中文
Announcement
More
Progress in Chemistry 2009, Vol. 21 Issue (04): 765-770 Previous Articles   Next Articles

• Review •

Ionic Conductivity in Mesoporous Materials

Li Likun; Wei Xiaolan*; Zhang Hao   

  1. (College of Chemistry and Chemical Engineering, South China University of Technology, Guangzhou 510640, China)
  • Received: Revised: Online: Published:
  • Contact: Wei Xiaolan E-mail:xlwei@scut.edu.cn
PDF ( 1636 ) Cited
Export

EndNote

Ris

BibTeX

The mesoporous materials have attracted great interest for their peculiar properties and potential applications in many filed. In this paper, the recent research progress,in proton and lithium ionic conductivity in pure mesoporous oxides, modified mesoporous oxides within the pore channels, wall-hybrid mesoporous oxide, mesoporous oxides films, and mesoporous oxide/polymer hybrid membrane are summarized.

Contents
1 Proton conductivity of mesoporous oxides
2 Proton of Li+ conductivity of modificated mesoporous oxides
3 Proton conductivity of dopped mesoporous oxides
4 Proton conductivity of mesoporous oxides membranes
5 Polymer hybrid membranes

CLC Number: 

[ 1 ]  Kresge C T, Leonowicz M E , Roth WJ , et al . Nature , 1992 , 359 :710 —712
[ 2 ]  Tanev P T, Chibwe M, Pinnavaia I J , et al . Nature , 1994 , 368 :321 —323
[ 3 ]  Maschmeyer T, Rey F , Sankar G, et al . Nature , 1995 , 378 : 159 —162
[ 4 ]  Yang H , Kuperman A , Coombs N , et al . Nature , 1996 , 379 :703 —705
[ 5 ]  Yang H , Coombs N , Sokolov I , et al . Nature , 1996 , 381 : 589 —592
[ 6 ]  Yang H , Coombs N , Ozin GA. Nature , 1997 , 386 : 692 —695
[ 7 ]  Lu Y F , Ganguli R , Drewien C A , et al . Nature , 1997 , 389 :364 —368
[ 8 ]  Zhao D Y, Feng J L , Huo Q S , et al . Science , 1998 , 279 : 548 —552
[ 9 ]  Yang P D , Zhao D Y, Margolese D I , et al . Nature , 1998 , 396 :152 —155
[10 ]  Sakamoto Y, Kaneda M, Terasaki O , et al . Nature , 2000 , 408 :449 —453
[11 ]  Inagaki S , Guan S , Ohsuna T, et al . Nature , 2002 , 416 : 304 —307
[12 ]  Tian B Z, Liu X Y, Tu B , et al . Nature Mater. , 2003 , 2 : 159 —163
[13 ]  Pacheco G, Zhao E , Garcia A , et al . Chem. Commun. , 1997 ,491 —492
[14 ]  Zhou Y, Schattka J H , Antonietti M. Nano Lett . , 2004 , 4 : 477 —481
[15 ]  Stein A , Melde B J , Schroden R C. Adv. Mater. , 2000 , 12 :1403 —1419
[16 ]  Corna A. Chem. Rev. , 1997 , 97 : 2373 —2419
[17 ]  Huo Q , Zhao D , Feng J , et al . Adv. Mater. , 1997 , 9 : 974 —978
[18 ]  Marlow F , McGehee M D , Zhao D Y. Adv. Mater. , 1999 , 11 :632 —636
[19 ]  Davis M E. Nature , 2002 , 417 : 813 —821
[20 ]  Huo Q , Margolese D , Ciesla U , et al . Nature , 1994 , 368 : 317 —321
[21 ]  Huang M, Choudrey A , Yang P. Chem. Commun. , 2000 , 1063 —1064
[22 ]  Han YJ , KimJ M, Stucky GD. Chem. Mater. , 2000 , 12 : 2068 —2069
[23 ]  Alberti G, Casciola M, Cavalaglio S , et al . Solid State Ionics ,1999 , 125 : 91 —97
[24 ]  Hamoudi S , Royer S , Kaliaguine S. Micropor. Mesopor. Mater. ,2004 , 71 : 17 —25
[25 ]  Armento P , Casciola M, Pica M, et al . Solid State Ionics , 2004 ,166 : 19 —25
[26 ]  Jiménez-Jiménez J , Maireles-Torres P , Olivera-Pastor P , et al . Adv.Mater. , 1998 , 10 : 812 —815
[27 ]  Hogarth W H J , Lu G Q , Drennan J , et al . J . Mater. Chem. ,2005 , 15 : 754 —758
[28 ]  Mikhailenko S , Desplantier-Giscard D , Danumah C , et al .Micropor. Mesopor. Mater. , 2002 , 52 : 29 —37
[29 ]  Yamada M, Li D , Honma I , et al . J . Am. Chem. Soc. , 2005 ,127 : 13092 —13093
[30 ]  Vichi F M, Tejedor-Tejedor M I , Andersm M A. Chem. Mater. ,2000 , 12 : 1762 —1770
[31 ]  Salame I I , Bagreev A , Bandosz T J . Langmuir , 1999 , 15 : 587 —593
[32 ]  Colomer M T, Rubio F , Jurado J R. J . Power Sources , 2007 , 167 :53 —57
[33 ]  Yusuke D , Toshihiro K, Masayuki N. Micropor. Mesopor. Mater. ,2004 , 69 : 149 —155
[34 ]  Nogami M, Matsushita H , Goto Y, et al . Adv. Mater. , 2000 , 12 :1370 —1372
[35 ]  Nogami M, Nagao R , Wong C. J . Phys. Chem. , 1998 , 102 :5772 —5775
[36 ]  Nogami M, Nagao R , Makita K, et al . Appl . Phys. Lett . , 1997 ,71 : 1323 —1325
[37 ]  Li H , Nogami M. Adv. Mater. , 2002 , 14 : 912 —914
[38 ]  Li H , Nogami M. Chem. Commun. , 2003 , 236 —237
[39 ]  Nogami M, Mitsuoka T, Hattori K, et al . Micropor. Mesopor.Mater. , 2005 , 86 : 349 —353
[40 ]  Shen H Y, Maekawa H , Fujimaki Y, et al . Solid State Ionics ,2006 , 177 : 2403 —2406
[41 ]  索也兵(Suo YB) , 杜玉成(Du YC) , 张久兴(Zhang J X) . 硅酸盐学报(Journal of the Chinese Ceramic Society) , 2005 , 33 (9) :1081 —1084
[42 ]  Colomer M T, Anderson M A. J . Non-Cryst . Solids , 2001 , 290 :93 —104
[43 ]  Matsuda A , Nono Y, Kanzaki T, et al . Solid State Ionics , 2001 ,145 : 135 —140
[44 ]  Mioc U B , Milonjic S K, Malovic D , et al . Solid State Ionics ,1997 , 97 : 239 —246
[45 ]  Mioc U B , Milonjic S K, Stamenkovic V , et al . Solid State Ionics ,1999 , 125 : 417 —424
[46 ]  Marschall R , Bannat I , Caro J , et al . Micropor. Mesopor. Mater. ,2007 , 99 : 190 —196
[47 ]  Maekawa H , Tanakaa R , Sato T, et al . Solid State Ionics , 2004 ,175 : 281 —285
[48 ]  Yamada H , Moriguchi I , Kudo T. Solid State Ionics , 2005 , 176 :945 —953
[49 ]  Chu P P , Reddy M J , Kao H M. Solid State Ionics , 2003 , 156 :141 —153
[50 ]  Rodriguez C E , Jimenez J , Jimenez L A , et al . Solid State Ionics ,1999 , 125 : 407 —410
[51 ]  Feng F X, Yang Z W, Coutinho D H , et al . Micropor. Mesopor.Mater. , 2005 , 81 : 217 —234
[52 ]  Coutinho D , Yang Z W, Ferraris J P , et al . Micropor. Mesopor.Mater. , 2005 , 81 : 321 —332
[53 ]  Nogami M, Li H B , Daiko Y, et al . J . Sol-Gel Sci . Technol . ,2004 , 32 : 185 —188
[54 ]  Nishiyama N , Kaihara J , Nishiyama Y, et al . Langmuir , 2007 , 23 :4746 —4748
[55 ]  Shao PL , Mauritz KA , Moore R B. J . Polym. Sci . Part B : Polym.Phys. , 1996 , 34 : 873 —882
[56 ]  Deng Q , Cable K M, Moore R B , et al . J . Polym. Sci . Part B :Polym. Phys. , 1996 , 34 : 1917 —1923
[57 ]  Mauritz KA , Payne J T. J . Membr. Sci . , 2000 , 168 : 39 —51
[58 ]  Tiwari S K, Nema S K, Agarwal Y K. Thermochim. Acta , 1998 ,317 : 175 —182
[59 ]  Bauer F , Willert M. J . Membr. Sci . , 2004 , 233 : 141 —149
[60 ]  Stati P , Freni S , Hocevar S. Solid State Ionics , 2001 , 145 : 101 —107
[61 ]  Shao Z G, Joghee P , Hsing I M. J . Membr. Sci . , 2004 , 229 :43 —51
[62 ]  Xu W, Lu T, Liu C , et al . Electrochim. Acta , 2005 , 50 : 3280 —3285
[63 ]  Liu C , Martin C R. J . Electrochem. Soc. , 1990 , 137 : 510 —515
[64 ]  Tominaga Y, Hong I C , Asai S , et al . J . Power Sources , 2007 ,171 : 530 —534
[65 ]  Lin Y F , Yen C Y, Ma C C , et al . J . Power Sources , 2007 , 171 :388 —395
[66 ]  Nouel K M, Fedkiw P S. Electrochim. Acta , 1998 , 43 : 2381 —2387
[67 ]  Liu F , Yi B , Xing D , et al . J . Membr. Sci . , 2003 , 212 : 213 —223
[68 ]  Lin H L , Yu TL , Shen K S , et al . J . Membr. Sci . , 2004 , 237 :1 —7
[69 ]  Ramya K, Velayutham G, Subramaniam C K, et al . J . Power Sources , 2006 , 160 : 10 —17
[70 ]  Wu C G, Lu ML , Tsai C C , et al . J . Power Sources , 2006 , 159 :295 —300
[71 ]  Jaipal R M, Chu P P. J . Power Sources , 2004 , 135 : 1 —8
[72 ]  Xi J Y, Tang X Z. Chem. Phys. Lett . , 2004 , 400 : 68 —73
[73 ]  Tominaga Y, Igawa S , Asai S , et al . Electrochim. Acta , 2005 , 50 :3949 —3954
[74 ]  Li X L , Zhao Y, Cheng L , et al . J . Solid State Electrochem. ,2005 , 9 : 609 —615
[75 ]  Wang X L , Mei A , Li M, et al . Solid State Ionics , 2006 , 177 :1287 —1291
[76 ]  Wang X L , Mei A , Li M, et al . J . Appl . Phys. , 2007 , 102 : art .no. 054907

[1] Hao Chen, Xu Xu, Chaonan Jiao, Hao Yang, Jing Wang, Yinxian Peng. Fabrication of Multifunctional Core-Shell Structured Nanoreactors and Their Catalytic Performances [J]. Progress in Chemistry, 2022, 34(9): 1911-1934.
[2] Yuexiang Zhu, Weiyue Zhao, Chaozhong Li, Shijun Liao. Pt-Based Intermetallic Compounds and Their Applications in Cathodic Oxygen Reduction Reaction of Proton Exchange Membrane Fuel Cell [J]. Progress in Chemistry, 2022, 34(6): 1337-1347.
[3] Yangyang Liu, Zigang Zhao, Hao Sun, Xianghui Meng, Guangjie Shao, Zhenbo Wang. Post-Treatment Technology Improves Fuel Cell Catalyst Stability [J]. Progress in Chemistry, 2022, 34(4): 973-982.
[4] Xiaoqing Yin, Weihao Chen, Boyuan Deng, Jialu Zhang, Wanqi Liu, Kaiming Peng. The Application and Mechanism of Superwetting Membrane in Demulsification of Oil-in-Water Emulsions [J]. Progress in Chemistry, 2022, 34(3): 580-592.
[5] Qin Zhong, Shuai Zhou, Xiangmei Wang, Wei Zhong, Chendi Ding, Jiajun Fu. Construction of Mesoporous Silica Based Smart Delivery System and its Therapeutic Application in Various Diseases [J]. Progress in Chemistry, 2022, 34(3): 696-716.
[6] Suqian Fu, Ying Wang, Kai Liu, Junhui He. Fabrication and Applications of Micro/Nano-Porous Polymer Films [J]. Progress in Chemistry, 2022, 34(2): 241-258.
[7] Zhao Xiaoxi, Wang Cong, Tian Yong, Wang Xiufang. Preparation of Mesoporous Carbon Materials via Emulsion Method [J]. Progress in Chemistry, 2022, 34(10): 2316-2328.
[8] Binbin Zhu, Xiaohui Zheng, Guang Yang, Xu Zeng, Wei Qiu, Bin Xu. Mechanical Property Regulation of Graphene Oxide Separation Membranes [J]. Progress in Chemistry, 2021, 33(4): 670-677.
[9] Yu Bai, Shuanjin Wang, Min Xiao, Yuezhong Meng, Chengxin Wang. Phosphoric Acid Based Proton Exchange Membranes for High Temperature Proton Exchange Membrane Fuel Cells [J]. Progress in Chemistry, 2021, 33(3): 426-441.
[10] Feiran Wang, Fengjing Jiang. Ion-Conducting Membrane for Vanadium Redox Flow Batteries [J]. Progress in Chemistry, 2021, 33(3): 462-470.
[11] Xiuting Dong, Wen Zhang, Song Zhao, Xinlei Liu, Yuxin Wang. Shaping Methods for Metal-Organic Framework Composites [J]. Progress in Chemistry, 2021, 33(12): 2173-2187.
[12] Chen Liu, Qiangxiang Li, Di Zhang, Yujie Li, Jinquan Liu, Xilin Xiao. Preparation and Application of MCM-41 Mesoporous Silica in the DNA Biosensors [J]. Progress in Chemistry, 2021, 33(11): 2085-2102.
[13] Qixiao Guan, Heze Guo, Hongjing Dou. Nanocarriers Modified by Cell Membrane and Their Applications in Tumor Immunotherapy [J]. Progress in Chemistry, 2021, 33(10): 1823-1840.
[14] Fengfeng Gao, Yanyan Yang, Xiao Du, Xiaogang Hao, Guoqing Guan, Bing Tang. Electrically Switched Ion Membrane for Ion Selective Separation and Recovery: From ESIX to ESIPM [J]. Progress in Chemistry, 2020, 32(9): 1344-1351.
[15] Jianlin Shi, Zile Hua. Condensed State Chemistry in the Synthesis of Inorganic Nano- and Porous Materials [J]. Progress in Chemistry, 2020, 32(8): 1060-1075.
Viewed
Full text


Abstract

Ionic Conductivity in Mesoporous Materials