化工学报 ›› 2017, Vol. 68 ›› Issue (S1): 1-8.DOI: 10.11949/j.issn.0438-1157.20170595
王纪孝, 蔡玮, 全晓冬
收稿日期:
2017-05-11
修回日期:
2017-05-17
出版日期:
2017-08-31
发布日期:
2017-08-31
通讯作者:
王纪孝,jxwang@tju.edu.cn
基金资助:
国家海洋局海洋公益性行业科研专项经费项目(201405013-5);国家自然科学基金项目(20836006);大学学科人才引进项目(B06006);国家科技支撑项目(2015BAB10B00)。
WANG Jixiao, CAI Wei, QUAN Xiaodong
Received:
2017-05-11
Revised:
2017-05-17
Online:
2017-08-31
Published:
2017-08-31
Supported by:
supported by the Public Science and Technology Research Funds Projects of Ocean (201405013-5),the National Natural Science Foundation of China (20836006),the Program of Introducing Talents of Discipline to Universities (B06006) and the National Science & Technology Pillar Program (2015BAB10B00).
摘要:
抗菌剂在涂料、膜、生物智能材料等材料表面的防污领域有着极其重要的应用价值。随着环保意识的增强,长效、环境友好型的抗菌剂成为当前研究的主流。其中,聚苯胺由于其良好的生物相容性和物理化学性能,是一种极具潜力的抗菌剂。聚苯胺的抗菌机理可由自身的氧化还原活性、阳离子吸附效应及电化学活性3方面分析。概括了聚苯胺及其衍生物的结构及制备方法;进一步从杀菌防污机理出发,综述了聚苯胺及其衍生复合材料在不同防污材料中应用的研究进展,包括在接触杀菌型表面、释放杀菌型表面、抗黏附型表面3种类型的材料中的应用。此外,提出了聚苯胺在防污应用中需进一步解决的问题及发展方向。
中图分类号:
王纪孝, 蔡玮, 全晓冬. 聚苯胺及其衍生物在杀菌防污领域的应用进展[J]. 化工学报, 2017, 68(S1): 1-8.
WANG Jixiao, CAI Wei, QUAN Xiaodong. Application progress of polyaniline and its derivatives in sterilization and antifouling fields[J]. CIESC Journal, 2017, 68(S1): 1-8.
[1] | DANG H,LOVELL C R. Microbial surface colonization and biofilm development in marine environments[J]. Microbiology and Molecular Biology Reviews,2016,80(1):91-138. |
[2] | LEJARS M,MARGAILLAN A,BRESSY C. Fouling release coatings:a nontoxic alternative to biocidal antifouling coatings[J]. Chemical Reviews,2012,112(8):4347-4390. |
[3] | WU J,WANG Z,YAN W,et al. Improving the hydrophilicity and fouling resistance of RO membranes by surface immobilization of PVP based on a metal-polyphenol precursor layer[J]. Journal of Membrane Science,2015,496:58-69. |
[4] | BANERJEE I,PANGULE R C,KANE R S. Antifouling coatings:recent developments in the design of surfaces that prevent fouling by proteins,bacteria,and marine organisms[J]. Advanced Materials,2011,23(6):690-718. |
[5] | A?G IRI A?G -MARJANOVI A?G G. Recent advances in polyaniline research:polymerization mechanisms,structural aspects,properties and applications[J]. Synthetic Metals,2013,177:1-47. |
[6] | ZHAO Y,ZHANG Z,YU L,et al. Electrospinning of polyaniline microfibers for anticorrosion coatings:an avenue of enhancing anticorrosion behaviors[J]. Synthetic Metals,2016,212:84-90. |
[7] | BALDISSERA A F,MIRANDA K L D,BRESSY C,et al. Using conducting polymers as active agents for marine antifouling paints[J]. Materials Research-Ibero-American Journal of Materials,2015,18(6):1129-1139. |
[8] | KUCEKOVA Z,HUMPOLICEK P,KASPARKOVA V,et al. Colloidal polyaniline dispersions:antibacterial activity,cytotoxicity and neutrophil oxidative burst[J]. Colloids and Surfaces B:Biointerfaces,2014,116:411-417. |
[9] | WU J C C,RAY S,GIZDAVIC-NIKOLAIDIS M,et al. Effect of polyvinylpyrrolidone on storage stability,anti-oxidative and anti-bacterial properties of colloidal polyaniline[J]. Synthetic Metals,2016,217:202-209. |
[10] | SIVA T,KAMARAJ K,SATHIYANARAYANAN S. Electrosynthesis of poly(aniline-co-o-phenylenediamine) film on steel and its corrosion protection performance[J]. Progress in Organic Coatings,2014,77(11):1807-1815. |
[11] | SAMBYAL P,RUHI G,DHAWAN R,et al. Designing of smart coatings of conducting polymer poly(aniline-co-phenetidine)/SiO2 composites for corrosion protection in marine environment[J]. Surface and Coatings Technology,2016,303:362-371. |
[12] | JAFARI Y,SHABANI-NOOSHABADI M,GHOREISHI S M. Electropolymerized coatings of poly(o-anisidine) and poly(o-anisidine)-TiO2 nanocomposite on aluminum alloy 3004 by using the galvanostatic method and their corrosion protection performance[J]. Polymers for Advanced Technologies,2014,25(3):279-287. |
[13] | YAN J,YANG Y,MA L,et al. Synthesis and electrochemical properties of poly(2,3-dimethylaniline)/polyaniline composites[J]. Polymer Composites,2015,36(8):1541-1545. |
[14] | LI Z,MA L,GAN M,et al. Synthesis and anticorrosion performance of poly(2,3-dimethylaniline)-TiO2 composite[J]. Progress in Organic Coatings,2013,76(9):1161-1167. |
[15] | YU Q,LIU J,XU J,et al. Effects of fluorine atoms on structure and surface properties of PANI and fluorinated PANI/GPTMS hybrid films[J]. Journal of Sol-Gel Science and Technology,2015,75(1):74-81. |
[16] | JAFARI Y,SHABANI-NOOSHABADI M,GHOREISHI S M. Poly(2-chloroaniline) electropolymerization coatings on aluminum alloy 3105 and evaluating their corrosion protection performance[J]. Transactions of the Indian Institute of Metals,2014,67(4):511-520. |
[17] | YANG Y,MIN Y,WU J C,et al. Synthesis and characterization of cytocompatible sulfonated polyanilines[J]. Macromolecular Rapid Communications,2011,32(12):887-892. |
[18] | 曹雨,张海瑞,王纪孝. 聚苯胺及其衍生物在防腐领域中的应用进展[J]. 化学工业与工程,2016,33(4):79-84. CAO Y,ZHANG H R,WANG J X. Application progress of polyaniline and its derivatives in the metallic protection[J]. Chemical Industry and Engineering,2016,33(4):79-84. |
[19] | 廖光福,张力,张淑来,等. 聚苯胺改性方法的研究进展[J]. 材料导报,2016,30(4):32-38. LIAO G F,ZHANF L,ZHAN S L,et al. Investigative propgess in modified methods of polyaniline[J]. Materials Reviews,2016,30(4):32-38. |
[20] | MA A,HU T,SHAN S,et al. Morphologies and antibacterial properties of poly(o-aminophenol)[J]. Polymers for Advanced Technologies,2014,25(5):575-580. |
[21] | LV L,YUAN S,ZHENG Y,et al. Surface modification of mild steel with thermally cured antibacterial poly(vinylbenzyl chloride)-polyaniline bilayers for effective protection against sulfate reducing bacteria induced corrosion[J]. Industrial & Engineering Chemistry Research,2014,53(31):12363-12378. |
[22] | JAYMAND M. Recent progress in chemical modification of polyaniline[J]. Progress in Polymer Science,2013,38(9):1287-1306. |
[23] | LIU X X,DOU Y Q,WU J,et al. Chemical anchoring of silica nanoparticles onto polyaniline chains via electro-co-polymerization of aniline and N-substituted aniline grafted on surfaces of SiO2[J]. Electrochimica Acta,2008,53(14):4693-4698. |
[24] | ZHANG W L,CHOI H J. Fabrication and electrorheology of graphene oxide/ionic N-substituted copolyaniline composite[J]. Colloid and Polymer Science,2012,291(6):1401-1408. |
[25] | YUAN S,TANG S,LV L,et al. Poly(4-vinylaniline)-polyaniline bilayer-modified stainless steels for the mitigation of biocorrosion by sulfate-reducing bacteria (SRB) in seawater[J]. Industrial & Engineering Chemistry Research,2012,51(45):14738-14751. |
[26] | 代红蕾,田艳红,张学军,等. 循环伏安法制备聚苯胺/活性炭超级电容器膜电极[J]. 化工学报,2012,63(10):3330-3336. DAI H L,TIAN Y H,ZHANG X J,et al. Preparation of polyaniline/activated carbon used for supercapacitor film electrode by cyclic voltammetry[J]. CIESC Journal,2012,63(10):3330-3336. |
[27] | GAO Y,SYED J A,LU H,et al. Anti-corrosive performance of electropolymerized phosphomolybdic acid doped PANI coating on 304SS[J]. Applied Surface Science,2016,360:389-397. |
[28] | KATOCH A,BURKHART M,HWANG T,et al. Synthesis of polyaniline/TiO2 hybrid nanoplates via a sol-gel chemical method[J]. Chemical Engineering Journal,2012,192:262-268. |
[29] | XIE S,GAN M,MA L,et al. Synthesis of polyaniline-titania nanotube arrays hybrid composite via self-assembling and graft polymerization for supercapacitor application[J]. Electrochimica Acta,2014,120:408-415. |
[30] | POYRAZ S,CERKEZ I,HUANG T S,et al. One-step synthesis and characterization of polyaniline nanofiber/silver nanoparticle composite networks as antibacterial agents[J]. ACS Appl. Mater. Interfaces,2014,6(22):20025-20034. |
[31] | TAMBOLI M S,KULKARNI M V,PATIL R H,et al. Nanowires of silver-polyaniline nanocomposite synthesized via in situ polymerization and its novel functionality as an antibacterial agent[J]. Colloids and Surfaces B:Biointerfaces,2012,92:35-41. |
[32] | WANG Q,WANG S,LI J,et al. Synthesis and characterization of C60/polyaniline composites from interfacial polymerization[J]. Journal of Polymer Science Part B:Polymer Physics,2012,50(20):1426-1432. |
[33] | CHU D,WANG J,HAN Y,et al. High performance epoxy protective coatings incorporated with polyaniline nanowires using cardanol-based phenalkamine as the curing agent[J]. RSC Advances,2015,5(15):11378-11384. |
[34] | FARIAS E A,DIONISIO N A,QUELEMES P V,et al. Development and characterization of multilayer films of polyaniline,titanium dioxide and CTAB for potential antimicrobial applications[J]. Materials Science and Engineering:C,2014,35:449-454. |
[35] | HU J,GAN M,MA L,et al. Synthesis and anticorrosive properties of polymer-clay nanocomposites via chemical grafting of polyaniline onto Zn-Al layered double hydroxides[J]. Surface and Coatings Technology,2014,240:55-62. |
[36] | KANT S,KALIA S,KUMAR A. A novel nanocomposite of polyaniline and Fe0.01Ni0.01Zn0.98O:photocatalytic,electrical and antibacterial properties[J]. Journal of Alloys and Compounds,2013,(578):249-256. |
[37] | LIANG X,SUN M,LI L,et al. Preparation and antibacterial activities of polyaniline/Cu0.05Zn0.95O nanocomposites[J]. Dalton Transactions,2012,41(9):2804-2811. |
[38] | PANDISELVI K,THAMBIDURAI S. Synthesis,characterization,and antimicrobial activity of chitosan-zinc oxide/polyaniline composites[J]. Materials Science in Semiconductor Processing,2015,31:573-581. |
[39] | MOSTAFAEI A,NASIRPOURI F. Preparation and characterization of a novel conducting nanocomposite blended with epoxy coating for antifouling and antibacterial applications[J]. Journal of Coatings Technology and Research,2013,10(5):679-694. |
[40] | MAR KOV N,HUMPOL A?G EK P,KAŠP RKOV V,et al. Antimicrobial activity and cytotoxicity of cotton fabric coated with conducting polymers,polyaniline or polypyrrole,and with deposited silver nanoparticles[J]. Applied Surface Science,2017,396:169-176. |
[41] | JAFARZADEH S,CLAESSON P M,SUNDELL P E,et al. Active corrosion protection by conductive composites of polyaniline in a UV-cured polyester acrylate coating[J]. Progress in Organic Coatings,2016,90:154-162. |
[42] | GIZDAVIC-NIKOLAIDIS M R,PAGNON J C,ALI N,et al. Functionalized polyanilines disrupt Pseudomonas aeruginosa and Staphylococcus aureus biofilms[J]. Colloids and Surfaces B:Biointerfaces,2015,136(1):666-673. |
[43] | GIZDAVIC-NIKOLAIDIS M R,BENNETT J R,SWIFT S,et al. Broad spectrum antimicrobial activity of functionalized polyanilines[J]. Acta Biomaterialia,2011,7(12):4204-4209. |
[44] | ABDOLAHI A,HAMZAH E,IBRAHIM Z,et al. Application of environmentally-friendly coatings toward inhibiting the microbially influenced corrosion (MIC) of steel:a review[J]. Polymer Reviews,2014,54(4):702-745. |
[45] | 刘宝蕴,刘利,张彦英,等. 聚苯胺的抗菌性及其机制[J]. 材料研究学报,2010,24(3):273-277. LIU B Y,LIU L,ZHANG Y Y, et al. Antibacterial property and mechanism of polyaniline[J]. Chinese Journal of Materials Research,2010,24(3):273-277. |
[46] | WANG X H,LI J,ZHANG J Y,et al. Polyaniline as marine antifouling and corrosion-prevention agent[J]. Synthetic Metals,1999,102(1/2/3):1377-1380. |
[47] | CHEN S,ZHU J,ZHOU T,et al. Preparation and properties study of polyaniline conductive anti-fouling coatings[J]. International Journal of Electrochemical Science,2012,7(9):8170-8184. |
[48] | 郑时国,詹豪强. 新型聚苯胺共聚物季铵盐的合成与性能研究[J]. 合成化学,2013,21(4):424-427. ZHENG S G,ZHAN H Q. Synthesis and research on properties of a novel quaternary ammonium polyaniline copolymers[J]. Chinese Journal of Synthetic Chemistry,2013,21(4):424-427. |
[49] | ZHAO X,LI P,GUO B,et al. Antibacterial and conductive injectable hydrogels based on quaternized chitosan-graft-polyaniline/oxidized dextran for tissue engineering[J]. Acta Biomaterialia,2015,26:236-248. |
[50] | ALMEIDA J R,VASCONCELOS V. Natural antifouling compounds:effectiveness in preventing invertebrate settlement and adhesion[J]. Biotechnology Advances,2015,33(3/4):343-357. |
[51] | 郑绍军,王瑜,朱瑞,等. 人工合成类天然产物防污剂的研究进展[J]. 中国腐蚀与防护学报,2016,36(5):389-397. ZHENG S J,WANG Y,ZHU R,et al. Recent research progress of synthetic substances as antifoulants[J]. Journal of Chinese Society for Corrosion and Protection,2016,36(5):389-397. |
[52] | RIZZELLO L,POMPA P P. Nanosilver-based antibacterial drugs and devices:mechanisms,methodological drawbacks,and guidelines[J]. Chemical Society Reviews,2014,43(5):1501-1518. |
[53] | PEREIRA V R,ISLOOR A M,AHMED A A,et al. Preparation,characterization and the effect of PANI coated TiO2 nanocomposites on the performance of polysulfone ultrafiltration membranes[J]. New Journal of Chemistry. Nouveau Journal de Chimie,2015,39(1):703-712. |
[54] | SHAFAEI N,PEYRAVI M,JAHANSHAHI M. Improving surface structure of photocatalytic self-cleaning membrane by WO3/PANI nanoparticles[J]. Polymers for Advanced Technologies,2016,27(10):1325-1337. |
[55] | PEREIRA V R,ISLOOR A M,ZULHAIRUN A K,et al. Preparation of polysulfone-based PANI-TiO2 nanocomposite hollow fiber membranes for industrial dye rejection applications[J]. RSC Adv.,2016,6(102):99764-99773. |
[56] | TELI S B,MOLINA S,SOTTO A,et al. Fouling resistant polysulfone-PANI/TiO2 ultrafiltration nanocomposite membranes[J]. Industrial & Engineering Chemistry Research,2013,52(27):9470-9479. |
[57] | JIA Q,SHAN S,JIANG L,et al. Synergistic antimicrobial effects of polyaniline combined with silver nanoparticles[J]. Journal of Applied Polymer Science,2012,125(5):3560-3566. |
[58] | HUI F,DEBIEMME-CHOUVY C. Antimicrobial N-halamine polymers and coatings:a review of their synthesis,characterization,and applications[J]. Biomacromolecules,2013,14(3):585-601. |
[59] | PAN N,LIU Y,FAN X,et al. Preparation and characterization of antibacterial graphene oxide functionalized with polymeric N-halamine[J]. Journal of Materials Science,2016,52(4):1996-2006. |
[60] | 李平,董阿力德尔图,孙梓嘉,等. N-卤胺类高分子与纳米抗菌材料的制备及应用[J]. 化学进展,2017,29(2/3):318-328. LI P,DONG A L D E T,SUN Z J,et al. Synthesis and applications of antibacterial N-halamine polymers and nanomaterials[J]. Progress in Chemistry,2017,29(2/3):318-328. |
[61] | LANG S,ZHOU Q. Synthesis and characterization of poly(urea-formaldehyde) microcapsules containing linseed oil for self-healing coating development[J]. Progress in Organic Coatings,2017,105:99-110. |
[62] | LV L P,ZHAO Y,VILBRANDT N,et al. Redox responsive release of hydrophobic self-healing agents from polyaniline capsules[J]. Journal of the American Chemical Society,2013,135(38):14198-14205. |
[63] | BOLLHORST T,REZWAN K,MAAS M. Colloidal capsules:nano-and microcapsules with colloidal particle shells[J]. Chemical Society Reviews,2017,46(8):2091-2126. |
[64] | CALLOW J A,CALLOW M E. Trends in the development of environmentally friendly fouling-resistant marine coatings[J]. Nature Communications,2011,2:244. |
[65] | YANG W J,NEOH K G,KANG E T,et al. Polymer brush coatings for combating marine biofouling[J]. Progress in Polymer Science,2014,39(5):1017-1042. |
[66] | RAZALI N F,MOHAMMAD A W,HILAL N. Effects of polyaniline nanoparticles in polyethersulfone ultrafiltration membranes:fouling behaviours by different types of foulant[J]. Journal of Industrial and Engineering Chemistry,2014,20(5):3134-3140. |
[67] | HUANG X,MCVERRY B T,MARAMBIO-JONES C,et al. Novel chlorine resistant low-fouling ultrafiltration membrane based on a hydrophilic polyaniline derivative[J]. J. Mater. Chem. A,2015,3(16):8725-8733. |
[68] | TELI S B,MOLINA S,CALVO E G,et al. Preparation,characterization and antifouling property of polyethersulfone-PANI/PMA ultrafiltration membranes[J]. Desalination,2012,299:113-122. |
[69] | 赵博然,王志,赵颂,等. 聚砜/聚苯胺-嵌段式聚醚Pluronic F127复合超滤膜的制备及性能[J]. 化工学报,2013,64(2):702-710. ZHAO B R,WANG Z,ZHAO S,et al. Preparation and performance of PSf/PANI-F127 composite ultrafiltration membrane[J]. CIESC Journal,2013,64(2):702-710. |
[70] | ZHANG B,NAGLE A R,WALLACE G G,et al. Functionalised inherently conducting polymers as low biofouling materials[J]. Biofouling,2015,31(6):493-502. |
[71] | HUI N,SUN X,NIU S,et al. PE gylated polyaniline nanofibers:antifouling and conducting biomaterial for electrochemical DNA sensing[J]. ACS Appl. Mater. Interfaces,2017,9(3):2914-2923. |
[72] | HUI N,SUN X,SONG Z,et al. Gold nanoparticles and polyethylene glycols functionalized conducting polyaniline nanowires for ultrasensitive and low fouling immunosensing of alpha-fetoprotein[J]. Biosensors and Bioelectronics,2016,86:143-149. |
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