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Excitation-independent deep-blue emitting carbon dots with 62 emission quantum efficiency and monoexponential decay profile for high-resolution fingerprint identification

机译:非激发无关的深蓝色发射碳点,具有 62 的发射量子效率和单指数衰减曲线,用于高分辨率指纹识别

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摘要

Reaching emissive nanomaterials at short wavelengths with a high quantum efficiency (QE) is an attractive task for researchers. This is more demanding in carbon dots (CDs) with diverse applications that usually emit photons at wavelengths around 450–620 nm. In this study, deep blue-emissive doped-CDs (d-CDs) with high photoluminescence (PL) QE up to 62 and excitation-independent properties were prepared via a short-time microwave irradiation method. The prepared CDs showed simultaneous amorphous and crystalline features, with average sizes of 4.75 nm and bright emission color located at 422 nm. It was found that the presence of sulfur-related dopant levels plays a key role in emission properties in such a way that the PL signal drops significantly in the absence of N-acetyl-l-cysteine (NAC) as a dopant source. On the other hand, the trisodium citrate dihydrate (TSC) was selected as a carbon source to form the main carbon skeleton without it no emission was recorded.Monoexponentialfitted recombination trend with an average lifetime of about 10 ns also confirmed excellent PL emission properties with uniform energy levels and minimized defect-contributing recombinations. The practical use of the as-prepared N, S-doped CDs was assessed in fingerprint detection indicating a bright and clear scheme for both core and termination regions of the fingerprint. Simplicity, cost-effectiveness, high-product yield, low toxicity, along with high/stable PL quantum efficiency in deep-blue wavelengths, and demonstrated ability for fingerprint purposes, support the prospective application of these dual doped-CDs for sensing and bioimaging applications.
机译:以高量子效率(QE)达到短波长的发射纳米材料对研究人员来说是一项有吸引力的任务。这在碳点 (CD) 中要求更高,这些碳点 (CD) 具有多种应用,通常发射波长约为 450–620 nm 的光子。本研究采用短时微波辐照法制备了具有高达62%的光致发光(PL)QE和不依赖激发特性的深蓝光发射掺杂CD(d-CDs)。制备的CD同时表现出非晶和结晶特征,平均尺寸为4.75 nm,明亮的发光颜色位于422 nm处。研究发现,硫相关掺杂剂水平的存在在发射特性中起着关键作用,使得在没有 N-乙酰基-l-半胱氨酸 (NAC) 作为掺杂剂源的情况下,PL 信号显着下降。另一方面,选择柠檬酸三钠二水合物(TSC)作为碳源,形成主碳骨架,没有记录到排放。平均寿命约为 10 ns 的单指数拟合复合趋势也证实了具有均匀能级和最小化缺陷贡献复合的出色 PL 发射特性。评估了制备的N,S掺杂CDs在指纹检测中的实际应用,表明指纹的核心和末端区域都有明亮清晰的方案。简单性、成本效益、高产品产量、低毒性,以及在深蓝色波长中的高/稳定的PL量子效率,以及已证明的指纹识别能力,支持这些双掺杂CD在传感和生物成像应用中的预期应用。

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