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Nanocarbons as Electron Donors and Acceptors in Photoinduced Electron-Transfer Reactions

机译:纳米碳作为光诱导电子转移反应中的电子供体和受体

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Nanocarbons composed of hybridized sp(2) carbons such as fullerenes, carbon nanotubes (CNTs), carbon nanohorns (CNHs) and graphene have been successfully utilized as electron acceptors in electron donor-acceptor hybrids for photoinduced electron-transfer reactions to mimic well the function of the photosynthetic reaction center. However, sp(2) hybridized nanocarbons can also be used as electron donors when higher fullerenes such as C-76 and C-78 or endohedral metallofullerenes are employed or when nanocarbons are combined with relatively strong electron acceptors. This paper focuses on photoinduced electron-transfer reactions of nanocarbons including fullerenes, CNTs, CNHs and graphene, which act as not only as electron acceptors but also as electron donors with strong electron acceptors such as tetracyanoethylene (TCNE) and tetracyano-p-quinodimethan (TCNQ) to produce the radical cations efficiently because of small reorganization energies of electron transfer. Alternatively the oxidizing ability of electron acceptors was enhanced by binding Lewis acids to the radical anions, which enabled to oxidize nanocarbons. The important roles of nanocarbons such as fullerenes, carbon nanotubes and graphenes on the stability of rapidly emerging perovskite based solar cells with high power conversion efficiency have also been discussed in this paper. (C) The Author(s) 2017. Published by ECS.
机译:由杂交的SP(2)碳组成的纳米碳,例如富勒烯,碳纳米管(CNT),碳纳米醇(CNHS)和石墨烯,已成功用作电子供体 - 受体杂种中的电子受体,用于光致电子转移反应,以模仿功能光合反应中心。然而,当使用更高的富勒烯如C-76和C-78或胚乳金属巯基或纳米碳结合与相对强的电子受体结合时,SP(2)杂交的纳米烃也可用作电子供体。本文侧重于纳米碳的光诱导的电子转移反应,包括富勒烯,CNT,CNHS和石墨烯,其不仅作为电子受体,而且作为电子受体,也是具有强电子受体的电子供体,例如四环乙烯(TCNE)和Tetracyano-P-QuinodimodeLan( TCNQ)由于电子转移的小重组能量,有效地生产自由基阳离子。或者,通过将路易斯酸与基团阴离子结合到自由基阴离子中,通过将电子受体的氧化能力增强,这使得纳米氧化物氧化。本文还讨论了纳米碳,例如富勒烯,碳纳米管和石墨烯的重要作用,如富勒烯,碳纳米管和石墨烯对快速涌现的基于钙钛矿的稳定性,并在本文中讨论了具有高功率转换效率的珀洛维矿石的稳定性。 (c)2017年提交人。由ECS发布。

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