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Facile and Efficient Fabrication of Bandgap Tunable Carbon Quantum Dots Derived From Anthracite and Their Photoluminescence Properties

机译:容纳和高效的带隙可调谐碳量子点衍生自含量的带隙和光致发光性能

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Low-cost and earth-abundant coal has been considered to have a unique structural superiority as carbon sources of carbon quantum dots (CQDs). However, it is still difficult to obtain CQDs from raw coal due to its compactibility and lower reactivity, and the majority of the current coal-based CQDs usually emit green or blue fluorescence. Herein, a facile two-step oxidation approach (K2FeO4 pre-oxidation and H2O2 oxidation) was proposed to fabricate bandgap tunable CQDs from anthracite. The K2FeO4 pre-oxidation can not only weaken the nonbonding forces among coal molecules which cause the expansion of coal particles, but also form a large number of active sites on the surface of coal particles. The above effects make the bandgap tunable CQDs (blue, green or yellow fluorescence) can be quickly obtained from anthracite within 1 h in the following H2O2 oxidation by simply adjusting the concentration of H2O2. All the as-prepared CQDs contain more than 30 at% oxygen, and the average diameters of which are less than 10 nm. The results also indicate that the high oxygen content only can create new energy states inside the band gap of CQDs with average diameter more than3.2±0.9 nm, which make the as-prepared CQDs emit green or yellow fluorescence.
机译:低成本和土壤丰富的煤已被认为具有独特的结构优势作为碳量子点(CQDS)的碳源。然而,由于其致密性和反应性降低,因此仍然难以从原煤获得CQDS,以及大多数当前的煤基CQD通常发出绿色或蓝色荧光。这里,提出了一种容易两步氧化方法(K2FeO 4预氧化和H 2 O 2氧化),用于从无烟煤制造带隙可调CQD。 K2FeO4预氧化不能削弱煤分子之间的非合金力,这导致煤颗粒的膨胀,还可以在煤颗粒表面上形成大量活性位点。通过简单地调节H 2 O 2的浓度,上述效果使带隙可调调谐CQD(蓝色,绿色或黄色荧光)在下列H 2 O 2氧化中快速获得。所有的AS制备的CQDS含有超过30at以%的氧气,其平均直径小于10nm。结果还表明,高氧含量仅可以在平均直径的CQDS的带隙内产生新的能量状态,这是2.2±0.9nm的平均直径,使得制备的CQD发出绿色或黄色荧光。

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