The Enhanced Photoluminescence Properties of Carbon Dots Derived from Glucose: The Effect of Natural Oxidation

Nanomaterials Pub Date : 2024-06-03 DOI:10.3390/nano14110970
Pei Zhang, Yibo Zheng, L. Ren, Shaojun Li, Ming Feng, Qingfang Zhang, Rubin Qi, Zirui Qin, Jitao Zhang, Liying Jiang
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Abstract

The investigation of the fluorescence mechanism of carbon dots (CDs) has attracted significant attention, particularly the role of the oxygen-containing groups. Dual-CDs exhibiting blue and green emissions are synthesized from glucose via a simple ultrasonic treatment, and the oxidation degree of the CDs is softly modified through a slow natural oxidation approach, which is in stark contrast to that aggressively altering CDs’ surface configurations through chemical oxidation methods. It is interesting to find that the intensity of the blue fluorescence gradually increases, eventually becoming the dominant emission after prolonging the oxidation periods, with the quantum yield (QY) of the CDs being enhanced from ~0.61% to ~4.26%. Combining the microstructure characterizations, optical measurements, and ultrafiltration experiments, we hypothesize that the blue emission could be ascribed to the surface states induced by the C–O and C=O groups, while the green luminescence may originate from the deep energy levels associated with the O–C=O groups. The distinct emission states and energy distributions could result in the blue and the green luminescence exhibiting distinct excitation and emission behaviors. Our findings could provide new insights into the fluorescence mechanism of CDs.
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葡萄糖衍生碳点的增强型光致发光特性:自然氧化的影响
碳点(CD)荧光机理的研究,尤其是含氧基团的作用引起了广泛关注。通过简单的超声波处理,以葡萄糖为原料合成了具有蓝色和绿色荧光的双碳点,并通过缓慢的自然氧化方法柔和地改变了碳点的氧化程度,这与通过化学氧化方法积极改变碳点表面构型形成了鲜明对比。有趣的是,在延长氧化期后,蓝色荧光的强度逐渐增加,最终成为主要发射,CD 的量子产率(QY)从 ~0.61% 提高到 ~4.26%。结合微结构表征、光学测量和超滤实验,我们推测蓝色发射可能归因于 C-O 和 C=O 基团诱导的表面态,而绿色发光可能源于与 O-C=O 基团相关的深能级。不同的发射状态和能量分布可能导致蓝色和绿色发光表现出不同的激发和发射行为。我们的发现可为了解 CD 的荧光机制提供新的视角。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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