首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Highly concentrated amino group-functionalized graphite encapsulated magnetic nanoparticles fabricated by a one-step arc discharge method
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Highly concentrated amino group-functionalized graphite encapsulated magnetic nanoparticles fabricated by a one-step arc discharge method

机译:通过一步电弧放电法制备的高浓度氨基官能化石墨包裹磁性纳米粒子

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摘要

In this work, we apply a one-step direct current arc discharge method to synthesize graphite encapsulated magnetic nanoparticles functionalized with a high concentration of amino groups uniformly without further modification or any other pre/post-treatment procedures. The synthesis was accomplished by adding different molar ratios of NH3 into He/CH4 gas mixture under various gas pressures. The optimized number of functionalized amino groups is evaluated to be similar to 3.22 x 10(5) per nanoparticle prepared at 50 Torr with 0.1% of NH3. As the molar ratios of NH3 decrease from 1.0% to 0.1%, the optical emission peaks of CN and NH are intensified gradually, and the surface structural integrities also increase. These results indicate that NH3 not only provides -NH or -NH2 fragment species to introduce amino groups incorporating with the dangling bonds activated by H radicals, but also constructs networks to flatten the outmost graphitic surfaces of encapsulated nanoparticles. As the working gas pressure changes from 25 to 100 Torr, the outmost shells formed by the dissociated CH4/NH3 molecules tend to be relatively less disordered. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在这项工作中,我们应用了一步式直流电弧放电方法来均匀地合成被高浓度氨基官能化的石墨封装磁性纳米粒子,而无需进一步修饰或任何其他预处理/后处理程序。通过在不同气压下将不同摩尔比的NH3加入到He / CH4气体混合物中来完成合成。官能化氨基的最优化数量被评估为与在0.1%NH3的50托条件下制备的每个纳米粒子约3.22 x 10(5)。随着NH 3的摩尔比从1.0%降低到0.1%,CN和NH的光发射峰逐渐增强,并且表面结构完整性也增加。这些结果表明,NH 3不仅提供-NH或-NH2片段种类以引入结合有被H自由基激活的悬空键的氨基,而且还构建了网络以使包封的纳米颗粒的最外层石墨表面平坦。当工作气压从25托变为100托时,由离解的CH4 / NH3分子形成的最外层的壳层趋向于相对无序。 (C)2016 Elsevier Ltd.保留所有权利。

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