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Uniformly Dispersed Platinum Nanoparticles Loading On Porous Carbons Without Using Reduction Agents

机译:不使用还原剂将均匀分散的铂纳米颗粒负载在多孔碳上

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Platinum nanoparticles loading on carbon nanotube, activated carbon, and activated carbon fiber was carried out by impregnation of hexachloro palatinate ion(IV) from hydrogen hexachloro platinate hydrate [H_2PtCl_6·5.7H_2O] dissolved solution without using reduction agents, and heating the hexachloro plati-nate(IV) impregnated carbons up to 800℃. When the initial platinum content was controlled to 1000 ppm in the solution, the adsorption capacities of hexachloro platinate(IV) on carbon nanotube, activated carbon and activated carbon fiber were 24%, 47%, and 76%, respectively at the equilibrium state. The adsorption isotherm type of hexachloro platinate(IV) on carbon nanotube was two-step linear and quite different from Langmuir model of activated carbon fiber due to the uniformly developed cylindrical pore structure and size distribution. The average platinum particle size on porous carbons was under 2 nm by heating the hexachloro platinate(IV) up to 400℃ in spite of non-using reduction agents, while the average size increased due to the agglomeration of some particles by heating them up to 800℃. Therefore, uniformly distributed platinum nanoparticles loading on porous carbons can be obtained from simple impregnation of hexachloro palatinate ion(IV) from solution and heating it up to 400℃.
机译:通过从六氯铂酸氢盐水合物[H_2PtCl_6·5.7H_2O]溶解的溶液中浸渍六氯巴拉丁酸根离子(IV),而不使用还原剂,并加热六氯铂酸,可以将纳米碳粉负载在碳纳米管,活性炭和活性碳纤维上。最高可达800℃的碳酸盐浸渍。当溶液中的初始铂含量控制为1000 ppm时,六氯铂酸盐(IV)在平衡状态下在碳纳米管,活性炭和活性炭纤维上的吸附容量分别为24%,47%和76%。碳纳米管上六氯铂酸盐(IV)的吸附等温线是两步线性的,并且由于活性炭纤维的圆柱孔结构和尺寸分布均匀,因此与活性炭纤维的Langmuir模型存在很大差异。尽管不使用还原剂,但通过将六氯铂酸盐(IV)加热至400℃,多孔碳上的铂平均粒径仍在2 nm以下,而由于将某些颗粒加热至200℃以上而产生的团聚,平均粒径却增大了800℃。因此,通过从溶液中简单浸渍六氯巴拉丁酸根离子(IV)并将其加热到400℃,可以得到负载在多孔碳上的均匀分布的铂纳米颗粒。

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