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综述了电流型电化学气体传感器电解液的发展状况.研究发现,用离子液体作电解液,与水溶液电解液相比,具有不挥发、电导率高和电化学窗口宽等优点,其与聚合物结合得到的离子液体聚合物电解质兼具离子液体和聚合物电解质的优点.用有机溶剂作电流型电化学气体传感器电解液的研究还刚刚开始,但它是很有应用前景的.

参考文献

[1] Wallgren K,Sotiropoulos S.Oxygen Sensors Based on a New Design Concept for Amperometric Solid State Devices[J].Sens Actuators B,1999,60 (2/3):174-183.
[2] CHEN Changlun,HE Jianbo,LIU Wei,et al.The Research Advance of Electrochemical Gas Sensors[J].Sens World,2004,4:11-15 (in Chinese).陈长伦,何建波,刘伟,等.电化学式气体传感器的研究进展[J].传感器世界,2004,4:11-15.
[3] De Vooys A C A,Mrozek M F,Koper M T M,et al.The Nature of Chemisorbates Formed from Ammonia on Gold and Palladium Electrodes as Discerned from Surface-enhanced Raman Spectroscopy[J].Electrochem Commun,2001,3 (6):293-298.
[4] Endo K,Katayama Y,Miura T.A Rotating Disk Electrode Study on the Ammonia Oxidation[J].Electrochim Acta,2005,50(11):2181-2185.
[5] Gootzen J F E,Wonders A H,Visscher W,et al.A DEMS and Cyclic Voltammetry Study of NH3 Oxidation on Platinized Platinum[J].Electrochim Acta,1998,43 (12/13):1851-1861.
[6] Endo K,Katayama Y,Miura T.Pt-Ir and Pt-Cu Binary Alloys as the Electrocatalyst for Ammonia Oxidation[J].Electrochim Acta,2004,49 (9/10):1635-1638.
[7] Endo K,Nakamura K,Katayama Y,et al.Pt-Me (Me =Ir,Ru,Ni) Binary Alloys as an Ammonia Oxidation Anode[J].Electrochim Acta,2004,49 (15):2503-2509.
[8] Vidal-Iglesias F J,Solla-Gullon J,Montiel V,et al.Screening of Electrocatalysts for Direct Ammonia Fuel Cell:Ammonia Oxidation on PtMe (Me:Ir,Rh,Pd,Ru) and Preferentially Oriented Pt (100) Nanoparticles[J].J Power Sources,2007,171(2):448-456.
[9] De Mishima B A,Lescano D,Holgado T M,et al.Electrochemical Oxidation of Ammonia in Alkaline Solutions:Its Application to an Amperometric Sensor[J].Electrochim Acta,1998,43 (3/4):395-404.
[10] Vidal-Iglesias F J,Solla-Gullon J.Shape-dependent Electrocatalysis:Ammonia Oxidation on Platinum Nanoparticles with Preferential(100) Surfaces[J].Electrochem Commun,2004,6(10):1080-1084.
[11] XU Jianbo,HUA Kaifeng,WANG Yujiang,et al.Study of Amperometric Ammonia Sensor[J].J Zhengzhou Inst Light Ind,2004,19(4):39-42(in Chinese).徐建波,华凯峰,王玉江,等.电流型氨气传感器的研究[J].郑州轻工业学院学报,2004,19(4):39-42.
[12] ZHANG Xiaoshui,GU Ruiqin,LI Zhigang,et al.Study on Stability of Constant Potentlal Electrolysis Sensor[J].J Ceram,2008,29 (3):286-289 (in Chinese).张小水,古瑞琴,李志刚,等.定电位电解型电化学气体传感器稳定性研究[J].陶瓷学报,2008,29(3):286-289.
[13] Jie S,Peter C H,Valentine Z,et al.A New Nitric Oxide Gas Sensor Based on Reticulated Vitreous Arbon/Nafion and Its Applications[J].Electroanalysis,2004,16 (20):1723-1729.
[14] HAN Yiping,LUO Peng,CAI Chengxin,et al.Electrocatalytic Performance of Ultrafine Ir Catalyst for Oxidation of Ammonia[J].Chinese Acta Phys Chim Sin,2008,24(9):1729-1732(in Chinese).韩益苹,罗鹏,蔡称心,等.超细Ir催化剂对氨氧化的电催化性能[J].物理化学学报,2008,24(9):1729-1732.
[15] Alber K S,Cox J A,Kulesza P J.Solid-state Amperometric Sensors for Gas Phase Analytes:A Review of Recent Advances[J].Electranalysis,1997,9(2):91-101.
[16] Ni J A,Ju H X,Chen H Y,et al.Amperometric Determination of Epinephrine with an Osmium Complex and Nafion Double-layer Membrane Modified Electrode[J].Anal Chim Acta,1999,378(1/3):151-157.
[17] Xie L,Lu J,Yan H.A Solid-State Ozone Sensor Based on Solid Polymer Electrolyte[J].Electroanalysis,1998,10(12):842-845.
[18] Fuller T F,Newman J.Experimental Determination of the Transport Number of Water in Nafion 117 Membrane[J].J Electrochem Soc,1992,139 (5):1332-1337.
[19] Zawodzinski T A,Springer T E,Uribe F,et al.Characterization of Polymer Electrolytes for Fuel Cell Applications[J].Solid State Ionics,1993,60(1/3):199-211.
[20] SHAO Jing,LIU Chuangui.Development of Solid-state Gas Sensors for Monitoring Sulfur Dioxide[J].J Gansu Univ Technol,2002,28(1):125-128(in Chinese).邵晶,刘传贵.全固态SO2气体传感器的研制[J].甘肃工业大学学报,2002,28(1):125-128.
[21] YU Chunbo,WANG Yujiang,HUA Kaifeng,et al.Application of Modified Nafion Membrane to the Sulfur Dioxide Gas Electrochemical Sensor[J].Chinese J Anal Chem,2002,30(4):397-400(in Chinese).于春波,王玉江,华凯峰,等.改性Nafion膜在全固态二氧化硫气体传感器中的应用[J].分析化学,2002,30(4):397-400.
[22] Xiaobo Ji,Debbie S Silvester,Leigh Aldous,et al.Mechanistic Studies of the Electro-oxidation Pathway of Ammonia in Several Room-Temperature Ionic Liquids[J].J Phys Chem C,2007,111 (26):9562-9572.
[23] Barisci J N,Wallace G G,MacFarlane D R,et al.Investigation of Ionic Liquids as Electrolytes for Carbon Nanotube Electrodes[J].Electrochem Commun,2004,6 (1):22-27.
[24] Noda A,Watanabe M.Highly Conductive Polymer Electrolytes Prepared by in situ Polymerization of Vinyl Monomers in Room Temperature Molten Salts[J].Electrochim Acta,2000,45 (8/9):1265-1270.
[25] Hirao M,Ito K,Ohno H.Preparation and Polymerization of New Organic Molten Salts ; N-Alkylimidazolium Salt Derivatives[J].Electrochim Acta,2000,45 (8/9):1291-1294.
[26] Satoko W,Masahiro Y,Hiromitsu N,et al.Highly Ion Conductive Flexible Films Composed of Network Polymers Based on Polymerizable Ionic Liquids[J].Polymer,2004,45(5):1577-1582.
[27] Ohno H.Molten Salt Type Polymer Electrolytes[J].Electrochim Acta,2001,46 (10/11):1407-1411.
[28] JIANG Jing,SU Guangyao,WANG Yi.Investigation of Electrochemical Properties of Ionic Liquid-polymer Gel Electrolyte from Hydrophilic and Hydrophobic Ionic Liquids[J].Chinese J Power Sources,2006,30 (3):219-223 (in Chinese).蒋晶,苏光耀,王毅.凝胶型离子液体/聚合物电解质的电化学性能[J].电源技术,2006,30(3):219-223.
[29] Fuller J,Breda A C,Carlin R T.Ionic Liquid-polymer Gel Electrolytes from Hydrophilic and Hydrophobic Ionic Liquids[J].J Electroanal Chem,1998,459(1):29-34.
[30] Sun J,MacFarlane D R,Forsyth M.Lithium Polyelectrolyte Ionic Liquid Systems[J].Solid State Ionics,2002,147 (3/4):333-339.
[31] Sekhon S S,Krishnan P,Boor Singh,et al.Proton Conducting Membrane Containing Room Temperature Ionic Liquid[J].Electrochim Acta,2006,52 (4):1639-1644.
[32] Yeon S H,Kim K S,Choi S,et al.Characterization of PVdF(HFP) Gel Electrolytes Based on 1-(2-Hydroxyethyl)-3-methyl Imidazolium Ionic Liquids[J].J Phys Chem B,2005,109 (38):17928-17935.
[33] Lalia B S,Sekhon S S.Polymer Electrolytes Containing Ionic Liquids with Acidiccounteranion (DMRImH2PO4,R =ethyl,butyl and octyl)[J].Chem Phys Lett,2006,425(4/6):294-300.
[34] Yoshizawa M,Ito-Akita K,Ohno H.Evidence of Interaction Between Anion and Polyether in the Bulk[J].Electrochim Acta,2000,45 (10):1617-1621.
[35] Makoto Ue,Shoichiro Mori. Mobility and Ionic Association of Lithium Salts in a Propylene Carbonate-ethyl Methyl Carbonate Mixed Solvent[J].J Electrochem Soc,1995,142 (8):2577-2581.
[36] LUO Peng,HAN Yiping,LU Tianhong,et al.Electrooxidation of NH3 in Organic Solvent Containing Ionic Liquid[J].Chinese J Appl Chem,2008,25 (11):1372-1374 (in Chinese).罗鹏,韩益苹,陆天虹,等.氨在含离子液体有机溶剂中的电化学氧化[J].应用化学,2008,25(11):1372-1374.
[37] CHEN Chong,HAN Yiping,LI Linru,et al.Electrocatalytic Performance of Carbon Supported Pt Catalyst for Ammonia Oxidation in Organic Electrolyte[J].ChineseJ Anal Chem,2011,39(2):261-264(in Chinese).陈冲,韩益苹,李林儒,等.铂催化剂在有机电解液中对氨氧化的电催化性能[J].分析化学,2011,39(2):261-264.
[38] Buzzeo M C,Giovanelli D,Lawrence N S,et al.Elucidation of the Electrochemical Oxidation Pathway of Ammonia in Dimethylformamide and the Room Temperature Ionic Liquid,1-Ethyl-3-methylimidazolium Bis (trifluoromethylsulfonyl) imide[J].Electroanalysis,2004,16(11):888-896.
[39] Ainashef I M,Leonard M L,Matthews M A,et al.Superoxide Electrochemistry in an Ionic Liquid[J].Ind Eng Chem Res,2002,41 (18):4475-4478.
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