期刊首页 优先出版 当期阅读 过刊浏览 作者中心 关于期刊 English

《中国工程科学》 >> 2014年 第16卷 第12期

仿生与生物启发膜的研究进展

1. 天津大学化工学院,天津300072;

2. 天津化学化工协同创新中心,天津 300072

资助项目 :国家杰出青年科学基金(21125627) 收稿日期: 2014-08-31 发布日期: 2015-01-05 14:05:24.000

下一篇 上一篇

摘要

仿生与生物启发的思想和策略在众多基础与工程科学领域取得了重要进展。研究者们通过借鉴和模仿自然界中生物材料多样的组成、精巧的结构、温和的形成过程以及强大的功能,设计制备了多种高性能膜材料,并将其应用于水处理、气体分离、有机小分子液体混合物分离等领域,显示出良好的应用前景。仿生和生物启发膜主要是以细胞膜、荷叶和贻贝等为仿生原型,以生物矿化、生物黏合和自组装等为工具,以绿色、高效、节能为目标,在资源、能源高效利用和可持续发展等方面会发挥越来越大的作用,并逐步发展成为膜和膜过程领域的重要分支。本文将对仿生和生物启发膜的研究进展进行简要总结,重点介绍抗污染膜、杂化膜和复合膜的制备与应用。

图片

图1

图2

图3

图4

参考文献

[ 1 ] Abetz V,Brinkmann T,Dijkstra M,et al. Developme- nts in membrane research:from material via process design to industrial application [J]. Advanced Engineering Materials,2006,8: 328-386. 链接1

[ 2 ] Salta M,Wharton J A,Stoodley P,et al. Designing b-iomimetic antifouling surfaces [J]. Phlosophical Trans-actions of The Royal Society of London Series A-M- athematical Physical And Engineering Sciences,2010,368:4729-4783. 链接1

[ 3 ] Vullev VI. From biomimesis to bioinspiration:what’s the benefit for solar energy conversion applications [J]. The Journal of Physical Chemistry Letters,2011,2:503-511. 链接1

[ 4 ] Kerusha Lutchmiaha,Verliefde ARD,Roest K,et al. Forward osmosis for ap- plication in wastewater treatment:A review [J]. waterresearch,2014,58:179-197. 链接1

[ 5 ] Rana D,Matsuura. Surface modification for antifouli- ng membranes [J]. Chemical Reviews,2010,110(4):2448-2471. 链接1

[ 6 ] Vermette P,Meagher L. Interactions of phospholipid- and poly (ethylene glycol)-modified surfaces with biol-ogical systems:relation to physico- chemical propertiesand mechanisms [J]. Colloids Surf B Biointerfaces,2003,28:153-251. 链接1

[ 7 ] Pechook S,Pokroy B. Self-assembling,bioinspired w-ax crystalline surfaces with time-dependent wettability [J]. Advanced Energy Materials,2012,22:745-795. 链接1

[ 8 ] Feng L,Li S H,Li Y S,et al. Super- hydrophobic surfaces: from natural to artificial [J]. Advanced Materials,2002,14(24): 1857-1860. 链接1

[ 9 ] Liu Y,Zhang S L,Wang G B. The preparation of antifouling ultra fi ltration membrane by surface grafting zwitterionic polymer onto poly(arylene ether sulfone) containing hydroxyl [J]. Desalination,2013,316:127-163. 链接1

[10] Shannon M A,Bohn P W,Elimelech M,et al. Science and technology for water purification in the coming decades [J]. Nature,2008,452:301-310. 链接1

[11] Ma X L,Su Y L,Sun Q,et al. Preparation of prote-in-adsorption- resistant polyethersulfone ultrafiltration membranes through surface segregation of amphiphilic comb copolymer [J]. Journal of Membrane Science,2007,292:116-140. 链接1

[12] Hester J F,Banerjee P,Mayes A M Preparat-ion of protein-resistant surfaces on poly(vinylidene f- luoride) membranes via surface segregation [J]. Mac- romolecules,1999,32:1643- 1650. 链接1

[13] Zhao X T,Su Y L,Li Y F,et al. Engineering amp- hiphilic membrane surfaces based on PEO and PDMS segments for improved antifouling performances [J]. Journal of Membrane Science,2014,450:111-123. 链接1

[14] Hester J F,Mayes A M. Design and performance of foul-resistant poly(vinylidene fluoride) membranes Prepared in a single step by surface segregation [J]. Journal of Membrane Science, 2002,202:119-135. 链接1

[15] Wang Y Q,Wang T,Su Y L,et al. Remarkable red-uction of irreversible fouling and improvement of thepermeation properties of Poly(ether sulfone) ultrafiltra-tion membranes by blending with Pluronic F127 [J]. Langmuir,2005,21:11856-11862. 链接1

[16] Heru S,Nico S,Mathias U. High performance polye-thersulfone microfiltration membranes having high flu-x and stable hydrophilic property [J]. Journal of Membrane Science,2009, 342:153-164. 链接1

[17] Li J H,Li M Z,Miao J,et al. Improved surface pr-operty of PVDF membrane with amphiphilic zwitteri- onic copolymer as membrane additive [J]. Applied Surface Science. 2012,258: 6398-6405. 链接1

[18] Chen W J,Su Y L,Peng J M,et al. Engineering a r-obust,versatile amphiphilic membrane surface throughforced surface segregation for ultralow flux-decline [J]. Advanced Functional Materials,2011,21(1):191-198. 链接1

[19] Zhao X T,Chen W J,Su Y L,et al. Hierarchically engineered membrane surfaces with superior antifouling and self- cleaning properties [J]. Journal of Membrane Science,2013,441:93- 101. 链接1

[20] Merkel T C,Freeman B D,Spontak R J,et al. Ultr- apermeable,reverse-selective nanocomposite membranes [J]. Science, 2002,296(5567):519-541. 链接1

[21] Lin H,Van W E,Freeman B D,et al. Plasticization-enhanced hydrogen purification using polymeric mem- branes [J]. Science,2006,311(5761):639-681. 链接1

[22] Park H B,Jung C H,Lee Y M,et al. Polymers wit-h cavities tuned for fast selective transport of small molecules and ions [J]. Science,2007,318:254-262. 链接1

[23] Li Y F,He G W,Wang S F,et al. Recent advances in the fabrication of advanced composite membranes [J]. Journal of Materials Chemistry A,2013,1(35):10058-10077. 链接1

[24] Zhou H L,Shi R H,Jin W Q. Novel organic-inorga- nic pervaporation membrane with a superhydrophobic surface for the separation of ethanol from an aqueoussolution [J]. Separation and Purification Technology,2014,127:61-69. 链接1

[25] Hoang V T,Serge K. Predictive models for mixed- m- atrix membrane performance:A review [J]. Chemical Reviews, 2013,113(7):4980-5028. 链接1

[26] Pan F S,Cheng Q L,Jia H P,et al. Facile approach to polymer- inorganic nanocomposite membrane througha biomineralization- inspired process [J]. Journal of Membrane Science, 2010,357(1-2):171-177. 链接1

[27] Roth K M.,Zhou Y,Yang W J,et al. Bifunctional Small Molecules are biomimetic catalysts for silica synthesis at neutral pH [J]. Journal of American Chemical Society,2005,127 (1): 325-330. 链接1

[28] Mann S. Molecular tectonics in biomineralization andbiomimetic materials chemistry [J]. Nature,1993,365:499-505. 链接1

[29] Mann S. Biomineralization:Principles and Concepts Inbioinorganic Materials Chemistry [M].USA:Oxford University Press, 2002.

[30] Mark H. Diatoms,biomineralization processes,and g-enomics [J]. Chemical Reviews,2008,108:4855-4874. 链接1

[31] Xu A W,Ma Y R,Coelfen H. Biomimetic mineralization [J]. Journal of Materials Chemistry,2007,17(5):415-449. 链接1

[32] Choi M O,Young- JinK. Fabrication of gelatin/calcium- phosphate composite nanofibrous membranes by biom-imetic mineralization [J]. International Journal of Biological Macromolecules,2012,50(5):1188-1194. 链接1

[33] Zhang F,Zhang W B,Yu Y,et al. Solgel preparation of PAAg-PVDF/TiO2 nanocomposite hollow fiber membranes with extremely high water flux and improved antifouling property [J]. Journal of Membrane Science,2013,432:25-32. 链接1

[34] Zhi S H,Wan L S,Xu Z K. Poly(vinylidene fluoride)/poly (acrylic acid)/calcium carbonate composite memb-ranes via mineralization [J]. Journal of Membrane Science,2014,454:144- 154. 链接1

[35] Li B,Liu W P,Wu H,et al. Desulfurization of model gasoline by bioinspired oleophilic nanocomposite membranes [J]. Journal of Membrane Science,2012,415:278-287. 链接1

[36] Liao K,Ye X Y,Chen P C,et al. Biomineralized polypropylene/CaCO3 composite nonwoven meshes for oil/water separation [J]. Journal of Applied Polymer Science,2014,131(4): 39897. 链接1

[37] Chen X N,Wan L S,Wu Q Y,et al. Mineralized polyacrylonitrile- based ultrafiltration membranes with improved water flux and rejection towards dye [J]. Journal of Membrane Science, 2013,441:112-119. 链接1

[38] Cheng Q L,Pan F S,Chen B,et al. Preparation and dehumidification performance of composite membrane with PVA/gelatinsilica hybrid skin layer [J]. Journal of Membrane Science, 2010,363(1-2):316-325. 链接1

[39] Pan F S,Jia H P,Cheng Q L,et al. Bio-inspired fabrication of composite membranes with ultrathin polymersilica nanohybrid skin layer [J]. Journal of Membrane Science,2010,362(1-2): 119-126. 链接1

[40] Zhao Y N,Jiang Z Y,Xiao L L,et al. Chitosan me-mbranes filled with biomimetic mineralized hydroxya- patite for enhanced proton conductivity [J]. Solid State Ionics,2011,187: 33-38. 链接1

[41] Zhao J,Zhao X T,Jiang Z Y,et al. Biomimetic andbioinspired membranes:Preparation and application [J]. Progress in Polymer Science,2014,39:1668-1720. 链接1

[42] Lin Q,Gourdon D,Sun C J,et al. Adhesion mechanisms of the mussel foot proteins mfp- 1 and mfp- 3 [J]. Proceedings of the National Academy of Sciences,2007,104(10):3782-3786. 链接1

[43] Dalsin J L,Messersmith P B. Bioinspired antifoulingpolymers [J]. Materials Today,2005,8(9):38-46. 链接1

[44] Deacon M P,Davis S S,Waite J H,et al. Structure and mucoadhesion of mussel glue protein in dilute solution [J]. Biochemistry,1998,37(40):14108-14112. 链接1

[45] Ma J,Zhang M H,Wu H,et al. Mussle-inspired fabrication of structurally stable chitosan/polyacrylonitrile composite membrane for pervaporation dehydration [J]. Journal of Membrane Science,2010,348:150-159. 链接1

[46] Lee H,Dellatore S M,Miller W M,et al. Mussel-in-spired surface chemistry for multifunctional coatings [J]. Science,2007, 318:426-456. 链接1

[47] Waite J H. Surface chemistry:mussel power [J]. Nature Materials,2008,7:8-9. 链接1

[48] Pan F S,Jia H P,Qiao S Z,et al. Bioinspired fabr-ication of high performance composite membranes with ultrathin defectfree skin layer [J]. Journal of Membrane Science,2009,341: 279-285. 链接1

[49] Li B,Liu W P,Jiang Z Y,et al. Ultrathin and stableactive layer of dense composite membrane enabled bypoly(dopamine) [J]. Langmuir,2009,25:7368-7374. 链接1

[50] Li X L,Zhu L P,Jiang J H,et al. Hydrophilic nan-ofiltration membranes with self- polymerized and stronglyadhered polydopamine as separating layer [J]. Chinese Journal of Polymer Science,2012,30:152-163. 链接1

[51] Arena J T,McCloskey B,Freeman B D,et al. Surface modification of thin film composite membrane support layers with polydopamine:Enabling use of reverse osmosis membranes in pressure retarded osmosis [J]. Journal of Membrane Science, 2011,375:55-62. 链接1

[52] Pravin G I,Wook C,Kee H K,et al. Synthesis,cha-racterization and surface modification of PES hollow fiber membrane support with polydopamine and thin film composite for energy generation [J]. Chemical Engineering Journal,2014,243:137- 146. 链接1

[53] Chen J,Chen X,Yin X,et al,Bioinspired fabricationof composite pervaporation membranes with high per-meation flux and structural stability [J]. Journal of Me- mbrane Science,2007, 287:51-59. 链接1

[54] Tadas S,Sileika H K,Piotr M,et al. Antibacterial performance of polydopamine- modified polymer [J]. ACS Applied Materials & Interfaces,2011,3:4602-4610.

[55] Shao L,Wang Z X,Zhang Y L,et al. A facile strategy to enhance PVDF ultrafiltration membrane performance via selfpolymerized polydopamine followed byhydrolysis of ammonium fluotitanate [J]. Journal of Membrane Science,2014,461:10-21. 链接1

[56] McCloskey B D,Park H B,Ju H,et al. Influence ofpolydopamine deposition conditions on pure water flux and foulant adhesion resistance of reverse osmosis,ultrafiltration,and microfiltration membranes [J]. Polymer,2010,51:3472-3485. 链接1

[57] Oh K H,Choo M J,Lee H,et al. Musselinspired polydopamine- treated composite electrolytes for longterm operations of polymer electrolyte membrane fuel cells [J]. Journal of Materials Chemistry A,2013,1:14411-14798. 链接1

[58] Wang J T,Xiao L L,Zhao Y N,et al,A facile surface modification of Nafion membrane by the formation of self- polymerized dopamine nano-layer to enhance the methanol barrier property [J]. Journal of Power Sources,2009,192:336-343 链接1

相关研究