Room-temperature synthesis of water-dispersible sulfur-doped reduced graphene oxide without stabilizers

石墨烯 材料科学 氧化物 硫黄 化学工程 Zeta电位 兴奋剂 纳米技术 催化作用 色散(光学) 无机化学 纳米颗粒 化学 有机化学 光电子学 工程类 冶金 物理 光学
作者
Jianqiang Guo,Weimiao Wang,Yue Li,Jiafeng Liang,Qiaosi Zhu,Jiongli Li,Xudong Wang
出处
期刊:RSC Advances [Royal Society of Chemistry]
卷期号:10 (44): 26460-26466 被引量:8
标识
DOI:10.1039/d0ra04838k
摘要

Sulfur-Doped graphene has attracted significant attention because of its potential uses in sensors, catalysts, and energy storage applications. In conventional approaches, the sulfur-doped graphene is fabricated with graphene oxide and sulfur-containing compounds through thermal annealing or hydrothermal process, which generally involves special equipment and heat treatment, and requires additional stabilizers to make it solution-processable. In this work, we report a facile one-step approach to synthesize water-dispersible sulfur-doped reduced graphene oxide (S-rGO). Graphene oxide (GO) could be readily reduced and converted to S-rGO simultaneously by directly mixing GO dispersion with hydrosulfide hydrate (NaSH·xH2O) at room temperature. The sulfur doping is confirmed by high resolution S 2p XPS spectrum and element mapping. The colloidal dispersion state of S-rGO is confirmed by the investigation of Tyndall effect, the zeta potential and particle size distribution measurement. Compared with previously reported strategies, NaSH can initiate the reduction and sulfur doping at room temperature, demand no heat treatment, require no equipment and form stable aqueous S-rGO dispersion without using any stabilizer. These advantages will facilitate large-scale production of water-dispersible (sulfur doped) graphene and further boost their applications in sensors, catalysts and energy storage devices.
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