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N-doped carbon quantum dots for TiO_2-based photocatalysts and dye-sensitized solar cells

机译:TiO_2基光催化剂和染料敏化太阳能电池的N掺杂碳量子点

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N-doped nanostructured carbon materials have attracted much attention because the doping can induce new unique physical and chemical properties of carbon. In this study, we report, for the first time, that N-doped carbon quantum dots (NCQDs) can combine with rutile TiO_2 and form NCQDs/TiO2 hierarchical microspheres assembled by nanorods with enhanced photocatalytic activities under visible light irradiation. As a result, the pseudo-first-order reaction constant for the degradation of rhodamine B (RhB) on NCQDs/TiO2 (0.11min~(-1)) is 215.7, 7.3 and 1.3 times much larger than that of NCQDs (0.00051min-1), TiO2 (0.015min~(-1)), and CQDs/TiO2 (0.086min~(-1)), respectively. The functions of NCQDs were discussed and a new synergistic photosensitized mechanism was proposed for the degradation of RhB on the as-synthesized NCQDs/TiO_2 nanocomposites based on the experimental results. NCQDs were also applied as metal-free sensitizers in dye-sensitized solar cells (DSSCs) for the first time. A preliminary study shows that under one sun illumination (AM 1.5), the open circuit voltage and fill factor values reach 0.46V and 43%, respectively, achieving a power conversion efficiency of 0.13% in the proof-of-concept TiO_2-based DSSCs device. The performance of NCQDs sensitized solar cells surpasses that of N-free counterpart as well. N-doping lowered the work function of CQDs, which was responsible for enhanced photocatalytic activity of NCQDs/TiO_2 and better NCQDs sensitized TiO_2-based solar cell performance.
机译:氮掺杂的纳米结构碳材料已引起人们的广泛关注,因为掺杂可以诱导碳具有新的独特的物理和化学性质。在这项研究中,我们首次报道了N掺杂的碳量子点(NCQD)可以与金红石TiO_2结合并形成由纳米棒组装而成的NCQDs / TiO2分层微球,在可见光照射下具有增强的光催化活性。结果,用于NCQDs / TiO2(0.11min〜(-1))上的若丹明B(RhB)降解的拟一级反应常数是NCQDs(0.00051min)的215.7、7.3和1.3倍。 -1),TiO2(0.015min〜(-1))和CQDs / TiO2(0.086min〜(-1))。讨论了NCQDs的功能,并根据实验结果提出了一种新的协同光敏机理,用于降解合成的NCQDs / TiO_2纳米复合材料上的RhB。 NCQD还首次在染料敏化太阳能电池(DSSC)中用作无金属敏化剂。一项初步研究表明,在一个阳光照射下(AM 1.5),开路电压和填充因子值分别达到0.46V和43%,在概念验证的TiO_2基DSSC中实现了0.13%的功率转换效率设备。 NCQD敏化太阳能电池的性能也超过了不含N的同类产品。 N掺杂降低了CQDs的功函数,这有助于增强NCQDs / TiO_2的光催化活性,并使NCQDs更好地敏化了基于TiO_2的太阳能电池性能。

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