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采用水热/溶剂热法,以Zn(Ac)2·2H2O和CH4N2S为反应物合成ZnS微球.对ZnS微球进行X射线衍射(XRD)、扫描电镜(SEM)及紫外可见漫反射光谱等表征.结果表明,合成的ZnS微球为立方闪锌矿型晶体结构,由ZnS纳米粒子自组装而成.在降解苯酚水溶液的光催化研究中,以乙二醇-水为溶剂合成的ZnS光催化活性明显优于其他溶剂体系合成的ZnS,循环使用3次仍保持较高的活性.ZnS微球光催化性能的提高可归结为以下三方面的协同作用:较小的禁带宽度(3.39 eV)有利于吸收光子,较完整的晶体结构使催化剂活性分子数增多和较大的比表面积(19.4 m2/g)有利于反应液与催化剂的充分接触.ZnS微球降解苯酚的中间产物为乙二酸、顺丁烯二酸和极少量的对苯二酚.

参考文献

[1] Manickavachagam Muruganandham;Ramakrishnan Amutha;Mika Silianpaa.Reagents for ZnS Hierarchical and Non-Hierarchical Porous Self-Assembly[J].ACS applied materials & interfaces,20107(7):1817-1823.
[2] Wang Z;Qian XF;Li Y;Yin J;Zhu ZK.Large-scale synthesis of tube-like ZnS and cable-like ZnS-ZnO arrays: Preparation through the sulfuration conversion from ZnO arrays via a simple chemical solution route[J].International Journal of Quantum Chemistry,20055(5):1589-1594.
[3] Yong Liu;Juncheng Hu;Chilan Ngo.Gram-scale wet chemical synthesis of wurtzite-8H nanoporous ZnS spheres with high photocatalytic activity[J].Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications,20111/2(1/2):212-219.
[4] G.H. YUE;P.X. YAN;D. YAN;X.Y. FAN;M.X. WANG;D.M. QU;J.Z. LIU.Hydrothermal synthesis of single-crystal ZnS nanowires[J].Applied physics, A. Materials science & processing,20064(4):409-412.
[5] Park, Ju-Young;Choi, Do-Young;Hwang, Kyung-Jun;Park, Seo-Jin;Yoon, Soon-Do;Yun, Yeon-Hum;Zhao, Xing Guan;Gu, Hal-Bon;Lee, In-Hwa.Synthesis of ZnS Microspheres by Template-Free Hydrothermal Method for Photocatalytic Reaction[J].Journal of nanoscience and nanotechnology,20157(7):5224-5227.
[6] Rana RK.;Zhang LZ.;Yu JC.;Mastai Y.;Gedanken A..Mesoporous structures from supramolecular assembly of in situ generated ZnS nanoparticles[J].Langmuir: The ACS Journal of Surfaces and Colloids,200314(14):5904-5911.
[7] Ren GQ;Lin Z;Gilbert B;Zhang J;Huang F;Liang JK.Evolution of ZnS nanostructure morphology under interfacial free-energy control[J].Chemistry of Materials: A Publication of the American Chemistry Society,20087(7):2438-2443.
[8] Yu, XX;Yu, JG;Cheng, B;Huang, BB.One-Pot Template-Free Synthesis of Monodisperse Zinc Sulfide Hollow Spheres and Their Photocatalytic Properties[J].Chemistry: A European journal,200927(27):6731-6739.
[9] Changlin Yu;Kai Yang;Yu Xie.Novel hollow Pt-ZnO nanocomposite microspheres with hierarchical structure and enhanced photocatalytic activity and stability[J].Nanoscale,20135(5):2142-2151.
[10] Changlin Yu;Fangfang Cao;Xin Li.Hydrothermal synthesis and characterization of novel PbWO4 microspheres with hierarchical nanostructures and enhanced photocatalytic performance in dye degradation[J].Chemical engineering journal,2013:86-95.
[11] Yu, CL;Yu, JC;Chan, M.Sonochemical fabrication of fluorinated mesoporous titanium dioxide microspheres[J].Journal of Solid State Chemistry,20095(5):1061-1069.
[12] M.Muruganandham;R.Amutha;Evelina Repo.Controlled mesoporous self-assembly of ZnS microsphere for photocatalytic degradation of Methyl Orange dye[J].Journal of Photochemistry and Photobiology, A. Chemistry,20102/3(2/3):133-141.
[13] Hu CG;Zhang ZW;Liu H;Gao PX;Wang ZL.Direct synthesis and structure characterization of ultrafine CeO2 nanoparticles[J].Nanotechnology,200624(24):5983-5987.
[14] Shi, Fenfen;Chen, Linlin;Xing, Chaosheng;Jiang, Deli;Li, Di;Chen, Min.ZnS microsphere/g-C3N4 nanocomposite photocatalyst with greatly enhanced visible light performance for hydrogen evolution: synthesis and synergistic mechanism study[J].RSC Advances,2014107(107):62223-62229.
[15] Navaneethan, M;Archana, J;Nisha, KD;Hayakawa, Y;Ponnusamy, S;Muthamizhchelvan, C.Temperature dependence of morphology, structural and optical properties of ZnS nanostructures synthesized by wet chemical route[J].Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics,20101(1):249-252.
[16] Fangfang Dong;Yuming Guo;Jie Zhang;Yihui Li;Lin Yang;Qilong Fang;Hui Fang;Kai Jiang.Size-controllable hydrothermal synthesis of ZnS nanospheres and the application in photocatalytic degradation of organic dyes[J].Materials Letters,2013Apr.15(Apr.15):59-63.
[17] Zhong, Jiahui;Zhang, Ya;Hu, Changqun;Hou, Rujing;Yin, Haibo;Li, Hexing;Huo, Yuning.Supercritical solvothermal preparation of a ZnxCd1-xS visible photocatalyst with enhanced activity[J].Journal of Materials Chemistry, A. Materials for energy and sustainability,201446(46):19641-19647.
[18] Tang, Yanfeng;Liu, Xinlin;Ma, Changchang;Zhou, Mingjun;Huo, Pengwei;Yu, Longbao;Pan, Jianming;Shi, Weidong;Yan, Yongsheng.Enhanced photocatalytic degradation of tetracycline antibiotics by reduced graphene oxide-CdS/ZnS heterostructure photocatalysts[J].New Journal of Chemistry,20157(7):5150-5160.
[19] Long M;Cai WM;Cai J;Zhou BX;Chai XY;Wu YH.Efficient photocatalytic degradation of phenol over Co3O4/BiVO4 composite under visible light irradiation[J].The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical,200641(41):20211-20216.
[20] Yongjun Shen;Lecheng Lei;Xingwang Zhang;Minghua Zhou;Yi Zhang.Effect of various gases and chemical catalysts on phenol degradation pathways by pulsed electrical discharges[J].Journal of hazardous materials,20083(3):713-722.
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