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Full-color fluorescent carbon quantum dots

机译:全彩荧光碳量子点

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Quantum dots have innate advantages as the key component of optoelectronic devices. For white light–emitting diodes (WLEDs), the modulation of the spectrum and color of the device often involves various quantum dots of different emission wavelengths. Here, we fabricate a series of carbon quantum dots (CQDs) through a scalable acid reagent engineering strategy. The growing electron-withdrawing groups on the surface of CQDs that originated from acid reagents boost their photoluminescence wavelength red shift and raise their particle sizes, elucidating the quantum size effect. These CQDs emit bright and remarkably stable full-color fluorescence ranging from blue to red light and even white light. Full-color emissive polymer films and all types of high–color rendering index WLEDs are synthesized by mixing multiple kinds of CQDs in appropriate ratios. The universal electron-donating/withdrawing group engineering approach for synthesizing tunable emissive CQDs will facilitate the progress of carbon-based luminescent materials for manufacturing forward-looking films and devices.
机译:量子点作为光电器件的关键部件具有先天的优点。对于白色发光二极管(WLED),设备的光谱和颜色的调制通常涉及不同发射波长的各种量子点。在这里,我们通过可扩展的酸性试剂工程策略制造一系列碳量子点(CQDS)。源自酸性试剂的CQDS表面上的越来越多的电子取出基团提高了它们的光致发光波长红移并提高粒度,阐明量子尺寸效应。这些CQDS发出明亮且非常稳定的全彩荧光,从蓝色到红光甚至白光。通过在适当比率中混合多种CQDS来合成全彩发光聚合物薄膜和所有类型的高色渲染指数WLED。用于合成可调发光CQD的通用电子捐赠/抽出组工程方法将促进用于制造前瞻性胶片和器件的碳基发光材料的进展。

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