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首页> 外文期刊>Angewandte Chemie >Enhancing Light Absorption and Charge Transfer Efficiency in Carbon Dots through Graphitization and Core Nitrogen Doping
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Enhancing Light Absorption and Charge Transfer Efficiency in Carbon Dots through Graphitization and Core Nitrogen Doping

机译:通过石墨化和核心氮掺杂增强碳点的光吸收和电荷转移效率

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摘要

Single-source precursor syntheses have been devised for the preparation of structurally similar graphitic carbon dots (CDs), with (g-N-CD) and without (g-CD) core nitrogen doping for artificial photosynthesis. An order of magnitude improvement has been realized in the rate of solar (AM1.5G) H-2 evolution using g-N-CD (7950 mu mol(H2) (g(CD))(-1) h(-1)) compared to undoped CDs. All graphitized CDs show significantly enhanced light absorption compared to amorphous CDs (a-CD) yet undoped g-CD display limited photosensitizer ability due to low extraction of photogenerated charges. Transient absorption spectroscopy showed that nitrogen doping in g-N-CD increases the efficiency of hole scavenging by the electron donor and thereby significantly extends the lifetime of the photogenerated electrons. Thus, nitrogen doping allows the high absorption coefficient of graphitic CDs to be translated into high charge extraction for efficient photocatalysis.
机译:已经设计了单源前体合成,用于制备结构相似的石墨碳点(CDS),具有(G-N-CD)和没有(G-CD)核心掺杂用于人造光合作用。 使用GN-Cd(7950μmol(H 2)(G(CD))( - 1)H(-1))的太阳能(AM1.5G)H-2演化速度实现了一个数量级改善的顺序 未致辞的CD。 与无定形CDS(A-CD)相比,所有石墨化CD显示出显着增强的光吸收,而未掺杂的G-CD显示出显着的光敏剂能力,由于低萃取光致电荷。 瞬时吸收光谱显示,G-N-CD中的氮掺杂增加了电子给体的孔清除的效率,从而显着地延伸了光发生的电子的寿命。 因此,氮掺杂允许将石墨CD的高吸收系数转化为高电荷提取以进行高效的光催化。

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