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首页> 外文期刊>Journal of Colloid and Interface Science >One-step green fabrication of hierarchically porous hollow carbon nanospheres (HCNSs) from raw biomass: Formation mechanisms and supercapacitor applications
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One-step green fabrication of hierarchically porous hollow carbon nanospheres (HCNSs) from raw biomass: Formation mechanisms and supercapacitor applications

机译:原料生物质的分层多孔中空碳纳米球(HCNSS)的一步绿色制造:形成机制和超级电容器应用

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摘要

Hierarchical porous hollow carbon nanospheres (HCNSs) were fabricated directly from raw biomass via a one-step method, in which HCNSs were obtained by thermal treatment of raw biomass in the presence of polytetrafluoroethylene (PTFE). The HCNSs possess coupling merits of uniformly distributed hollow spherical architectures, and high specific surface area, abundant accessible/open micropores and reason-able mesopores, the HCNS-based electrodes deliver high electrochemical capacitance. The formation mechanisms of pores and hollow core-shell structures were explored thoroughly, it is found that the key to the formation of hollow core-shell structure is the onset-pyrolysis temperature difference between raw biomass and PTFE. Moreover, the content of silica had significant effects on the textures of HCNSs, and HCNS with the largest SSA of 1984 m(2)/g was obtained. Accordingly, a possible mechanism of HCNSs formation was proposed here, where PTFE acted as the pore creation and nucleation agents and raw biomasses were the primary carbon precursors. (C) 2020 Elsevier Inc. All rights reserved.
机译:利用聚四氟乙烯(PTFE)对生物质原料进行热处理,一步法制备了分级多孔中空碳纳米球(HCNSs)。HCNSs具有均匀分布的空心球形结构、高比表面积、丰富的可接近/开放微孔和合理的介孔等耦合优点,基于HCNS的电极具有较高的电化学电容。对孔隙和空心核壳结构的形成机理进行了深入探讨,发现形成空心核壳结构的关键是原料生物质和PTFE之间的起始热解温差。此外,二氧化硅含量对HCNSs的织构有显著影响,获得了最大SSA为1984 m(2)/g的HCNS。因此,本文提出了一种可能的HCNSs形成机制,其中PTFE作为孔隙生成剂和成核剂,原始生物物质是主要的碳前体。(C) 2020爱思唯尔公司版权所有。

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