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对无机模板法制备多孔炭材料的研究进展进行了综述,详细介绍了近年来沸石分子筛、介孔分子筛、无序中孔硅和天然粘土等无机材料作模板制备多孔炭的研究概况,并对其优缺点和应用前景进行了评述.无机模板法制备的多孔炭孔道均一、孔道结构排列有序,具有极高的应用价值.

参考文献

[1] Kyotani T. .Control of pore structure in carbon[J].Carbon: An International Journal Sponsored by the American Carbon Society,2000(2):269-286.
[2] Meyers C J;Shah S D;Bessel C A et al.Templated synthesis of carbon materials from zeolites (Y, Beta and ZSM-5)and a montmorillonite clay[J].Journal of Physical Chemistry B,2001,105:2143.
[3] Kyotani T;Ma Z X;Tomita A .Template synthesis of novel porous carbons using various types of zeolites[J].CARBON,2003,41:1451.
[4] Ma Z X;Kyotani T;Tomita A .Synthesis methods for preparing microporous carbons with a structural regularity of zeolite Y[J].Carbon,2002,40:2367.
[5] Barata-Rodrigues P M;Mays T J;Moggridge G D .Structured carbon adsorbents from clay, zeolite and mesoporous aluminosilicate templates[J].CARBON,2003,41:2231.
[6] Su FB;Zhao XS;Lv L;Zhou ZC .Synthesis and characterization of microporous carbons templated by ammonium-form zeolite Y[J].Carbon: An International Journal Sponsored by the American Carbon Society,2004(14):2821-2831.
[7] Kyotani T;Nagai T;Inoue S et al.Formation of new type of porous carbon by carbonization in zeolite nanochannels[J].Chemistry of Materials,1997,9:609.
[8] Rodriguez-Mirasol J.;Radovic LR.;Rodriguez JJ.;Cordero T. .Structural and textural properties of pyrolytic carbon formed within a microporous zeolite template[J].Chemistry of Materials,1998(2):550-558.
[9] Ryoo R;Joo S H;Jun S .Synthesis of highly ordered carbon molecular sieves via template-mediated structural transformation[J].Journal of Physical Chemistry B,1999,103:7743.
[10] Ryoo R.;Kruk M.;Jaroniec M.;Joo SH. .Ordered mesoporous carbons[J].Advanced Materials,2001(9):677-681.
[11] Kruk K;Jaroniec M;Ryoo R et al.Characterization of ordered mesoporous carbons synthesized using MCM-48 silicas as templates[J].Journal of Physical Chemistry B,2000,104:7960.
[12] Yoon S B;Kim J Y;Yu J S.Synthesis of highly ordered nanoporous carbon molecular sieves from silylated MCM-48using divinylbenzene as precursor[J].Chemical Communications,2001:559.
[13] Lee L;Yoon S;Hyeon T.Synthesis of a new mesoporous carbon and its application to electrochemical doublelayer capacitors[J].Chemical Communications,1999:2177.
[14] Yoon S B;Kim J Y;Yu J S.A direct template synthesis of nanoporous carbons with high mechanical stability using assynthesized MCM48 hosts[J].Chemical Communications,2002:1536.
[15] Shin H Y;Ryoo R;Jaroniec M.Modification of SBA-15pore connectivity by high-temperature calcinations investigated by carbon inverse replication[J].Chemical Communications,2001:349.
[16] Jun S.;Ryoo R.;Kruk M.;Jaroniec M.;Liu Z.;Ohsuna T. Terasaki O.;Joo SH. .Synthesis of new, nanoporous carbon with hexagonally ordered mesostructure[J].Journal of the American Chemical Society,2000(43):10712-10713.
[17] LEE J S;Joo S H;Ryoo R .Synthesis of mesoporous silicas of controlled pore wall thickness and their replication to ordered nanoporous carbons with various pore diameters[J].Journal of the American Chemical Society,2002,124:1156.
[18] Kim S S;Pinnavaia T J.A low cost route to hexagonal mesostructured carbon molecular sieves[J].Chemical Communications,2001:2418.
[19] Lu A H;Schmidt W;Schuth F et al.Synthesis of ordered mesoporous carbon with bimodal pore system and high pore volume[J].Advanced Materials,2003,15:1602.
[20] XIA Y D;Mokaya R .Synthesis of ordered mesoporous carbon and nitrogen-Doped carbon materials with graphitic pore walls via a simple chemical vapor deposition method[J].Advanced Materials,2004,16:1553.
[21] Zhang W H;Liang C H;Li C et al.Synthesis of ordered mesoporous carbons composed of nanotubes via catalytic chemical vapor deposition[J].Advanced Materials,2002,14:1776.
[22] Fuertes A B;Nevskaia D M .Control of mesoporous structure of carbons synthesised using a mesostructured silica as template[J].Microporous and Mesoporous Materials,2003,62:177.
[23] Fuertes A B .Low-cost synthetic route to mesoporous carbons with narrow pore size distributions and tunable porosity through silica xerogel templates[J].CHEMISTRY OF MATERIALS,2004,16:449.
[24] Lee J W;Yoon S H;Hyeon T.Synthesis of a new mesoporous carbon and its application to electrochemical double-layer capacitors[J].Chemical Communications,1999:2177.
[25] Joo S H;Choi S J;Ryoo R et al.Ordered nanoporous arrays of carbon supporting high dispersions of platinum nanoparticles[J].Nature,2001,412:169.
[26] Kang M;Yi S H;Kim J M.Reversible replication between ordered mesoporous silica and mesoporous carbon[J].Chemical Communications,2002:1944.
[27] Zhou H S;Zhu S M;Hibino M et al.Lithium storage in ordered mesoporus carbon (CMK-3) with reversible specific energy capacity and good cycling performance[J].Advanced Materials,2003,15:2107.
[28] Biloe S;Goetz V;Guillot A .Optimal design of an activated carbon for an adsorbed natural gas storage system[J].Carbon,2002,40:1295.
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