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氮化钛(TiN)材料具有高熔点、高硬度、耐磨损、耐酸碱腐蚀及良好的导电性和生物相容性等优异特性,加之介孔材料具有均一且连续可调的纳米级孔径尺寸、较大的比表面积和孔容等特点,使介孔TiN纳米材料在催化、光催化、储能等领域展现出广阔的应用前景.从介孔氮化钛纳米材料的结构及其特性出发,较详尽地介绍了近年来国内外介孔TiN纳米材料在应用研究方面的最新成果,综述了近年来该材料的合成方法,主要包括模板法和无模板法,同时分析了目前存在的问题和未来的发展前景.

参考文献

[1] Janes RA.;Aldissi M.;Kaner RB. .Controlling surface area of titanium nitride using metathesis reactions[J].Chemistry of Materials,2003(23):4431-4435.
[2] 李玉鹏,梁振兴,廖世军.具有特殊形貌和有序孔结构燃料电池用碳材料研究进展[J].化工新型材料,2010(08):14-16,20.
[3] 衣宝廉,侯明.车用燃料电池耐久性的解决策略[J].汽车安全与节能学报,2011(02):91-100.
[4] Kaskel S.;Schlichte K.;Chaplais G.;Khanna M. .Synthesis and characterisation of titanium nitride based nanoparticles[J].Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology,2003(6):1496-1499.
[5] Zhenhai Wen;Shumao Cui;Haihui Pu;Shun Mao;Kehan Yu;Xinliang Feng;Junhong Chen .Metal Nitride/Graphene Nanohybrids: General Synthesis and Multifunctional Titanium Nitride/Graphene Electrocatalyst[J].Advanced Materials,2011(45):5445-5450.
[6] Shanmu Dong;Xiao Chen;Lin Gu .Facile Preparation of Mesoporous Titanium Nitride Microspheres for Electrochemical Energy Storage[J].ACS applied materials & interfaces,2011(1):93-98.
[7] 侯俊英,胡尔建,彭红瑞,赵程.多弧离子镀装饰膜层的色泽研究[J].电镀与精饰,2003(05):9-12.
[8] Manaila R.;Devenyi A.;Fratiloiu D.;Popescu R.;Totolici JE.;Biro D. .Structure of nitride film hard coatings prepared by reactive magnetron sputtering[J].Applied Surface Science: A Journal Devoted to the Properties of Interfaces in Relation to the Synthesis and Behaviour of Materials,1998(1/4):1-10.
[9] Fischer, A.;Müller, J.O.;Antonietti, M.;Thomas, A. .Synthesis of ternary metal nitride nanoparticles using mesoporous carbon nitride as reactive template[J].ACS nano,2008(12):2489-2496.
[10] Ren Ruiming;Yang Zhenguo;Shaw Leon L .Nanostructured TiN powder prepared via an integrated mechanical and thermal activation[J].Material Science and Engineering,2000,A286:65.
[11] Wang Wei;Jin Zhihao et al.Preparation and characterization of morph-genetic C TiN composites from filter[J].Materials Science,2007,42:6684.
[12] Avasarala B;Haldar P .On the stability of TiN-based electrocatalysts for fuel cell applications[J].International Journal of Hydrogen Energy,2011,36:3965.
[13] 通用汽车环球科技运作公司 .燃料电池催化剂的载体[P].中国,CN101171711,2008-04-30.
[14] Huang S Y;Ganesan P et al.Development of supported bifunctional oxygen electro-catalysts and corrosion-resistant gas diffusion layer for unitized Regenerative fuel cell applications[J].Journal of Power Sources,2012,198:23.
[15] Lee J M;Han S B et al.Methanol electro-oxidation of Pt catalyst on titanium nitride nanostructured support[J].Applied Catalysis,2010,375:149.
[16] Katsuyoshi KAKINUMA;Yuko WAKASUGI;Makoto UCHIDA;Takeo KAMINO;Hiroyuki UCHIDA;Masahiro WATANABE .Electrochemical Activity and Durability of Platinum Catalysts Supported on Nanometer-Size Titanium Nitride Particles for Polymer Electrolyte Fuel Cells[J].電気化学および工業物理化学,2011(5):399-403.
[17] Ottakam Thotiyl M M;Ravi Kumar T;Sampath S .Pd supported on titanium nitride for efficient ethanol oxidation[J].Phys Chem C,2010,114:17934.
[18] 王海燕,刘志祥,毛宗强,岳琪.SPE电解池催化剂载体的研究[J].化工新型材料,2009(01):32-33,59.
[19] 徐海波,姜俊峰,王廷勇,王佳,许立坤.TiN基IrO2-Ta2O5涂层析氢电极的催化性能[J].催化学报,2006(11):952-956.
[20] 唐亚文;汪福明;陆天虹 .质子交换膜燃料电池催化剂的氮化钛载体或氮化钛和炭载体混合载体[P].中国,101380594,2009-03-11.
[21] 史新伟,宋开兰,崔立斌,安子风,姚宁,王新昌.温度对磁控溅射氮化钛薄膜光学性能的影响[J].真空,2013(04):18-21.
[22] 张鹏 .形貌可控氮化钛的合成及光解水产氢性能研究[D].上海师范大学,2012.
[23] 曹广秀 .共掺杂二氧化钛基可见光光催化材料的制备及性能研究[D].东华大学,2010.
[24] Jiangjing He;Jennifer M Pringle;Yibing Cheng .Titanium carbide and titanium nitride-based nanocomposites as efficient catalysts for the Co2+/Co3+ redox couple in dye-sensitized solar cells[J].Phys Chem C,2014,118:16818.
[25] Nelson P A;Elliott J M et al.Mesoporous nickel/nickel oxide electrodes for high power applications[J].New Mater Electrochem Sys,2002,5(1):63.
[26] 张荣国,熊洪超,雷家珩,郭丽萍,陈永熙.介孔材料的应用前景及其研究进展[J].无机盐工业,2005(06):5-7,17.
[27] 李巧霞 等.介孔材料在燃料电池催化剂载体中的应用[J].材料导报,2012,26(专辑20):91.
[28] Xu MW;Bao SJ;Li HL .Synthesis and characterization of mesoporous nickel oxide for electrochemical capacitor[J].Journal of solid state electrochemistry,2007(3):372-377.
[29] 商超群 .同轴静电纺丝制备芯壳结构高能电容器电极材料及研究[D].青岛科技大学,2012.
[30] Zhou Xinhong;Shang Chaoqun et al.Mesoporous coaxial titanium nitride-vanadium nitride fibers of core-shell structures for high-performance supercapacitors[J].Appl Mater,2011,3:3058.
[31] Yu Ren;Laurence J. Hardwick;Peter G. Bruce .Lithium Intercalation into Mesoporous Anatase with an Ordered 3D Pore Structure[J].Angewandte Chemie,2010(14):2570-2574.
[32] Reversible Storage of Lithium in Silver-Coated Three-Dimensional Macroporous Silicon[J].Advanced Materials,2010(20):2247-250,2224.
[33] Dong S M;Chen X et al.One dimensional MnO2/titanium nitride nanotube coaxial arays for high performance electrochemical capacitive energy storage[J].Energy Environ Sci,2011,4(9):3502.
[34] Jun Y S;Hong W H et al.Mesoporous,2D hexagonal carbon nitride and titanium nitride/carbon composites[J].Advanced Materials,2009,21:4270.
[35] Anuradha T V;Ranganathan S .Synthesis of mesoporous materials based on titanium (Ⅳ) oxide and titanium nitride[J].Nanostructured Materials,1999,12:1063.
[36] 秦勇 .一种球形金属氮化物材料及其制备方法与应用[P].中国,CN201210534827.1,2013-04-03.
[37] Jin Ho Bang;Kenneth S Suslick .Dual templating synthesis of mesoporous titanium nitride microspheres[J].Advanced Materials,2009,21:3186.
[38] 罗民,高积强,张笑,杨建峰,侯广亚,欧阳达,金志浩.生物形态多孔氮化钛陶瓷的碳热氮化法制备[J].稀有金属材料与工程,2006(z2):133-136.
[39] Spencer W Robbins;Hiroaki Sai et al.Monolithic gyroidal mesoporous mixed titanium niobium nitrides[J].ACS Nano,2014(8):8217.
[40] Fischer A;Philippe M et al.High-surface-area TiO2 and TiN as catalysts for the C-C coupling of alcohols and ketones[J].Chem Sus Chem,2008,1:444.
[41] 姚亚东;尹光福;邵伟 等.一种新型前驱体制备纳米碳氮化钛粉体的方法[P].中国,CN 101318638A,2010-06-09.
[42] Chen L Y;Gu Y L et al.A room-temperature synthesis of titanium nitride hollow spheres[J].Nanosci Nanotechn,2004,4:896.
[43] 李静 .氮化钛与硫化镍纳米材料的化学合成和表征[D].济南:山东大学,2008.
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