专题论文

木材仿生制备生物结构陶瓷研究进展

  • 周明 ,
  • 王成毓
展开
  • 东北林业大学, 生物质材料科学与技术教育部重点实验室, 哈尔滨 150040
周明,硕士研究生,研究方向为超疏水性生物质基复合材料及木材功能性改良,电子信箱:zm15886677029@163.com

收稿日期: 2015-10-19

  修回日期: 2016-01-09

  网络出版日期: 2016-10-21

基金资助

国家自然科学基金项目(31470584)

Research development of biomorphic ceramic derived from wood templates

  • ZHOU Ming ,
  • WANG Chengyu
Expand
  • Key Laboratory of Bio-Based Materials Science and Technology, Ministry of Education; Northeast Forestry University, Harbin, 150040, China

Received date: 2015-10-19

  Revised date: 2016-01-09

  Online published: 2016-10-21

摘要

以自然界的生物为模板,利用仿生学原理,通过有机-无机转化,获得具有生物结构的陶瓷材料已成为设计、合成材料新的方向。这种生物结构陶瓷材料在光、电、磁、力学方面表现出优异的性能,具有巨大的发展潜力和广阔的应用领域。本文介绍以木材为模板制备生物结构陶瓷的研究现状、制备方法和性能特点。

本文引用格式

周明 , 王成毓 . 木材仿生制备生物结构陶瓷研究进展[J]. 科技导报, 2016 , 34(19) : 111 -115 . DOI: 10.3981/j.issn.1000-7857.2016.19.019

Abstract

It is a novel bionic technology for the design of advanced materials to prepare the biomorphic ceramic materials from the biotemplates. Because of their special functions in light, electric, magnetic and mechanical performances, the biological ceramic materials have a great potential applications in the field of various new areas. In this paper, the preparation methods, the characteristics and the applications of these biomorphic ceramic materials are reviewed. The prospect of the development of the biomorphic ceramic materials is commented.

参考文献

[1] Tong J,Ren L Q,Chen B C.Chemical constitution and abrasive wear behaviour of pangolin scales[J].Journal of Materials Science Letters,1995,14(20):1468-1470.
[2] Tong J,Lü T,Ma Y,et al.Two-body abrasive wear of the surfaces of pangolin scales[J].Journal of Bionic Engineering,2007,4(2):77-84.
[3] Kamat S,Su X,Ballarini R,et al.Structural basis for the fracture tough-ness of the shell of the conch Strombus gigas[J].Nature,2000,405(6790):1036-1040.
[4] Barthlott W,Neinhuis C.Purity of the sacred lotus,or escape from con-tamination in biological surfaces[J].Planta,1997,202(1):1-8.
[5] Neinhuis C,Barthlott W.Characterization and distribution of water-re-pellent,self-cleaning plant surfaces[J].Annals of Botany,1997,79(6):667-677.
[6] Liao G L,Zuo H B,Cao Y B,et al.Optical properties of the micro/na-no structures of Morpho butterfly wing scales[J].Science in China Se-ries E:Technological Sciences,2010,53(1):175-181.
[7] Kolle M,Salgard-Cunha P M,Scherer M R J,et al.Mimicking the co-lourful wing scale structure of the Papilio blumei butterfly[J].Nature Nanotechnology,2010,5(7):511-515.
[8] 王女,赵勇,江雷.受生物启发的多尺度微/纳米结构材料[J].高等学校化学学报,2011,32(3):421-428.Wang Nü,Zhao Yong,Jiang Lei.Bioinspired hierarchical micro/nanostructure materials[J].Chemical Journal of Chinese Universities,2011,32(3):421-428.
[9] 李坚,孙庆丰.大自然给予的启发——木材仿生科学刍议[J].中国工程科学,2014,16(4):4-12.Li Jian,Sun Qingfeng.Inspirations from nature:Preliminary discussion of wood bionics[J].Engineering Sciences,2014,16(4):4-12.
[10] Greil P,Lifka T,Kaindl A.Biomorphic cellular silicon carbide ceram-ics from wood:I.Processing and microstructure[J].Journal of the Euro-pean Ceramic Society,1998,18(14):1961-1973.
[11] Greil P,Lifka T,Kaindl A.Biomorphic cellular silicon carbide ceram-ics from wood:Ⅱ.Mechanical properties[J].Journal of the European Ceramic Society,1998,18(14):1975-1983.
[12] 刘兆婷.木材结构分级多孔氧化物制备,表征及其功能特性研究[D].上海:上海交通大学,2008.Liu Zhaoting.Synthesis,characterization and properties of hierarchical porous oxides derived from wood templates[D].Shanghai:Shanghai Jiao Tong University,2008.
[13] Zhu H,Jia Z,Chen Y,et al.Tin anode for sodium-ion batteries using natural wood fiber as a mechanical buffer and electrolyte reservoir[J].Nano Letters,2013,13(7):3093-3100.
[14] Sieber H,Hoffmann C,Kaindl A,et al.Biomorphic cellular ceramics[J].Advanced Engineering Materials,2000,2(3):105-109.
[15] Vogli E,Mukerji J,Hoffman C,et al.Conversion of oak to cellular sili-con carbide ceramic by gas-phase reaction with silicon monoxide[J].Journal of the American Ceramic Society,2001,84(6):1236-1240.
[16] Sieber H.Biomimetic synthesis of ceramics and ceramic composites[J].Materials Science and Engineering:A,2005,412(1):43-47.
[17] Zollfrank C,Sieber H.Microstructure and phase morphology of wood derived biomorphous SiSiC-ceramics[J].Journal of the European Ce-ramic Society,2004,24(2):495-506.
[18] Wang T C,Fan T X,Zhang D,et al.Fabrication and the wear behav-iors of the carbon/aluminum composites based on wood templates[J].Carbon,2006,44(5):900-906.
[19] Wang T C,Fan T X,Zhang D,et al.The fabrication and wear proper-ties of C/Al and(C+SiC)/Al composites based on wood template[J].Materials Letters,2006,60(21):2695-2699.
[20] Qian J M,Jin Z H,Wang X W.Porous SiC ceramics fabricated by re-active infiltration of gaseous silicon into charcoal[J].Ceramics Interna-tional,2004,30(6):947-951.
[21] Vogli E,Sieber H,Greil P.Biomorphic SiC-ceramic prepared by Sivapor phaseinfiltration of wood[J].Journal of the European Ceramic So-ciety,2002,22(14):2663-2668.
[22] Ghanem H,Kormann M,Gerhard H,et al.Processing of biomorphic porous TiO2 ceramics by chemical vapor infiltration and reaction(CVI-R) technique[J].Journal of the European Ceramic Society,2007,27(12):3433-3438.
[23] Ghanem H,Popovska N,Gerhard H.Processing of biomorphic Si3N4 ceramics by CVI-R technique with SiCl4/H2/N2 system[J].Journal of the European Ceramic Society,2007,27(4):2119-2125.
[24] Mizutani M,Takase H,Adachi N,et al.Porous ceramics prepared by mimicking silicified wood[J].Science and Technology of Advanced Ma-terials,2005,6(1):76-83.
[25] Daud N,Shanks R.Epoxy-silica composites replicating wood cell structure[J].Composites Part A:Applied Science and Manufacturing,2014,62:11-15.
[26] Cao J,Rambo C R,Sieber H.Preparation of porous Al2O3-ceramics by biotemplating of wood[J].Journal of porous Materials,2004,11(3):163-172.
[27] Cao J,Rusina O,Sieber H.Processing of porous TiO2-ceramics from biological preforms[J].Ceramics International,2004,30(7):1971-1974.
[28] Rambo C R,Cao J,Sieber H.Preparation and properties of highly po-rous,biomorphic YSZ ceramics[J].Materials Chemistry and Physics,2004,87(2):345-352.
[29] Song F,Su H,Han J,et al.Controllable synthesis and gas response of biomorphic SnO2 with architecture hierarchy of butterfly wings[J].Sen-sors and Actuators B:Chemical,2010,145(1):39-45.
[30] Liu Z,Fan T,Zhang W,et al.The synthesis of hierarchical porous iron oxide with wood templates[J].Microporous and Mesoporous Mate-rials,2005,85(1):82-88.
[31] Liu Z,Fan T,Zhang D,et al.Hierarchically porous ZnO with high sensitivity and selectivity to H2S derived from biotemplates[J].Sensors and Actuators B:Chemical,2009,136(2):499-509.
[32] Li X,Fan T,Liu Z,et al.Synthesis and hierarchical pore structure of biomorphic manganese oxide derived from woods[J].Journal of the Eu-ropean Ceramic Society,2006,26(16):3657-3664.
[33] Matovic B,Nikolic D,Labus N,et al.Preparation and properties of po-rous,biomorphic,ceria ceramics for immobilization of Sr isotopes[J].Ceramics International,2013,39(8):9645-9649.
[34] 赵琳,孙炳合,范同祥,等.模板法制备遗态Al2O3陶瓷的研究[J].功能材料,2005,7:16.Zhao Lin,Sun Binghe,Zhang Di,et al.Morph-genetic Al2O3 ceramic derived from bio-template[J].Journal of Functional Materials,2005,7:16.
[35] Gordic M,Bucevac D,Ruzic J,et al.Biomimetic synthesis and proper-ties of cellular SiC[J].Ceramics International,2014,40(2):3699-3705.
[36] Vera M C,Ramirez-Rico J,Martinez-Fernandez J,et al.Sliding wear resistance of biomorphic SiC ceramics[J].International Journal of Re-fractory Metals and Hard Materials,2015,49:327-333.
[37] Ghanem H,Gerhard H,Popovska N.Paper derived SiC-Si3N4 ceram-ics for high temperature applications[J].Ceramics International,2009,35(3):1021-1026.
[38] Greil P.Biomorphous ceramics from lignocellulosics[J].Journal of the European Ceramic Society,2001,21(2):105-118.
[39] Li X Y,Sun M H,Rooke J C,et al.Synthesis and applications of hier-archically porous catalysts[J].Chinese Journal of Catalysis,2013,34(1):22-47.
[40] Orlova T S,Popov V V,Cancapa J Q,et al.Electrical properties of biomorphic SiC ceramics and SiC/Si composites fabricated from medi-um density fiberboard[J].Journal of the European Ceramic Society,2011,31(7):1317-1323.
[41] Dong Q,Su H,Xu J,et al.Influence of hierarchical nanostructures on the gas sensing properties of SnO2 biomorphic films[J].Sensors and Actuators B:Chemical,2007,123(1):420-428.
[42] Song P,Wang Q,Yang Z.Biomorphic synthesis of ZnSnO3 hollow fi-bers for gas sensing application[J].Sensors and Actuators B:Chemi-cal,2011,156(2):983-989.
[43] Li J,Yu S,Ge M,et al.Fabrication and characterization of biomor-phic cellular C/SiC-ZrC composite ceramics from wood[J].Ceramics International,2015,41(6):7853-7859.
文章导航

/