首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Intense multi-state visible absorption and full-color luminescence of nitrogen-doped carbon quantum dots for blue-light-excitable solid-state-lighting
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Intense multi-state visible absorption and full-color luminescence of nitrogen-doped carbon quantum dots for blue-light-excitable solid-state-lighting

机译:氮掺杂碳量子点的强多态可见光吸收和全色发光,用于激发蓝光的固态照明

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摘要

Currently, the excitation-wavelength-dependent photoluminescence of traditional carbon dots does not constitute true tuning and their absorptions show gradual attenuation in the visible region. Herein, we report a facile strategy to realize intense visible absorption and full-color emissions of nitrogen doped carbon dots via the control of surface nitriding. The quantum yields of the carbon dots in aqueous solution reached 49.2%, 30.6% and 30.3% for blue, yellow and red emissions, respectively. Structural characterizations and spectroscopic analyses verify that three diverse emitting states, i.e., sp(2) carbon core, C = O and C = N related surface defects, are responsible for the multi-state absorptions and tunable emissions of the carbon dots. The ability to truly tune luminescence into the red wavelength region with strong visible absorption enables these carbon dots to improve the correlated color temperature and color rendering index of traditional phosphor-converted white light-emitting diodes.
机译:当前,传统的碳点依赖于激发波长的光致发光还不能构成真正的调谐,并且它们的吸收在可见光区域会逐渐衰减。本文中,我们报告了一种通过控制表面氮化来实现强烈的可见光吸收和氮掺杂碳点的全色发射的简便策略。对于蓝色,黄色和红色发射,水溶液中碳点的量子产率分别达到49.2%,30.6%和30.3%。结构表征和光谱分析证实,三种不同的发射态,即sp(2)碳核,C = O和C = N相关的表面缺陷,是碳点的多态吸收和可调发射的原因。通过强大的可见光吸收能力将发光真正调整到红色波长区域的能力,使这些碳点可以改善传统的磷光转换白光发光二极管的相关色温和显色指数。

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