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- 2017
Br-N共掺杂TiO2/磁性炭复合材料的制备及其可见光催化性能
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Abstract:
[1] | 夏勇, 王海燕, 沈翔. 氮掺杂TiO2可见光光催化剂的制备及性能[J]. 环境工程学报, 2012, 6(9):3073-3078. XIA Y, WANG H Y, SHENG X. Preparation and perfor-mance of nitrogen-doped photocatalyst with visible light res-ponse[J]. Chinese Journal of Environmental Engineering, 2012, 6(9):3073-3078(in Chinese). |
[2] | 王振华, 主沉浮, 蔡元兴, 等. 掺杂改性纳米TiO2光催化剂的作用机理及改性途径[J]. 材料导报, 2006, 20(F11):61-64. WANG Z H, ZHU C F, CAI Y X, et al. Research progress in mechanism and preparation of doped modification of nanometer titanium dioxide[J]. Materials Review, 2006, 20(F11):61-64(in Chinese). |
[3] | THEVENET F, GUA O, HERRMANN J M, et al. Photoeatalytic degradation of acetylene over various titanium dioxide-based photocatalysts[J]. Applied Catalysis B:Environmental, 2005, 61(l-2):58-68. |
[4] | 朱遂一, 霍明昕, 于琪, 等. 氟掺杂纳米二氧化钛制备及其光催化性能研究进展[J]. 材料导报, 2010, 28(6):112-115. ZHU S Y, HUO M X, XU Q, et al. Preparation and photocatalytic properties of nanometer titannia loaded with fluorine:A review[J]. Science & Technology Review, 2010, 28(6):112-115(in Chinese). |
[5] | 李小红, 郑旭熙, 殷钟意, 等. 氟掺杂提高纳米二氧化钛光催化活性的研究进展[J]. 化学研究与应用, 2013, 25(3):280-286. LI X H, ZHENG X X, YIN Z Y, et al. Progress in research on improving photocatalytic activity of nanoscale titanium dioxide by doping fluorine[J]. Chemical Research and Application, 2013, 25(3):280-286(in Chinese). |
[6] | 胡杰珍, 邓培昌. 卤族元素掺杂改性TiO2光催化剂研究进展[J]. 钛工业发展, 2010, 27(3):8-12. HU J Z, DENG P C. Progress in research on TiO2 photo-catalyst by doping halogen element[J]. Titanium, 2010, 27(3):8-12(in Chinese). |
[7] | 姚志强, 李惠娟, 周徐胜, 等. TiO2/蒙脱土复合材料的制备及光催化降解苯酚性能[J]. 复合材料学报, 2015, 32(6):1581-1589. YAO Z Q, LI H J, ZHOU X S, et al.The preparation and the performance of photocatalytic degradation for phenol of TiO2/montmorillonite composite material[J]. Acta Materiae Compositae Sinica, 2015, 32(6):1581-1589(in Chinese). |
[8] | 王伟, 王吟, 王学江, 等. TiO2光催化剂掺杂及负载改性研究进展[J]. 水处理技术, 2013, 39(3):1-5. WANG W, WANG Y, WANG X J, et al. Progress in research on TiO2 photocatalyst by doping modification and immobilization[J]. Technology of Water Treatment, 2013, 39(3):1-5(in Chinese). |
[9] | 宋绵新, 周天亮, 王峰. TiO2光催化剂改性掺杂与负载技术研究进展[J]. 材料导报, 2006, 20(8):16-20. SONG M X, ZHOU T L, WANG F. Recent advances in immobilization and doped of TiO2 photocatalyst[J]. Materials Review, 2006, 20(8):16-20(in Chinese). |
[10] | 樊丽霞, 邓培昌, 王海增, 等. 溴掺杂TiO2光催化剂的制备与性能研究[J]. 环境工程学报, 2010, 4(2):417-421. FAN L X, DENG P C, WANG H Z, et al. Preparation and photocatalytic performance of bromine-doped TiO2 photo catalysts[J]. Chinese Journal of Environmental Engineering, 2010, 4(2):417-421(in Chinese). |
[11] | WU M C, LEE P H, LEE D L. Enhanced photocatalytic activity of palladium decorated TiO2 nanofibers containing anatase-rutile mixed phase[J]. International Journal of Hydrogen Energy, 2015, 40(13):4558-4566. |
[12] | 谢英娜, 安胜利, 袁春华, 等. La3+-Pr3+共掺杂纳米TiO2粉体的光催化性能[J]. 复合材料学报, 2012, 29(6):97-101. XIE Y N, AN S L, YUAN C H, et al. Influence of La3+and Pr3+co-doped on photocatalytic properties of TiO2 nano-particles[J]. Acta Materiae Compositae Sinica, 2012, 29(6):97-101(in Chinese). |
[13] | 尹诗衡, 雷淑梅, 匡同春. 非金属掺杂改性二氧化钛光催化剂研究进展[J]. 广东化工, 2007, 34(5):37-40. YIN S H, LEI S M, KUANG T C. Research developments of non-metal doped TiO2 photocatalyst[J]. Guangdong Chemical Industry, 2007, 34(5):37-40(in Chinese). |
[14] | 王有乐, 王玉双, 杨艳丽. 改性TiO2薄膜对水杨酸光催化降解的影响[J]. 兰州理工大学学报, 2007, 33(4):67-70. WANG Y L, WANG Y S, YANG Y L. Influence of modified TiO2 film on photocatalytic degradation of salicylic acid[J]. Journal of Lanzhou University of Technology, 2007, 33(4):67-70(in Chinese). |
[15] | 于洋, 于美燕, 张玥, 等. 氮掺杂二氧化钛粉体的制备及掺杂机理研究[J]. 无机化学学报, 2013, 29(8):1657-1662. YU Y, YU M Y, ZHANG Y, et al. Preparation and mechanism of N-doped TiO2 powders[J]. Chinese Journal of Inoganic Chemistry, 2013, 29(8):1657-1662(in Chinese). |
[16] | 刘宇, 周辉, 于鹏, 等. 磁性炭基吸附剂的制备及其吸附与再生性能研究[J]. 工业水处理, 2015, 35(1):48-51. LIU Y, ZHOU H, YU P, et al. Study on the preparation of magnetic carbon-based adsorbent and its adsoption and regeneration capabilities[J]. Industry Water Treatment, 2015, 35(1):48-51(in Chinese). |
[17] | FANG J, WANG F, QIAN K, et al. Bifunctional N-doped mesoporous TiO2 photocatalysts[J]. Journal of Physical Chemistry C, 2008, 112(46):18150-18156. |
[18] | 陈恒, 龙明策, 徐俊, 等. 可见光响应的氯掺杂TiO2的制备、表征及其光催化活性[J]. 催化学报, 2006, 27(10):890-895. CHEN H, LONG M C, XU J, et al. Preparation chara-cterization and photocatalytic activity of visible light driven chlorine-doped TiO2[J]. Chinese Journal of Catalysis, 2006, 27(10):890-895(in Chinese). |
[19] | 张高生, 曲久辉, 刘会娟, 等. 活性炭/铁氧化物磁性复合吸附材料的制备及去除水中酸性橙Ⅱ的研究[J]. 环境科学学报, 2006, 26(11):1763-1768. ZHANG G S, QU J H, LIU H J, et al. Magnetic adsorbents:Activated carbon/iron oxide composites for AO7 removal from aqueous system[J]. Acta Scientiae Circum-stantiae, 2006, 26(11):1763-1768(in Chinese). |
[20] | 付乌有, 杨海滨, 刘冰冰, 等. 锐钛矿型TiO2/MnFe2O4核壳结构复合纳米颗粒的制备及其光催化特性[J]. 复合材料学报, 2007, 24(3):136-140. FU W Y, YANG H B, LIU B B, et al. Preparation and photocatalytic property of anatase TiO2/MnFe2O4 core-shell structure nanoparticles[J]. Acta Materiae Compositae Sinica, 2007, 24(3):136-140(in Chinese). |
[21] | 王刚. 水杨酸在水溶液中的光化学降解研究[D].新乡:河南师范大学, 2012. WANG G. Study on the photodegradation salicylic acid in water[D]. Xinxiang:He'nan Normal University, 2012(in Chinese). |
[22] | 徐玲, 徐立红, 李燕. TiO2纳米粉体的制备及光催化降解水杨酸的研究[J]. 安徽建筑工业学院学报, 2005, 13(1):93-96. XU L, XU L H, LI Y. Preparation of TiO2 nanometer powder sand photocatalytic degradation of salicylic acid[J]. Journal of Anhui Institute of Architecture & Industry, 2005, 13(1):93-96(in Chinese). |
[23] | 安小宁, 苏致兴. 高磁性壳聚糖微粒的制备与应用[J]. 兰州大学学报:自然科学版, 2001, 37(2):100-104. AN X N, SU Z X. Preparation and application of high magnetic chitosan particles[J]. Journal of Lanzhou University, 2001, 37(2):100-104(in Chinese). |
[24] | 刘守新, 陈曦. TiO2/活性炭负载型光催化剂的溶胶-凝胶法合成及表征[J]. 催化学报, 2008, 29(1):19-24. LIU S X, CHEN X. Sol-Gel preparation and characterization of activated carbonsupported TiO2 photocatalyst[J]. Chinese Journal of Catalysis, 2008, 29(1):19-24(in Chinese). |
[25] | LIU G, YANG H G, WANG X W, et al.Visible light responsive nitrogen doped anatase TiO2 sheets with dominant {001}18 facets derived from TiN[J]. American Chemical Society, 2009, 131(36):12868-12869. |