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辽宁工程技术大学材料学院,阜新 123000
*刘莹,E-mail: liuyingfx02@126.com
纸质出版日期:2024-05,
收稿日期:2023-10-12,
录用日期:2023-11-27
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张靖羚, 许乃川, 刘莹, 莫丽娟. 羧甲基纤维素基复合水凝胶的研究及应用进展. 高分子通报, 2024, 37(5), 582–592
Zhang, J. L.; Xu, N. C.; Liu, Y.; Mo, L. J. Research and application progress of carboxymethyl cellulose based composite hydrogels. Polym. Bull. (in Chinese), 2024, 37(5), 582–592
张靖羚, 许乃川, 刘莹, 莫丽娟. 羧甲基纤维素基复合水凝胶的研究及应用进展. 高分子通报, 2024, 37(5), 582–592 DOI: 10.14028/j.cnki.1003-3726.2024.23.343.
Zhang, J. L.; Xu, N. C.; Liu, Y.; Mo, L. J. Research and application progress of carboxymethyl cellulose based composite hydrogels. Polym. Bull. (in Chinese), 2024, 37(5), 582–592 DOI: 10.14028/j.cnki.1003-3726.2024.23.343.
羧甲基纤维素复合水凝胶改性性能应用进展
Carboxymethyl celluloseComposite hydrogelModificationPerformanceApplication progress
白忠薛, 王学川, 李佳俊, 冯宇宇, 白波涛, 黄梦晨, 岳欧阳, 刘新华. 生物质基导电水凝胶的研究进展. 材料导报, 2024, 38(4), 22090215.
王硕, 王永贵, 肖泽芳, 谢延军. 生物基水凝胶制备与应用研究进展. 林产化学与工业, 2022, 42(5), 122–136.
陈子健, 唐艳军, 朱鹏, 陈天影, 周益名. 羧甲基纤维素的制备及其应用进展. 中国造纸学报, 2022, 37(3), 144–154.
王惟帅, 杨世琦. 羧甲基纤维素钠制备及改性研究. 合成纤维, 2018, 47(10), 24–30.
姚曜, 孙振炳, 李晓宝, 汤正捷, 李晓平. 羧甲基纤维素复合膜的研究现状. 包装工程, 2022, 43(1), 10–16.
李外, 赵雄虎, 季一辉, 贾佳, 赵武. 羧甲基纤维素制备方法及其生产工艺研究进展. 石油化工, 2013, 42(6), 693–702.
侯萍, 李铭, 马军, 陈冬梅, 樊伟伟. 天然高分子材料水凝胶的制备及其应用进展. 高分子通报, 2022,(8), 29–36.
曹芳语, 黄可欣, 石凤娜, 陈成, 王芳. 天然多糖聚合物在载药水凝胶中的应用研究进展. 高分子通报, 2023, 36(2), 158–171.
Hu, Y.; Hu, S.; Zhang, S. W.; Dong, S. Y.; Hu, J.; Kang, L.; Yang, X. Z.A double-layer hydrogel based on alginate-carboxymethyl cellulose and synthetic polymer as sustained drug delivery system. Sci. Rep., 2021, 11(1), 9142.
郝超月. 羧甲基纤维素钠基水凝胶的制备及其应用. 天津: 天津大学, 2018.
张少飞, 胡文斌, 王都留, 殷晓春, 王荣民, 贾如琰. 环糊精-壳聚糖/羧甲基纤维素水凝胶的制备及其缓释性能研究. 高分子通报, 2021, (4), 43–49.
Zhao, X.; Clifford, A.; Poon, R.; Mathews, R.; Zhitomirsky, I.Carboxymethyl cellulose and composite films prepared by electrophoretic deposition and liquid-liquid particle extraction. Colloid Polym. Sci., 2018, 296(5), 927–934.
Zhu, Y. S.; Xiao, S. Y.; Li, M. X.; Chang, Z.; Wang, F. X.; Gao, J.; Wu, Y. P.Natural macromolecule based carboxymethyl cellulose as a gel polymer electrolyte with adjustable porosity for lithium ion batteries. J. Power Sources, 2015, 288, 368–375.
Kanafi, N. M.; Rahman, N. A.; Rosdi, N. H.Citric acid cross-linking of highly porous carboxymethyl cellulose/poly(ethylene oxide) composite hydrogel films for controlled release applications. Mater. Today Proc., 2019, 7, 721–731.
Azuma, K.; Ifuku, S.; Osaki, T.; Okamoto, Y.; Minami, S.Preparation and biomedical applications of chitin and chitosan nanofibers. J. Biomed. Nanotechnol., 2014, 10(10), 2891–2920.
Dutta, P. K.; Tripathi, S.; Mehrotra, G. K.; Dutta, J.Perspectives for chitosan based antimicrobial films in food applications. Food Chem., 2009, 114(4), 1173–1182.
张润东. 功能性羧甲基纤维素/壳聚糖复合材料的制备及性能的研究. 武汉: 武汉纺织大学, 2019.
Wang, W.; Ni, J. M.; Chen, L. C.; Ai, Z.; Zhao, Y. L.; Song, S. X.Synthesis of carboxymethyl cellulose-chitosan-montmorillonite nanosheets composite hydro-gel for dye effluent remediation. Int. J. Biol. Macromol., 2020, 165, 1–10.
郭小炜, 陈南春, 李玉妍. 壳聚糖/羧甲基纤维素缓释抗菌剂的制备及缓释抗菌性能表征. 广东化工, 2020, 47(8), 5–7.
宋翠芳. 壳聚糖/羧甲基纤维素钠对水体中有机物混凝吸附性能的研究. 包头: 内蒙古科技大学, 2021.
Shahbazi, M.; Ahmadi, S. J.; Seif, A.; Rajabzadeh, G.Carboxymethyl cellulose film modification through surface photo-crosslinking and chemical crosslinking for food packaging applications. Food Hydrocoll., 2016, 61, 378–389.
Nazmi, N. N.; Isa, M. I. N.; Sarbon, N. M.Preparation and characterization of chicken skin gelatin/CMC composite film as compared to bovine gelatin film. Food Biosci., 2017, 19, 149–155.
Nur Hazirah, M. A. S. P.; Isa, M. I. N.; Sarbon, N. M.Effect of xanthan gum on the physical and mechanical properties of gelatin-carboxymethyl cellulose film blends. Food Packag. Shelf Life, 2016, 9, 55–63.
何贝贝. 抑菌/抗氧化羧甲基纤维素-明胶复合膜自组装及其性能的研究. 咸阳: 西北农林科技大学, 2022.
Łupina, K.; Kowalczyk, D.; Lis, M.; Raszkowska-Kaczor, A.; Drozłowska, E.Controlled release of water-soluble astaxanthin from carboxymethyl cellulose/gelatin and octenyl succinic anhydride starch/gelatin blend films. Food Hydrocoll., 2022, 123, 107179.
Zhang, Q. Q.; Yang, W. Y.; Zhang, S. Q.; Tang, J.; Shi, X. Q.; Qin, S.; Pan, L. Q.; Xiao, H. M.Enhancing the applicability of gelatin-carboxymethyl cellulose films by cold plasma modification for the preservation of fruits. LWT, 2023, 178, 114612.
Farshchi, E.; Pirsa, S.; Roufegarinejad, L.; Alizadeh, M.; Rezazad, M.Photocatalytic/biodegradable film based on carboxymethyl cellulose, modified by gelatin and TiO2-Ag nanoparticles. Carbohydr. Polym., 2019, 216, 189–196.
曾建, 李昱, 李锦荣, 陈瑞荣, 平兆华, 马年方. 蔗渣纤维素/羧甲基纤维素钠复合水凝胶的制备与性能研究. 纤维素科学与技术, 2019, 27(4), 40–45.
王晓宇, 张洋, 江华, 王超, 宋宇轩, 周兆兵. 两种方法制备纳米纤维素的特性对比. 林业科技开发, 2015, 29(6), 95–99.
Mandal, A.; Chakrabarty, D.Studies on mechanical, thermal, and barrier properties of carboxymethyl cellulose film highly filled with nanocellulose. J. Thermoplast. Compos. Mater., 2019, 32(7), 995–1014.
康星雅, 贺艺美, 丁艳红, 王保营, 王麟, 孙佩佩. 纤维素纳米晶/羧甲基纤维素复合膜的制备及性能. 纤维素科学与技术, 2020, 28(3), 32–38.
Farshi, P.; Salarian, R.; Rabiee, M.; Alizadeh, S.; Gholipourmalekabadi, M.; Ahmadi, S.; Rabiee, N.Design, preparation, and characterization of silk fibroin/carboxymethyl cellulose wound dressing for skin tissue regeneration applications. Polym. Eng. Sci., 2022, 62(9), 2741–2749.
王柳芳. 基于两性离子聚合物构建的粘附水凝胶制备及性能研究. 上海:华东理工大学, 2019.
肖遥, 郭稚弧, 谭晓明, 邓皓. 天然单宁改性水处理剂的制备及应用. 工业水处理, 1998, 18(3), 22–24.
张超, 吴力立. 单宁交联聚氨酯水凝胶的制备与性能研究. 塑料科技, 2018, 46(9), 35–39.
金绍娣, 顾东雅. 单宁/羧甲基纤维素水凝胶的制备及吸附性能. 印染助剂, 2019, 36(12), 21–24.
Koneru, A.; Dharmalingam, K.; Anandalakshmi, R.Cellulose based nanocomposite hydrogel films consisting of sodium carboxymethylcellulose-grapefruit seed extract nanoparticles for potential wound healing applications. Int. J. Biol. Macromol., 2020, 148, 833–842.
冯永莉, 杨晨, 零春甜, 杨振东, 汪建明, 郑志强. 桑葚花青素共混羧甲基纤维素膜的性能研究及应用. 食品研究与开发, 2021, 42(13), 1–8.
Batool, N.; Sarfraz, R. M.; Mahmood, A.; Rehman, U.; Zaman, M.; Akbar, S.; Almasri, D. M.; Gad, H. A.Development and evaluation of cellulose derivative and pectin based swellable pH responsive hydrogel network for controlled delivery of cytarabine. Gels, 2023, 9(1), 60.
杨钗, 王璇, 刘祚杓, 雷宏刚, 宋立美. 羧甲基纤维素/聚(N-异丙基丙烯酰胺)温敏水凝胶的制备和性能研究. 化学工程与装备, 2022,(7), 12–14.
张一昆. 羧甲基纤维素/丙烯酰胺双组分紫外光致变色水凝胶的制备及性能研究. 哈尔滨: 东北林业大学, 2022.
Pourmadadi, M.; Darvishan, S.; Abdouss, M.; Yazdian, F.; Rahdar, A.; Díez-Pascual, A. M.pH-Responsive polyacrylic acid (PAA)-carboxymethyl cellulose (CMC) hydrogel incorporating halloysite nanotubes (HNT) for controlled curcumin delivery. Ind. Crops Prod., 2023, 197, 116654.
Ashames, A.; Pervaiz, F.; Al-Tabakha, M.; Khalid, K.; Hassan, N.; Shoukat, H.; Buabeid, M.; Murtaza, G.Synthesis of cross-linked carboxymethyl cellulose and poly(2-acrylamido-2-methylpropane sulfonic acid) hydro-gel for sustained drug release optimized by Box-Behnken design. J. Saudi Chem. Soc., 2022, 26(6), 101541.
Slaughter, B. V.; Khurshid, S. S.; Fisher, O. Z.; Kha-demhosseini, A.; Peppas, N. A.Hydrogels in regenerative medicine. Adv. Mater., 2009, 21(32-33), 3307–3329.
Chung, H. J.; Park, T. G.Self-assembled and nanostructured hydrogels for drug delivery and tissue engineering. Nano Today, 2009, 4(5), 429–437.
Yadollahi, M.; Gholamali, I.; Namazi, H.; Aghazadeh, M.Synthesis and characterization of antibacterial carboxymethyl cellulose/ZnO nanocomposite hydrogels. Int. J. Biol. Macromol., 2015, 74, 136–141.
Priyadarshi, R.; Kumar, B.; Rhim, J. W.Green and facile synthesis of carboxymethylcellulose/ZnO nano-composite hydrogels crosslinked with Zn2+ ions. Int. J. Biol. Macromol., 2020, 162, 229–235.
Rakhshaei, R.; Namazi, H.A potential bioactive wound dressing based on carboxymethyl cellulose/ZnO impregnated MCM-41 nanocomposite hydrogel. Mater. Sci. Eng. C, 2017, 73, 456–464.
覃海明, 方亮晶, 赵丽红, 钱丽颖. 羧甲基纤维素/聚苯胺复合凝胶球的制备及性能. 造纸科学与技术, 2017, 36(5), 26–31.
Spiridonov, V. V.; Liu, X. Y.; Zezin, S. B.; Panova, I. G.; Sybachin, A. V.; Yaroslavov, A. A.Hybrid nano-composites of carboxymethylcellulose cross-linked by in-situ formed Cu2O nanoparticles for photocatalytic applications. J. Organomet. Chem., 2020, 914, 121180.
Li, Y. Q.; Pan, G. Q.; Wang, Q. H.; Jiao, H. Y.; Hu, K. F.; Wang, T. M.Preparation and properties of organically modified montmorillonite/nitrile rubber nanocomposites. J. Macromol. Sci. Part B, 2013, 52(4), 561–573.
Zhu, S. J.; Zhang, J. H.; Qiao, C. Y.; Tang, S. J.; Li, Y. F.; Yuan, W. J.; Li, B.; Tian, L.; Liu, F.; Hu, R.; Gao, H. N.; Wei, H. T.; Zhang, H.; Sun, H. C.; Yang, B.Strongly green-photoluminescent graphene quantum dots for bioimaging applications. Chem. Commun., 2011, 47(24), 6858–6860.
Sun, H. J.; Wu, L.; Wei, W. L.; Qu, X. G.Recent advances in graphene quantum dots for sensing. Mater. Today, 2013, 16(11), 433–442.
Zhu, S. J.; Tang, S. J.; Zhang, J. H.; Yang, B.Control the size and surface chemistry of graphene for the rising fluorescent materials. Chem. Commun., 2012, 48(38), 4527–4539.
Wang, D.; Chen, J. F.; Dai, L. M.Recent advances in graphene quantum dots for fluorescence bioimaging from cells through tissues to animals. Part. Part. Syst. Charact., 2015, 32(5), 515–523.
Chen, C. X.; Gan, Z. Y.; Zhou, K.; Ma, Z.; Liu, Y. Q.; Gao, Y. H.Catalytic polymerization of N-methylthionine at electrochemically reduced graphene oxide electrodes. Electrochim. Acta, 2018, 283, 1649–1659.
Liu, Y. Q.; Song, N. N.; Ma, Z.; Zhou, K.; Gan, Z. Y.; Gao, Y. H.; Tang, S.; Chen, C. X.Synthesis of a poly(N-methylthionine)/reduced graphene oxide nanocomposite for the detection of hydroquinone. Mater. Chem. Phys., 2019, 223, 548–556.
Javanbakht, S.; Namazi, H.Solid state photolumin-escence thermoplastic starch film containing graphene quantum dots. Carbohydr. Polym., 2017, 176, 220–226.
Pooresmaeil, M.; Namazi, H.Preparation and chara-cterization of polyvinyl alcohol/β-cyclodextrin/GO-Ag nanocomposite with improved antibacterial and strength properties. Polym. Adv. Technol., 2019, 30(2), 447–456.
Pooresmaeil, M.; Namazi, H.β-Cyclodextrin grafted magnetic graphene oxide applicable as cancer drug delivery agent: synthesis and characterization. Mater. Chem. Phys., 2018, 218, 62–69.
Rakhshaei, R.; Namazi, H.; Hamishehkar, H.; Rahimi, M.Graphene quantum dot cross-linked carboxymethyl cellulose nanocomposite hydrogel for pH-sensitive oral anticancer drug delivery with potential bioimaging properties. Int. J. Biol. Macromol., 2020, 150, 1121–1129.
袁定坤, 褚维凡, 倪加惠. 亚铁氰化铜-聚丙烯酰胺/羧甲基纤维素/石墨烯复合水凝胶的制备及铷吸附性能. 应用化学, 2022, 39(11), 1746–1756.
Ghafori Gorab, M.; Aliabadi, H. A. M.; Kashtiaray, A.; Mahdavi, M.; Bani, M. S.; Etminan, A.; Salehpour, N.; Eivazzadeh-Keihan, R.; Maleki, A.Decoration of graphene oxide nanosheets with carboxymethylcellulose hydrogel, silk fibroin and magnetic nanoparticles for biomedical and hyperthermia applications. Nanoscale Adv., 2023, 5(1), 153–159.
Javanbakht, S.; Namazi, H.Doxorubicin loaded carboxymethyl cellulose/graphene quantum dot nano-composite hydrogel films as a potential anticancer drug delivery system. Mater. Sci. Eng. C, 2018, 87, 50–59.
卢健康, 汪争先, 吴称意, 韩昆仑, 李婷婷, 王鹏婷. 膨润土/羧甲基纤维素钠水凝胶的制备及其应用. 精细化工, 2022, 39(7), 1376–1385.
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