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Electrochemical Method To Prepare Graphene QuantumDots and Graphene Oxide Quantum Dots

机译:电化学方法制备石墨烯量子点和氧化石墨烯量子点

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摘要

In this study, we present the preparation of graphene quantum dots (GQDs) and graphene oxide quantum dots (GOQDs). GQDs/GOQDs are prepared by an easy electrochemical exfoliation method, in which two graphite rods are used as electrodes. The electrolyte used is a combination of citric acid and alkali hydroxide in water. Four types of quantum dots, GQD1–GQD4, are prepared by varying alkali hydroxide concentration in the electrolyte, while keeping the citric acid concentration fixed. Variation of alkali hydroxide concentration in the electrolyte results in the production of GOQDs. Balanced reaction of citric acid and alkali hydroxide results in the production of GQDs (GQD3). However, three variations in alkali hydroxide concentration result in GOQDs (GQD1, GQD2, and GQD4). GOQDs show tunable oxygen functional groups, which are confirmed by X-ray photoelectron spectroscopy. GQDs/GOQDs show absorption in the UV region and show excitation-dependent photoluminescence behavior. The obtained average size is 2–3 nm, as revealed by transmission electron microscopy. X-ray diffraction peak at around10° and broad D band peak at 1350 cm–1 in Ramanspectra confirm the presence of oxygen-rich functional groups on thesurface of GOQDs. These GQDs and GOQDs show blue to green luminescenceunder 365 nm UV irradiation.
机译:在这项研究中,我们介绍了石墨烯量子点(GQDs)和氧化石墨烯量子点(GOQDs)的制备。 GQD / GOQD通过简单的电化学剥落方法制备,其中使用两个石墨棒作为电极。使用的电解质是柠檬酸和氢氧化碱在水中的混合物。通过改变电解质中碱金属氢氧化物的浓度,同时保持柠檬酸浓度固定,可以制备四种类型的量子点GQD1-GQD4。电解质中碱金属氢氧化物浓度的变化会导致GOQD的产生。柠檬酸和碱金属氢氧化物的平衡反应导致生成GQD(GQD3)。但是,碱金属氢氧化物浓度的三个变化导致GOQD(GQD1,GQD2和GQD4)。 GOQD显示出可调的氧官能团,这已通过X射线光电子能谱得到了证实。 GQD / GOQD在紫外线区域显示吸收,并显示出与激发有关的光致发光行为。透射电子显微镜显示,获得的平均尺寸为2–3 nm。 X射线衍射峰在拉曼地区在1350 cm –1 处有10°和宽D带峰光谱证实了富氧官能团的存在GOQD的表面。这些GQD和GOQD显示蓝色到绿色的发光在365 nm紫外线照射下。

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