报道了一种新型Ag/Ag3PO4/g-C3N4三元复合光催化剂的制备及其半导体界面处的快速载流子分离所引起的光催化活性的显著增强效应.通过X射线衍射,扫描电子显微镜,紫外-可见吸收光谱以及光致发光光谱等就其晶体结构、形貌、组分、光学吸收以及载流子的快速分离行为进行了表征与分析.以罗丹明B作为模型化合物分子,研究发现,所制备的Ag/Ag3PO4/g-C3N4三元复合光催化剂在可见光照射下表现出比Ag3PO4以及Ag3PO4/g-C3N4二元催化剂更为优异的光催化活性.研究认为,Ag3PO4表面尺寸约为40 nm的Ag纳米粒子在可见光下受激所产生的等离子表面共振效应以及Ag3PO4与g-C3N4界面处所形成的类似异质结结构对所制备的Ag/Ag3PO4/g-C3N4三元复合光催化剂光催化活性的显著增强起到重要作用.
参考文献
[1] | Fujishima A;Honda K .[J].NATURE,1972,238:37. |
[2] | Asahi R;Morikawa T;Ohwaki T;Aoki K Taga Y .[J].SCIENCE,2001,293:269. |
[3] | Zou Z G;Ye J H;Sayama K;Arakawa H .[J].NATURE,2001,414:625. |
[4] | Kudo A;Miseki Y .[J].CHEMICAL SOCIETY REVIEWS,2009,38:253. |
[5] | 郑云,潘志明,王心晨.国内光催化研究进展简述[J].催化学报,2013(03):524-535. |
[6] | 王卫,陆春华,苏明星,倪亚茹,许仲梓.N掺杂富含(001)晶面TiO2纳米片的制备及N掺杂浓度对可见光催化活性的影响[J].催化学报,2012(04):629-636. |
[7] | Yi Z G;Ye J H;Kikugawa N;Kako T Ouyang S X Stuart-Williams H Yang H Cao J Y Luo W J Li Z S Liu Y Withers R .[J].Nature Materials,2010,9:559. |
[8] | Umezawa N;Ouyang S X;Ye J H .[J].Physical Review B: Condensed Matter,2011,83:035202. |
[9] | Wang X C;Maeda K;Thomas A;Takanabe K Xin G Carlsson J M Domen K Antonietti M .[J].Nature Materials,2009,8:76. |
[10] | Pan C S;Xu J;Wang Y J;Li D Zhu Y F .[J].Advanced Functional Materials,2012,22:1518. |
[11] | Xiang Q J;Yu J G;Jaroniec M .[J].Journal of Physical Chemistry C,2011,115:7355. |
[12] | Ge L;Han C C;Liu J .[J].Applied Catalysis B: Environmental,2011,108-109:100. |
[13] | Shiravand G;Badiei A;Ziarani G M;Jafarabadi M Hamzehloo M .[J].催化学报,2012,33:1347. |
[14] | Pan H Q;Li X K;Zhuang Z J;Zhang C .[J].Journal of Molecular Catalysis A: Chemical,2011,345:90. |
[15] | Yan S C;Lü S B;Li Z S;Zou Z G .[J].Dalton Transactions,2010,39:1488. |
[16] | Gondal M A;Rashid S G;Dastageer M A;Zubair S M Ali M A Lienhard J H McKinley G Varanasi K K .[J].IEEE Photonics Journal,2013,5:2201908. |
[17] | Gondal M A;Ali M A;Dastageer M A;Chang X F .[J].Catalysis Letters,2013,143:108. |
[18] | Shen K;Gondal M A;Li Z J;Li L Y Xu Q Y Yamani Z H .[J].Reaction Kinetics, Mechanisms and Catalysis,2013,109:247. |
[19] | Zhang J;Gondal M A;Wei W;Zhang T N Xu Q Y Shen K .[J].Journal of Alloys and Compounds,2012,530:107. |
[20] | Luo L R;Shen K;Xu Q Y;Zhou Q Wei W Gondal M A .[J].Journal of Alloys and Compounds,2013,558:73. |
[21] | Zhang B;Ji G B;Gondal M A;Liu Y S Zhang X M Chang X F Li N W .[J].Journal of Nanoparticle Research,2013,15:1773. |
[22] | Yan, S. C.;Li, Z. S.;Zou, Z. G. .Photodegradation Performance of g-C3N4 Fabricated by Directly Heating Melamine[J].Langmuir,2009(17):10397-10401. |
[23] | Bhui, DK;Bar, H;Sarkar, P;Sahoo, GP;De, SP;Misra, A .Synthesis and UV-vis spectroscopic study of silver nanoparticles in aqueous SDS solution[J].Journal of Molecular Liquids,2009(1):33-37. |
[24] | Zhang F J;Xie F Z;Zhu S F;Liu J Zhang J Mei S F Zhao W .[J].CHEMICAL ENGINEERING JOURNAL,2013,228:435. |
[25] | Kumar S;Surendar T;Baruah A;Shanker V .[J].Journal of Materials Chemistry A,2013,1:5333. |
[26] | Wang Q;Chen CC;Zhao D;Ma WH;Zhao JC .Change of adsorption modes of dyes on fluorinated TiO2 and its effect on photocatalytic degradation of dyes under visible irradiation[J].Langmuir: The ACS Journal of Surfaces and Colloids,2008(14):7338-7345. |
[27] | Park C Y;Ghosh T;Meng Z D;Kefayat U Vikram N Oh W C .[J].催化学报,2013,34:711. |
[28] | Chen C C;Ma W H;Zhao J C .[J].CHEMICAL SOCIETY REVIEWS,2010,39:4206. |
[29] | Wang W G;Cheng B;Yu J G;Liu G Fan W H .[J].Chemistry – An Asian Journal,2012,7:1902. |
[30] | Xiang Q J;Yu J G;Cheng B;Ong H C .[J].Chemistry – An Asian Journal,2010,5:1466. |
[31] | Yu J G;Dai G P;Huang B B .[J].Journal of Physical Chemistry C,2009,113:16394. |
[32] | Gondal, M.A.;Chang, X.;Sha, W.E.I.;Yamani, Z.H.;Zhou, Q..Enhanced photoactivity on Ag/Ag3PO4 composites by plasmonic effect[J].Journal of Colloid and Interface Science,2013:325-330. |
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