综述与专论

响应型纤维素基高分子材料的制备及其应用

展开
  • 1.盐城工学院化学化工学院,盐城 224051;
    2.扬州大学化学化工学院,扬州 225002
丁正青(1998-),女,硕士研究生,主要从事天然物改性与应用研究,E-mail:1669247785@qq.com。

收稿日期: 2020-09-03

  修回日期: 2021-09-13

  网络出版日期: 2021-12-31

基金资助

国家自然科学基金青年基金项目(31901257),江苏省生物质能源与材料重点实验室开放基金(JSBEM201909),国家自然科学基金面上项目(32071706)

Preparation and application of cellulose-based stimulus responsive polymer material

Expand
  • 1. College of Chemistry and Chemical Engineering,Yancheng Institute of Technology, Yancheng 224051;
    2. College of Chemistry and Chemical Engineering,Yangzhou University, Yangzhou 225002

Received date: 2020-09-03

  Revised date: 2021-09-13

  Online published: 2021-12-31

摘要

相比于传统常规刺激响应型材料,以纤维素及其衍生物为原料的刺激响应型高分子材料在经济发展和环境友好等方面具有较大优势。根据外界刺激源的分类,对不同响应型纤维素基材料的制备方法进行了综述,介绍了pH敏感、温度敏感、光敏感和磁敏感等纤维素基高分子材料;结合近10来年纤维素基高分子材料的发展状况对其在多种领域的应用进行总结,并展望了未来的发展趋势。

本文引用格式

丁正青, 王婷, 黄旭娟, 蔡照胜 . 响应型纤维素基高分子材料的制备及其应用[J]. 化工新型材料, 2021 , 49(12) : 73 -78 . DOI: 10.19817/j.cnki.issn 1006-3536.2021.12.015

Abstract

Compared with traditional stimulus responsive materials,the stimulus responsive polymer materials using cellulose and its derivatives as raw materials have great advantages in economic development and environment friendly.According to the classification of external stimulus sources,the preparation methods of different cellulose based responsive materials were reviewed,including pH,temperature,light and magnetic sensitivity materials.In combination with the development of cellulosic polymer materials in the past decade,the applications in various fields were summarized,and prospected the future development trend.

参考文献

[1] Koschevic M T,Santos M,Faria R C,et al.Cellulose nanocrystals functionalization by grafting[J].Biopolymer Grafting:Synthesis and Properties,2018,9:409-439.
[2] Larsson E,Sanchez C C,Porsch C,et al.Thermo-responsive nanofibrillated cellulose by polyelectrolyte adsorption[J].European Polymer Journal,2013,49(9):2689-2696.
[3] Kang H,Liu R,Huang Y.Graft modification of cellulose:methods,properties and applications[J].Polymer,2015,70:A1-A16.
[4] Peng B,Yao Z,Wang X,et al.Cellulose-based materials in wastewater treatment of petroleum industry[J].Green Energy & Environment,2020,5(1):37-49.
[5] 翟兆兰.松香基pH响应型表面活性剂的制备、自组织及应用性能研究[D].南京:中国林业科学研究院,2019.
[6] Roy D,Cambre J N,Sumerlin B S.Future perspectives and recent advances in stimuli-responsive materials[J].Progress in Polymer Science,2010,35(1-2):278-301.
[7] Qiu X,Hu S.“Smart” materials based on cellulose:a review of the preparations,properties,and applications[J].Materials (Basel),2013,6(3):738-781.
[8] 刘雪锋.表面活性剂、胶体与界面化学实验[M].北京:化学工业出版社,2017,143-171.
[9] 尹金超.新型双重刺激响应型表面活性剂的合成及性能研究[D].无锡:江南大学,2017.
[10] Li Y,Zhu L,Grishkewich N,et al.CO2-responsive cellulose nanofibers aerogels for switchable oil-water separation[J].ACS Applied Materials Interfaces,2019,11(9):9367-9373.
[11] Wang W,Wang A.Nanocomposite of carboxymethyl cellulose and attapulgite as a novel pH-sensitive superabsorbent:synthesis,characterization and properties[J].Carbohydrate Polymers,2010,82(1):83-91.
[12] Chen L,Cao W,Grishkewich N,et al.Synthesis and characterization of pH-responsive and fluorescent poly (amidoamine) dendrimer-grafted cellulose nanocrystals[J].Journal of Colloid and Interface Science,2015,450:101-108.
[13] Li W,Ju B,Zhang S.Novel amphiphilic cellulose nanocrystals for pH-responsive pickering emulsions[J].Carbohydrate Polymers,2020,229:115401.
[14] Pang L,Gao Z,Feng H,et al.Preparation of pH-responsive cellulose derivative with surfactant-property for methyl 1-Naphthylacetate controlled release[J].Industrial Crops and Products,2019,135:57-63.
[15] 许如梦.纤维素基刺激响应高分子材料研究进展[J].高分子通报,2018(8):119-124.
[16] Yang X,Li Z,Liu H,et al.Cellulose-based polymeric emulsifier stabilized poly(N-vinylcaprolactam) hydrogel with temperature and pH responsiveness[J].International Journal of Biological Macromolecules,2020,143:190-199.
[17] Cha R,He Z,Ni Y.Preparation and characterization of thermal/pH-sensitive hydrogel from carboxylated nanocrystalline cellulose[J].Carbohydrate Polymers,2012,88(2):713-718.
[18] Hebeish A,Farag S,Sharaf S,et al.Radically new cellulose nanocomposite hydrogels:temperature and pH responsive characters[J].International Journal of Biological Macromolecules,2015,81:356-361.
[19] Ren G,Zheng X,Gu H,et al.Temperature and CO2 dual-responsive pickering emulsions using jeffamine M2005-modified cellulose nanocrystals[J].Langmuir,2019,35(42):13663-13670.
[20] Ci J,Kang H,Liu C,et al.Thermal sensitivity and protein anti-adsorption of hydroxypropyl cellulose-g-poly(2-(methacryloyloxy) ethyl phosphorylcholine)[J].Carbohydrate Polymers,2017,157:757-765.
[21] Tian Y,Ju B,Zhang S,et al.Thermoresponsive cellulose ether and its flocculation behavior for organic dye removal[J].Carbohydrate Polymers,2016,136:1209-1217.
[22] 杨龙.新型光响应表面活性剂合成及其在纳米材料制备中的应用[D].泉州:华侨大学,2016.
[23] Abdollahi A,Rad J K,Mahdavian A R.Stimuli-responsive cellulose modified by epoxy-functionalized polymer nanoparticles with photochromic and solvatochromic properties[J].Carbohydrate Polymers,2016,150:131-138.
[24] Abousalman-Rezvani Z,Eskandari P,Roghani-Mamaqani H,et al.Grafting light-,temperature,and CO2-responsive copolymers from cellulose nanocrystals by atom transfer radical polymerization for adsorption of nitrate ions[J].Polymer,2019,182:121830.
[25] Li Z,Zhang D,Weng J,et al.Synthesis and characterization of photochromic azobenzene cellulose ethers[J].Carbohydrate Polymers,2014,99:748-754.
[26] Li M,Fu S,Basta A H.Light-induced shape-memory polyurethane composite film containing copper sulfide nanoparticles and modified cellulose nanocrystals[J].Carbohydrate Polymers,2020,230:115676.
[27] 查全文.磁响应表面活性剂的合成及其应用[D].扬州:扬州大学,2016.
[28] He X,Liang C,Liu Q,et al.Magnetically responsive Janus nanoparticles synthesized using cellulosic materials for enhanced phase separation in oily wastewaters and water-in-crude oil emulsions[J].Chemical Engineering Journal,2019,378.
[29] Lizundia E,Maceiras A,Vilas J L,et al.Magnetic cellulose nanocrystal nanocomposites for the development of green functional materials[J].Carbohydrate Polymers,2017,175:425-432.
[30] Low L E,Tan L T,Goh B H,et al.Magnetic cellulose nanocrystal stabilized Pickering emulsions for enhanced bioactive release and human colon cancer therapy[J].International Journal of Biological Macromolecules,2019,127:76-84.
[31] Li P,Kang H,Che N,et al.Synthesis,self-assembly and redox-responsive properties of well-defined hydroxypropyl-cellulose-graft-poly(2-acryloyloxyethyl ferrocenecarboxylate) copolymers[J].Polymer International,2015,64(8):1015-1022.
[32] Liu H,Rong L,Wang B,et al.Facile fabrication of redox/pH dual stimuli responsive cellulose hydrogel[J].Carbohydrate Polymers,2017,176:299-306.
[33] Rahimian K,Wen Y,Oh J K.Redox-responsive cellulose-based thermoresponsive grafted copolymers and in-situ disulfide crosslinked nanogels[J].Polymer,2015,72:387-394.
[34] Li Y,Hou X,Pan Y,et al.Redox-responsive carboxymethyl cellulose hydrogel for adsorption and controlled release of dye[J].European Polymer Journal,2020,123:109447.
[35] Bolla P K,Rodriguez V A,Kalhapure R S,et al.A review on pH and temperature responsive gels and other less explored drug delivery systems[J].Journal of Drug Delivery Science and Technology,2018,46:416-435.
[36] Wen Y F,Oh J K.Intracellular delivery cellulose-based bionanogels with dual temperature/pH-response for cancer therapy[J].Colloids Surfaces B:Biointerfaces,2015,133:246-253.
[37] Fan X,Yang L,Wang T,et al.pH-responsive cellulose-based dual drug-loaded hydrogel for wound dressing[J].European Polymer Journal,2019,121.
[38] Dutta S,Samanta P,Dhara D.Temperature,pH and redox responsive cellulose based hydrogels for protein delivery[J].International Journal of Biological Macromolecules,2016,87:92-100.
[39] Li Z,Yang X,Li W,et al.Stimuli-responsive cellulose paper materials[J].Carbohydrate Polymers,2019,210:350-363.
[40] Mulakkal M C,Trask R S,Ting V P,et al.Responsive cellulose-hydrogel composite ink for 4D printing[J].Materials & Design,2018,160:108-118.
[41] Pang Z,Sun X,Wu X,et al.Fabrication and application of carbon nanotubes/cellulose composite paper[J].Vacuum,2015,122:135-142.
[42] Li J,Liu X,Tomaskovic-crook E,et al.Smart graphene-cellulose paper for 2D or 3D “origami-inspired” human stem cell support and differentiation[J].Colloids Surf B:Biointerfaces,2019,176:87-95.
[43] Chen K,Xu C,Zhou J,et al.Multifunctional fabric coatings with slow-releasing fragrance and UV resistant properties from ethyl cellulose/silica hybrid microcapsules[J].Carbohydrate Polymers,2020,232:115821.
[44] Mao H,Lin L,Ma Z,et al.Dual-responsive cellulose fabric based on reversible acidichromic and photoisomeric polymeric dye containing pendant azobenzene[J].Sensors and Actuators B:Chemical,2018,266:195-203.
[45] Guleria A,Kumari G,Lima E C.Cellulose-g-poly-(acrylamide-co-acrylic acid) polymeric bioadsorbent for the removal of toxic inorganic pollutants from wastewaters[J].Carbohydrate Polymers,2020,228:115396.
[46] Li Y,He Y,Fan Y,et al.Novel dual superlyophobic cellulose membrane for multiple oil/water separation[J].Chemosphere,2020,241:125067.
Options
文章导航

/