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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Controllable synthesis of N-doped hollow-structured mesoporous carbon spheres by an amine-induced Stober-silica/carbon assembly process
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Controllable synthesis of N-doped hollow-structured mesoporous carbon spheres by an amine-induced Stober-silica/carbon assembly process

机译:通过胺诱导的斯托-二氧化硅/碳组装过程可控地合成N掺杂的中空结构介孔碳球

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We have demonstrated a facile and controllable synthesis of N-doped carbon spheres by an amine-induced Stober-silica/carbon assembly route. In this process, ethylenediamine (EDA), as both a base catalyst and nitrogen precursor, is introduced into a Stober-silica/carbon assembly system for the first time. Moreover, carbon materials with different nanostructures, including yolk-shell mesoporous carbon spheres (YSMCSs) and hollow mesoporous carbon spheres (HMCSs), are obtained by changing the amount of EDA. The resultant carbon nanospheres possess high surface areas (up to 2001 m(2) g(-1)), large pore volumes (up to 1.86 cm(3) g(-1)) and uniform mesopore size (similar to 2.6 nm for N-YSMCSs, similar to 2.4 nm for N-HMCSs). The obtained two kinds of carbon spheres manifest excellent supercapacitor performances with high capacitance, favorable capacitance retention, and unprecedented cycling stability, which may be contributed to by the hollow large surface area, high porosity, mesoporous structures, and N heteroatomic functionality. We believe that such structure integrations are useful for a lot of applications, such as advanced energy storage materials and catalyst supports.
机译:我们已经证明了通过胺诱导的斯托伯-二氧化硅/碳组装路线可以容易且可控地合成N掺杂的碳球。在此过程中,乙二胺(EDA)作为基础催化剂和氮前体,都是首次引入Stober-二氧化硅/碳组装系统。此外,通过改变EDA的量,可以获得具有不同纳米结构的碳材料,包括蛋黄壳中孔碳球(YSMCS)和中孔中碳球(HMCS)。所得的碳纳米球具有高表面积(最大2001 m(2)g(-1)),大孔体积(最大1.86 cm(3)g(-1))和均匀的中孔尺寸(对于2.6 nm N-YSMCS,类似于N-HMCS的2.4 nm)。所得的两种碳球表现出优异的超级电容器性能,具有高电容,良好的电容保持率和空前的循环稳定性,这可能是由于中空的大表面积,高孔隙率,介孔结构和N杂原子官能度所致。我们认为,这种结构集成对于许多应用很有用,例如先进的储能材料和催化剂载体。

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