4.3 Article

Surfactant-assisted hydrothermal synthesis of MoS2 micro-pompon structure with enhanced photocatalytic performance under visible light

期刊

TUNGSTEN
卷 2, 期 2, 页码 203-213

出版社

SPRINGERNATURE
DOI: 10.1007/s42864-020-00050-w

关键词

Hydrothermal method; MoS2 micro-pompon; Surfactant-assistant; Visible light photocatalytic; Rhodamine B

资金

  1. National Research Foundation Singapore programme [NRF-CRP21-2018-0007, NRF-CRP22-2019-0007]
  2. Singapore Ministry of Education [MOE2018-T3-1-002, MOE2016-T2-1-131, RG4/17, RG7/18]
  3. National Natural Science Foundation of China [11904289, 61974120]
  4. Fundamental Research Funds for the Central Universities [3102019PY004, 31020190QD010, 3102019JC004]
  5. Key Program for International Science and Technology Cooperation Projects of Shanxi Province [2018KWZ-08]
  6. National Key Research and Development Program of China [2019YFC1520904]
  7. Key Research and Development Project of Shanxi Province [2020GXLH-Z-027, 2020ZDLGY04-08]
  8. Natural Science Foundation of Shanxi Province [2019JQ-613]
  9. Foundation of the Education Department of Shanxi Province [18JK0780]
  10. Northwestern Polytechnical University [19SH020159, 19SH020123]

向作者/读者索取更多资源

MoS2 nanomaterial with the micro-pompon structure was synthesized by a surfactant-assisted hydrothermal method. The morphologies and structures of as-prepared MoS2 micro-pompon were investigated by adding different types of surfactants such as cetyltrimethyl ammonium bromide (CTAB), sodium dodecylbenzene sulphonate (SDBS), and polyvinyl pyrrolidone (PVP). The results indicated that the morphology of MoS2 could be controlled and changed effectively by the cationic surfactant of CTAB. A reasonable growth mechanism for hollow structured MoS2 micro-pompon by hydrothermal processes was proposed. Further, photocatalytic degradation properties of MoS2 micro-pompon under visible light were evaluated by degradation of common organic dyes, which include rhodamine B (RhB), congo red, methyl orange, and methylene blue. The results indicated that MoS2 micro-pompon owned the highly selective catalytic ability to RhB with degradation efficiency of 95% in 60 min and 68% in 30 min. With the additive of the surfactant, the MoS2-CTAB sample exhibited an enhanced ability of photocatalytic activity where degradation efficiency was improved to 92% in 30 min. The method employed in this work could be expanded to fabricate other sulfides with the controllable morphology and structure to further regulate the photocatalytic performance.

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