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N-Doped graphene/C60 covalent hybrid as a new material for energy harvesting applications

机译:N掺杂石墨烯/ C60共价杂化物作为能量收集应用的新材料

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摘要

N-Doped graphene (N-G) was chemically functionalized by N-alkylation with the well-known electron acceptor C60. The degree of functionalization and the key structural features of the N-G/C60 hybrid were systematically investigated by a number of techniques including thermogravimetric analysis, X-ray photoelectron and Raman spectroscopies and transmission electron and atomic force microscopies. Absorption and electrochemical studies revealed interactions between the N-G and C60 while the fluorescence of C60 within the hybrid was found to be fully quenched. Evidence for the occurrence of excited state charge transfer from the singlet excited C60 to N-G in the hybrid was obtained from femtosecond transient absorption studies covering the visible–near-IR regions. Electron-pooling experiments performed in the presence of a sacrificial electron donor and a second electron acceptor, methyl viologen, revealed the accumulation of the one-electron reduced product of methyl viologen upon continuous irradiation of the N-G/C60 nanohybrid, thus revealing the utility of this material in photocatalytic energy harvesting applications.
机译:N掺杂的石墨烯(N-G)通过众所周知的电子受体C60的N-烷基化进行化学官能化。通过许多技术,包括热重分析,X射线光电子和拉曼光谱以及透射电子和原子力显微镜,系统地研究了N-G / C60杂化物的功能化程度和关键结构特征。吸收和电化学研究揭示了N-G和C60之间的相互作用,而杂化物中C60的荧光被完全淬灭。从飞秒瞬态吸收研究(涵盖可见-近红外区域)获得了杂种中单线态激发C60到N-G的激发态电荷转移的证据。在牺牲电子供体和第二电子受体甲基紫精的存在下进行的电子池实验表明,在连续辐照NG / C60纳米杂化物后,甲基紫精的单电子还原产物会积累,从而揭示了这种材料在光催化能量收集中的应用。

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