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Master Tutor

Name (Pinyin):ZYC

E-Mail:

School/Department:Yangzhou University

Administrative Position:professor

Education Level:With Certificate of Graduation for Doctorate Study

Business Address:N111, New Chemistry Building, Yangzhou University, No.180 Siwangting Road, Yangzhou City

Contact Information:zhangyc@yzu.edu.cn

Degree:博士

Professional Title:副高级

Status:在岗

Alma Mater:Beijing University of Technology

Discipline:
Inorganic Chemistry

Honors and Titles:
2018-07-15 elected:The most popular class teacher in Yangzhou University
2023-08-01 elected:The most popular class teacher in Yangzhou University
2022-07-01 elected:Excellent undergraduate thesis advisor of Yangzhou University
2014-07-01 elected:Excellent graduate thesis advisor of Yangzhou University
2008-07-01 elected:Excellent undergraduate thesis advisor of Yangzhou University

Scalable low temperature in air solid phase synthesis of porous flower-like hierarchical nanostructure SnS2 with superior performance in the adsorption and photocatalytic reduction of aqueous Cr(VI)

Date:2023-04-11 clicks:

DOI number:10.1016/j.seppur.2017.08.014

Affiliation of Author(s):扬州大学

Journal:Separation and Purification Technology

Key Words:Tin sulfide;Hierarchical nanostructure;Solid phase synthesis;Photoelectrochemical properties;Photocatalytic reduction;Hexavalent chromium

Abstract:Nanosheets-constructed porous flower-like hierarchical nanostructure SnS2 (which was labeled as F-SnS2) was synthesized by heating the mixture of SnCl2·2H2O and thiourea in air at 170 °C for 2 h, in combination with a subsequent washing with water. F-SnS2 exhibited much more adsorption and faster visible-light (wavelength >420 nm)-irradiated photocatalytic reduction of aqueous Cr(VI), as compared with SnS2 nanoparticles, nanoplates-assembled flowerlike hierarchical structure SnS2 synthesized by hydrothermal method, Fe, N and C tri-doped TiO2, and hydrothermally treated g-C3N4. The underlying reasons for the far superior performance of F-SnS2 were proposed, based on the comparison of the microstructure, specific surface area, optical, electrochemical impedance, photocurrent, surface charge, and Cr(VI) adsorption properties of F-SnS2 and SnS2 nanoparticles. Besides, the photocatalytic reusability and stability of F-SnS2, as well as the effects of photocatalytic testing parameters (including dosage of photocatalyst, initial pH and concentration of K2Cr2O7 aqueous solution) on the Cr(VI) removal efficiency by F-SnS2 were also studied. This work may advance our knowledge on the scalable low temperature solid phase synthesis of SnS2 nanomaterial, and contribute to the application of SnS2 in treating the Cr(VI)-polluted water.

Indexed by:Research Atricle

Document Code:https://doi.org/10.1016/j.seppur.2017.08.014

Discipline:Natural Science

First-Level Discipline:Chemistry

Document Type:journal Article

Volume:189

Page Number:153-161

Translation or Not:no

Date of Publication:2017-12-22

Included Journals:SCI

Links to published journals:https://doi.org/10.1016/j.seppur.2017.08.014

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