用户名: 密码: 验证码:
新型Zn~(2+)掺杂C/Nb_2O_5纳米催化剂的制备及光催化性能
详细信息    查看全文 | 推荐本文 |
  • 英文篇名:Preparation and Photocatalytic Performance of Novel Zn-doped C/Nb_2O_5 Nanoparticles Catalyst
  • 作者:薛佼 ; 王润伟 ; 张宗弢 ; 裘式纶
  • 英文作者:XUE Jiao;WANG Runwei;ZHANG Zongtao;QIU Shilun;College of Chemistry,State Key Laboratory of Inorganic Synthesis and Preparative Chemistry,Jilin University;
  • 关键词:C/Nb2O5 ; 氧化锌 ; 表面氧空穴 ; 光催化活性 ; 罗丹明B ; 罗丹明6G
  • 英文关键词:C/Nb2O5;;ZnO;;Surface oxygen vacancies(SOVs);;Photocatalytic activity;;Rhodamine B(RhB);;Rhodamine 6G(Rh6G)
  • 中文刊名:GDXH
  • 英文刊名:Chemical Journal of Chinese Universities
  • 机构:吉林大学化学学院无机合成与制备化学国家重点实验室;
  • 出版日期:2018-02-10
  • 出版单位:高等学校化学学报
  • 年:2018
  • 期:v.39
  • 基金:国家自然科学基金(批准号:21261130584,20741001)资助~~
  • 语种:中文;
  • 页:GDXH201802019
  • 页数:8
  • CN:02
  • ISSN:22-1131/O6
  • 分类号:135-142
摘要
采用水热技术制备了Zn掺杂的C/Nb_2O_5纳米催化剂.通过X射线衍射(XRD)、透射电子显微镜(TEM)和X射线光电子能谱(XPS)对催化剂进行了表征.结果表明,催化剂呈现较高的结晶度和较均匀的形貌,Zn元素以氧化锌的形式随机分布在C/Nb_2O_5纳米催化剂的表面,当锌/铌摩尔比为10%时,催化剂表面氧空穴(SOVs)的量会达到一个最优值.对染料罗丹明B(Rh B)和罗丹明6G(Rh6G)在可见光下的降解实验结果表明,与商业P25,Nb_2O_5以及C/Nb_2O_5相比,适量Zn掺杂的C/Nb_2O_5纳米催化剂具有更好的光催化活性.
        Novel Zn-doped C/Nb_2O_5 nanoparticles were prepared via a simple hydrothermal method.The nanoparticles were characterized by X-ray diffraction(XRD),transmission electron microscopy(TEM)and X-ray photoelectron spectroscopy(XPS).The as-prepared nanoparticles presented enhanced crystallinity with ultrafine morphology and Zn element was confirmed to exit as the form of Zn O randomly on the surface of C/Nb_2O_5.The amount of surface oxygen vacancies(SOVs)on the catalyst surface reached an optimal value when the molar ratio of Zn/Nb was 10% proved by the XPS and surface photovoltage spectroscopy(SPS)results.The catalyst with an optimal doping amount of Zn exhibited much higher photocatalytic activity than P25 and commercial Nb_2O_5 towards degradation of Rhodamine B(Rh B)and Rhodamine 6G(Rh6G) under visible light irradiation.
引文
[1]Wu K.,Xie Y.,Zhao J.,Hidaka H.,J.Mol.Catal.,1999,144,77—84
    [2]Galinado C.,Jacques P.,Kalt A.,Chemosphere,2001,45,997—1005
    [3]Yuan Z.H.,Sun Y.C.,Wang Y.H.,Bie L.J.,Duan Y.Q.,Zhang L.D.,Chem.J.Chinese Universities,2004,25(10),1875—1878(袁志红,孙永昌,王玉红,别利剑,段月琴,张立德.高等学校化学学报,2004,25(10),1875—1878)
    [4]Cheng K.,Yang W.,Wang H.,Zhou J.,Wu S.J.,Yu T.M.,Chem.Res.Chinese Universities,2017,33(4),634—647
    [5]Hashemzadeh F.,Rahimi R.,Ghaffarinejad A.,Ceram.Int.,2014,40,9817—9829
    [6]Viet A.L.,Reddy M.V.,Jose R.,Chowdari B.V.R.,Ramarkrishna S.,J.Phys.Chem.C,2010,114,664—671
    [7]Wang Y.D.,Wang L.F.,Zhou Z.L.,Li Y.F.,Wu X.H.,Matter.Lett.,2001,49,277—281
    [8]zer N.,Chen D.G.,Lampert C.M.,Thin Solid Films,1996,277,162—168
    [9]Jose R.,Thavasi V.,Ramakrishna S.,J.Am.Ceram.,2009,92,289—301
    [10]Ghosh R.,Brennaman M.K.,Uher T.,Ok M.R.,Samulski E.T.,Mc Neil L.E.,Meyer T.J.,Lopez R.,ACS Appl.Mater.Interfaces,2011,3,3929—3935
    [11]Prado A.G.S.,Bolzon L.B.,Pedroso C.P.,Moura A.O.,Costa L.L.,Appl.Catal.,B,2008,82,219—224
    [12]Devaiah D.,Tsuzuki T.,Aniz C.U.,Reddy B.M.,Catal.Lett.,2015,45,1206—1216
    [13]Xie Z.G.,Zhou X.X.,Wu H.X.,Zhao H.,liu Y.,Chen H.G.,Catal.Lett.,2016,146,1355—1360
    [14]Phuc N.H.H.,Phuong P.T.T.,Tai V.T.,Huan N.M.,Duy N.P.H.,Loc L.C.,Catal.Lett.,2016,146,391—397
    [15]Jing L.Q.,Xin B.F.,Yuan F.L.,Xue L.P.,Wang B.Q.,Fu H.G.,J.Phys.Chem.B,2006,110,17860—17865
    [16]MarcìG.,Augugliaro V.,López-Mu1oz M.J.,Martín C.,Palmisano L.,Rives V.,Schiavello M.,Tilley R.D.,Venezia A.M.,J.Phys.Chem.B,2001,105,1033—1040
    [17]Zhao Y.,Li C.Z.,Liu X.H.,Gu F.,Du H.L.,Shi L.Y.,Appl.Catal.B,2008,79,208—215
    [18]Jin X.J.,Liu C.L.,Xu J.,Wang Q.F.,Chen D.,RSC Adv.,2014,4,35546—35553
    [19]Esteves A.,Oliveira L.C.A.,Ramalho T.C.,Goncalves M.,Anastacio A.S.,Carvalho H.W.P.,Catal.Commun.,2008,10(3),330—332
    [20]Ce S.X.,Jia H.M.,Zhao H.X.,Zheng Z.,Zhang Z.Z.,J.Mater.Chem.,2010,20,3052—3088
    [21]Ding S.,Wang R.W.,Zhang Z.T.,Qiu S.L.,Chem.J.Chinese Universities,2014,35(4),695—701(丁双,王润伟,张宗弢,裘式纶.高等学校化学学报,2014,35(4),695—701)
    [22]Xue J.,Wang R.W.,Zhang Z.T.,Qiu S.L.,Dalton Trans.,2016,45,16519—16525
    [23]Dai Z.,Dai H.,Zhou Y.,Liu D.,Duan G.,Cai W.,Li Y.,Adv.Mater.Interfaces,2015,2,1500167—1500172
    [24]Zheng Y.H.,Zheng L.R.,Zhan Y.Y.,Lin X.Y.,Zheng Q.,Wei K.M.,Inorg.Chem.,2007.46,6980—6986
    [25]Sclafani A.,Palmisano L.,Schiarello M.,J.Phys.Chem.,1990,94,829—832
    [26]Mills A.,Holland C.E.,Davies R.H.,Worsley D.,J.Photochem.Photobiol.A,1994,83,257—264
    [27]Chhor K.,Bocquet J.F.,Colbean-Justin C.,Mater.Chem.Phys.,2004,86,123—131
    [28]Zabek P.,Eberl J.,Kisch H.,Photochem.Photobiol.Sci.,2009,8,264—269
    [29]Jing L.Q.,Sun X.J.,Shang J.,Cai W.M.,Xu Z.L.,Du Y.G.,Fu H.G.,Sol.Energ.Mater.Sol.Cells,2003,79,133—151
    [30]Zhao Q.D.,Xie T.F.,Peng L.L.,Lin Y.H.,Wang P.,Wang D.J.,J.Phys.Chem.C,2007,111,17136—17145
    [31]Li H.Y.,Wang D.J.,Fan H.M.,Wang P.,Jiang T.F.,Xie T.F.,J.Colloid Interface Sci.,2011,354,175—180

© 2004-2018 中国地质图书馆版权所有 京ICP备05064691号 京公网安备11010802017129号

地址:北京市海淀区学院路29号 邮编:100083

电话:办公室:(+86 10)66554848;文献借阅、咨询服务、科技查新:66554700