and composition, but drastically different room temperature photoluminescent properties. The interfacial interactions were asserted to be the main reason for the differences in the optical emission. The mechanisms of highly oriented growth, generation and enhancement of photoluminescence were investigated, and it was demonstrated that the formation of oriented nanoflakes resulted from the stress produced in the carbon layers on carbon and gold nanoparticles. Specifically, deformation of nanoparticles and difference in the expansion rates of carbon layer, gold and carbon nanoparticles are the main causes for the stress formation. The oriented growth of carbon nanoflakes is maintained by the repulsion effect between the carbon nanoflakes due to the net charge produced from the hydrocarbon radicals on the edges of carbon nanoflakes via charge transfer between H and C atoms. The photoluminescence generation of carbon nanoflakes is related to the sp(2) carbon clusters on the edges of carbon nanoflakes. Stronger green photoluminescent emission from the carbon nanoflake/gold nanoparticle system than from the carbon nanoflake/carbon nanoparticle system is the result of the intense plasmon emission from gold nanoparticles. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在CH4环境中通过热灯丝化学气相沉积在碳和金纳米粒子上生长的三维垂直导向碳纳米薄膜展示了相似的结构和组成,但众所周置的室温光致发光性能。界面相互作用被断言是光发射差异的主要原因。研究了高度取向的生长,产生和增强光致发光的机制,证明了由碳和金纳米颗粒上的碳层中产生的应力产生的导向纳米薄膜的形成。具体地,纳米颗粒的变形和碳层膨胀率的差异,金和碳纳米粒子的膨胀率是应力形成的主要原因。由于在H和C原子之间的电荷转移,通过从碳纳米薄片边缘的烃基产生的碳粉电荷而导致的碳纳米薄片之间的排斥效应保持碳纳米薄片的取向生长。碳纳米薄片的光致发光产生与碳纳米薄片边缘上的SP(2)碳簇有关。从碳纳米蛋白/金纳米粒子系统中较强的绿色光致发光排放比来自碳纳米蛋白/碳纳米粒子系统的产生是来自金纳米颗粒的强血管排放的结果。 (c)2017 Elsevier Ltd.保留所有权利。

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