材料科学
量子点
光致发光
石墨烯
发光
量子产额
吸收(声学)
纳米技术
纳米材料
光电子学
光化学
化学工程
荧光
化学
光学
复合材料
物理
工程类
作者
Kun‐Bin Cai,Hsiu‐Ying Huang,Meng-Lin Hsieh,Po‐Wen Chen,Shou-En Chiang,Sheng Hsiung Chang,Ji‐Lin Shen,Wei‐Ren Liu,Chi‐Tsu Yuan
出处
期刊:ACS Nano
[American Chemical Society]
日期:2022-03-02
卷期号:16 (3): 3994-4003
被引量:45
标识
DOI:10.1021/acsnano.1c09582
摘要
Carbon-based nanomaterials hold promise for eco-friendly alternatives to heavy-metal-containing quantum dots (QDs) in optoelectronic applications. Here, boric acid-functionalized graphene quantum dots (B-GQDs) were prepared using bottom-up molecular fusion based on nitrated pyrenes and boric acid. Such B-GQDs with crystalline graphitic structures and hydrogen-bonding functionalities would be suitable model systems for unraveling the photoluminescence (PL) mechanism, while serving as versatile building blocks for supramolecular self-assembly. Unlike conventional GQDs with multiple emissive states, the B-GQDs exhibited excitation-wavelength-independent, vibronic-coupled excitonic emission. Interestingly, their PL spectra can be tuned without largely sacrificing the quantum yield (QY) due to two-dimensional self-assembly. In addition, such B-GQDs in a polystyrene matrix possessed an ultrahigh QY (∼90%) and large exciton binding energy (∼300 meV). Benefiting from broadband absorption, ultrahigh QY, and long-wavelength emission, efficient laminated luminescent solar concentrators (100 × 100 × 6.3 mm3) were fabricated, yielding a high power conversion efficiency (1.4%).
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