Enriched photocatalytic degradation of methylene orange dye using carbon quantum dots surface-decorated TiO2 nanocomposites

IF 4.7 3区 材料科学 Q2 MATERIALS SCIENCE, MULTIDISCIPLINARY Materials Chemistry and Physics Pub Date : 2024-10-21 DOI:10.1016/j.matchemphys.2024.130049
Asrianti B.T. Sunardi , Fadhillah Choirunnisa , Atika S.P. Dewi , Hendri Widiyandari , Yayuk Astuti , Osi Arutanti , Ali A. Salim , Nandang Mufti
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Abstract

Complex molecules in methylene orange (MO) dye-contaminated water are carcinogenic and mutagenic risks to human health. Carbon quantum dot surface-decorated titanium dioxide nanocomposites (CQD-TiO2 NCs) were synthesized via a sustainable hydrothermal method at concentrations of 1.5–3 mL. These NCs exhibits superior electron transfer, light harvesting capabilities, high stability, easy modification, optical characteristics, and photocatalytic properties. The surface morphology, porosity, physiochemical, and optical features of these CQD-TiO2 NCs were characterized using TEM, UV–Vis, PL, BET, BJH micromeritics, pHzpc, and photoelectrochemical measurements. The prepared NCs were evaluated against the photocatalytic degradation of MO dye molecules using a solar simulator system. The TEM revealed ultra-sensitive and tiny CQD materials with graphite phases ranging from 5 to 10 nm and attached to the octahedron surface of TiO2 NCs. The PL analysis observed three distinct emission peaks in the visible region, attributed to the near band edge, interstitial (Tii), and oxygen vacancy (V0). The BET and BJH analyses were conducted to determine the N2 adsorption-desorption surface area and mesoporous structure with pore sizes ranging from 2 to 50 nm. These NCs showed excellent photocatalytic performance, effectively degrading MO up to 99.00 % in a 3 mL variation, indicating that they could be a great candidate for photocatalytic purification of wastewater containing MO dyes.

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利用碳量子点表面装饰的 TiO2 纳米复合材料富集亚甲基橙染料的光催化降解能力
亚甲基橙(MO)染料污染的水中的络合分子对人类健康具有致癌和致突变风险。通过可持续的水热法合成了碳量子点表面装饰的二氧化钛纳米复合材料(CQD-TiO2 NCs),浓度为 1.5-3 mL。这些纳米复合材料具有优异的电子传递、光收集能力、高稳定性、易改性、光学特性和光催化性能。利用 TEM、UV-Vis、PL、BET、BJH 微精密度、pHzpc 和光电化学测量对这些 CQD-TiO2 NCs 的表面形貌、孔隙率、物理化学和光学特征进行了表征。利用太阳能模拟系统对制备的 NCs 进行了 MO 染料分子光催化降解评估。TEM 显示了超灵敏的微小 CQD 材料,其石墨相从 5 纳米到 10 纳米不等,附着在 TiO2 NCs 的八面体表面上。聚光分析在可见光区域观察到三个不同的发射峰,分别归因于近带边、间隙(Tii)和氧空位(V0)。通过 BET 和 BJH 分析,确定了 N2 的吸附-解吸表面积以及孔径为 2 至 50 nm 的介孔结构。这些 NCs 表现出优异的光催化性能,在 3 mL 的变化中有效降解 MO 达 99.00%,表明它们是光催化净化含 MO 染料废水的理想候选材料。
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来源期刊
Materials Chemistry and Physics
Materials Chemistry and Physics 工程技术-材料科学:综合
CiteScore
8.70
自引率
4.30%
发文量
1515
审稿时长
69 days
期刊介绍: Materials Chemistry and Physics is devoted to short communications, full-length research papers and feature articles on interrelationships among structure, properties, processing and performance of materials. The Editors welcome manuscripts on thin films, surface and interface science, materials degradation and reliability, metallurgy, semiconductors and optoelectronic materials, fine ceramics, magnetics, superconductors, specialty polymers, nano-materials and composite materials.
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