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Layer-by-Layer Self-Assembly of Hollow Nitrogen-Doped Carbon Quantum Dots on Cationized Textured Crystalline Silicon Solar Cells for an Efficient Energy Down-Shift

机译:在阳离子化纹理晶体硅太阳能电池上的中空氮掺杂碳量子点的层逐层自组装,用于高效拆分

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摘要

Enhancing the efficiency of the crystalline silicon solar cell (c-Si SC) by coating the energy shifting layer with quantum dots (QDs) is a recent approach to efficiently utilize the high-energy spectrum of light. Carbon QDs are an attractive candidate for such applications; however, a small Stokes shift and nonuniform coating due to high aggregation are the bottlenecks to fully utilize their potential. For this purpose, here, we propose a layer-by-layer self-assembled uniform coating of eco-friendly red-emissive hollow nitrogen-doped carbon QDs (NR-CQDs) as an efficient energy-down-shifting layer. A unique hollow and conjugated structure of NR-CQDs was designed to achieve a large Stokes shift (UV-excited red emission) with a quantum yield (QY) comparable to Cd/Pb QDs. A highly uniform coating of intrinsically negatively charged NR-CQDs on c-Si SCs was achieved by cationizing the c-Si SC by bovine serum albumin (BSA) under mildly acidic conditions. By an opposite-charge-assisted, self-assembled overlayer, the short-circuit current density (J(sc)) and power-conversion efficiency were increased by 5.8%, which is attributed to the large Stokes shift (255 nm) and high QY. Blue-emissive undoped carbon QDs were synthesized for comparison with the proposed NR-CQDs to elucidate the significance of the novel proposed structure.
机译:通过用量子点(QDS)涂覆能量移位层来提高晶体硅太阳能电池(C-Si Sc)的效率是最近有效利用光的高能量光谱的方法。碳QD是这种应用的有吸引力的候选者;然而,由于高聚集为引起的小型斯托克斯换档和非均匀涂层是充分利用其潜力的瓶颈。为此目的,这里,我们提出了一种逐层自组装均匀的环型红发射中空氮气掺杂碳QDS(NR-CQDS)作为一种有效的节能层。设计了NR-CQDS的独特中空和共轭结构,以实现与CD / Pb QDS相当的量子产率(QY)的大型斯托克斯偏移(UV激发红色发射)。通过在温和的酸性条件下通过牛血清白蛋白(BSA)巩固C-Si SC来实现在C-Si SC上的本质上带负电的NR-CQDS的高度均匀涂层。通过相反电荷辅助的自组装覆盖器,短路电流密度(J(SC))和功率转换效率增加了5.8%,归因于大型斯托克斯班次(255nm)和高qy。合成蓝色发光未掺杂的碳QD,与所提出的NR-CQDS进行比较,以阐明新颖的提出结构的重要性。

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