Green Synthesis of carbon quantum dots for enhancing photocatalytic activity: Hydrogen/oxygen evolution and dye photodegradation

IF 5.2 2区 化学 Q1 CHEMISTRY, APPLIED Catalysis Today Pub Date : 2024-08-16 DOI:10.1016/j.cattod.2024.114996
Claudio W. Backes , Felipe B. Reis , Guilherme B. Strapasson , Marcelo Assis , Elson Longo , Daniel E. Weibel
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Abstract

Carbon quantum dots (CQDs) have recently attracted attention across various fields due to their small size, high conductivity, fluorescence emission, low toxicity, and other desirable characteristics. In this study, highly fluorescent CQDs with an average diameter of 3.7 nm were prepared via microwave irradiation using a standard commercial microwave oven and glycerol as solvent. Several cation promoters were examined for CQD synthesis, with copper ions ultimately chosen for comprehensive characterization and application. The CQDs were impregnated onto both commercially available and microwave-synthesized TiO2 nanoparticles. The photocatalytic activity was evaluated with respect to the hydrogen and oxygen generation. Under the employed conditions, the oxygen evolution reaction (OER) exhibited over 12 times higher efficiency than the hydrogen evolution reaction (HER). The enhanced OER activity is attributed to the high electronic conductivity of the small Cu doped CQDs@TiO2 (Cu-CQDs@TiO2) facilitating an efficient electron transfer for the OER . Visible light activity (λ ≥ 400 nm) was demonstrated by photodegradation of the indigo carmine (IC) solution used as a model pollutant. Irradiation in the presence of the Cu-CQDs@TiO2 photocatalyst resulted in complete degradation of the dye in less than 3 hours. The results presented here provide a promising methodology for designing high-performance photocatalysts based on environmentally friendly CQD syntheses. Crucial applications, from renewable energy production to environmental remediation, will benefit from strategies using the carbon abundance on Earth.

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提高光催化活性的碳量子点的绿色合成:氢/氧演化和染料光降解
碳量子点(CQDs)因其小尺寸、高导电性、荧光发射、低毒性等理想特性,近年来在各个领域备受关注。本研究使用标准商用微波炉和甘油作为溶剂,通过微波辐照制备了平均直径为 3.7 纳米的高荧光 CQDs。研究人员考察了几种用于合成 CQD 的阳离子促进剂,最终选择铜离子进行综合表征和应用。CQDs 被浸渍在市售和微波合成的 TiO2 纳米粒子上。评估了氢气和氧气生成方面的光催化活性。在所采用的条件下,氧进化反应(OER)的效率是氢进化反应(HER)的 12 倍以上。OER 活性的增强归因于掺杂了少量铜的 CQDs@TiO2 (Cu-CQDs@TiO2)的高电子传导性促进了 OER 的高效电子转移。通过光降解作为示范污染物的靛蓝胭脂红(IC)溶液,证明了可见光活性(λ ≥ 400 nm)。在 Cu-CQDs@TiO2 光催化剂存在的情况下进行辐照,可在不到 3 小时的时间内完全降解染料。本文介绍的结果为设计基于环保型 CQD 合成的高性能光催化剂提供了一种很有前景的方法。从可再生能源生产到环境修复等关键应用,都将受益于利用地球上丰富碳资源的策略。
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来源期刊
Catalysis Today
Catalysis Today 化学-工程:化工
CiteScore
11.50
自引率
3.80%
发文量
573
审稿时长
2.9 months
期刊介绍: Catalysis Today focuses on the rapid publication of original invited papers devoted to currently important topics in catalysis and related subjects. The journal only publishes special issues (Proposing a Catalysis Today Special Issue), each of which is supervised by Guest Editors who recruit individual papers and oversee the peer review process. Catalysis Today offers researchers in the field of catalysis in-depth overviews of topical issues. Both fundamental and applied aspects of catalysis are covered. Subjects such as catalysis of immobilized organometallic and biocatalytic systems are welcome. Subjects related to catalysis such as experimental techniques, adsorption, process technology, synthesis, in situ characterization, computational, theoretical modeling, imaging and others are included if there is a clear relationship to catalysis.
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