[1] Lam S J,Wong E H,Boyer C,et al.Antimicrobial polymeric nanoparticles[J].Progress in Polymer Science,2018,76:40-64.
[2] Wang Y,Yang Y,Shi Y,et al.Antibiotic-free antibacterial strategies enabled by nanomaterials:progress and perspectives[J].Advanced Materials,2020,32(18):1904106.
[3] Pan Y,Xiao H,Cai P,et al.Cellulose fibers modified with nano-sized antimicrobial polymer latex for pathogen deactivation[J].Carbohydrate Polymers,2016,135:94-100.
[4] He X,Wu H,Wang Y,et al.Bimodal antimicrobial surfaces of phytic acid-prussian blue nanoparticles-cationic polymer networks[J].Advanced Science,2023,10(16):2300354.
[5] Yuan T,Zeng J,Wang B,et al.Silver nanoparticles immobilized on cellulose nanofibrils for starch-based nanocomposites with high antibacterial,biocompatible,and mechanical properties[J].Cellulose,2021,28(2):855-869.
[6] Chen W,Yu H,Lee S Y,et al.Nanocellulose:a promising nanomaterial for advanced electrochemical energy storage[J].Chemical Society Reviews,2018,47(8):2837-2872.
[7] Solhi L,Guccini V,Heise K,et al.Understanding nanocellulose-water interactions:turning a detriment into an asset[J].Chemical Reviews,2023,123(5):1925-2015.
[8] Shahriari-Khalaji M,Li G,Liu L,et al.A poly-l-lysine-bonded TEMPO-oxidized bacterial nanocellulose-based antibacterial dressing for infected wound treatment[J].Carbohydrate Polymers,2022,287:119266.
[9] Xu H,Liu D,Song Y,et al.Ultra-sensitive and flexible electronic skin from nanocellulose/AgNWs hydrogel films with highly transparent,antibacterial and electromagnetic shielding properties[J].Composites Science and Technology,2022,228:109679.
[10] Pawcenis D,Chlebda D K,Jędrzejczyk R J,et al.Preparation of silver nanoparticles using different fractions of TEMPO-oxidized nanocellulose[J].European Polymer Journal,2019,116:242-255.
[11] Wang Q,Yao Q,Liu J,et al.Processing nanocellulose to bulk materials:a review[J].Cellulose,2019,26(13/14):7585-7617.
[12] Alvarado D R,Argyropoulos D S,Scholle F,et al.A facile strategy for photoactive nanocellulose-based antimicrobial materials[J].Green Chemistry,2019,24:3424-3435.
[13] Saini S,Yücel Falco C,Belgacem M N,et al.Surface cationized cellulose nanofibrils for the production of contact active antimicrobial surfaces[J].Carbohydrate Polymers,2016,135:239-247.
[14] Wang W,Qin C,Li W,et al.Design of antibacterial cellulose nanofibril film by the incorporation of guanidine-attached lignin nanoparticles[J].Cellulose,2022,29(6):3439-3451.
[15] Wu Z,Deng W,Luo J,et al.Multifunctional nano-cellulose composite films with grape seed extracts and immobilized silver nanoparticles[J].Carbohydrate Polymers,2019,205:447-455.
[16] Dhanalakshmi A,Palanimurugan A,Natarajan B.Enhanced antibacterial effect using carbohydrates biotemplate of ZnO nano thin films[J].Carbohydrate Polymers,2017,168:191-200.
[17] 隋思瑶,马佳佳,陆皓茜,等.纳米二氧化钛抗菌防雾膜的制备表征及对草莓的保鲜效果[J].农业工程学报,2019,35(5):302-310.
[18] 陈茹,李帅,陈泽帅.PVA/海藻酸钠/TiO2纳米纤维膜的制备及其抗菌性能[J].上海纺织科技,2023,51(2):57-61.
[19] Yusof N A A,Zain N M,Pauzi N.Synthesis of ZnO nanoparticles with chitosan as stabilizing agent and their antibacterial properties against gram-positive and gram-negative bacteria[J].International Journal of Biological Macromolecules,2019,124:1132-1136.
[20] Sharma R K,Ghose R.Synthesis of zinc oxide nanoparticles by homogeneous precipitation method and its application in antifungal activity against candida albicans[J].Ceramics International,2015,41(1):967-975.
[21] Amjadi S,Emaminia S,Heyat Davudian S,et al.Preparation and characterization of gelatin-based nanocomposite containing chitosan nanofiber and ZnO nanoparticles[J].Carbohydrate Polymers,2019,216:376-384.
[22] Baek S K,Song K B.Development of gracilaria vermiculophylla extract films containing zinc oxide nanoparticles and their application in smoked salmon packaging[J].LWT-Food Science and Technology,2018,89:269-275.
[23] Koushesh Saba M,Amini R.Nano-ZnO/carboxymethyl cellulose-based active coating impact on ready-to-use pomegranate during cold storage[J].Food Chemistry,2017,232:721-726.
[24] Noshirvani N,Ghanbarzadeh B,Mokarram R R,et al.Preparation and characterization of active emulsified films based on chitosan-carboxymethyl cellulose containing zinc oxide nano particles[J].International Journal of Biological Macromolecules,2017,99:530-538.
[25] 康星雅,丁艳红,白静一,等.纳米ZnO/纤维素纳米晶/聚乙烯醇复合膜的制备及性能[J].塑料,2023,52(2):6-9;55.
[26] Lefatshe K,Muiva C M,Kebaabetswe L P.Extraction of nanocellulose and in-situ casting of ZnO/cellulose nanocomposite with enhanced photocatalytic and antibacterial activity[J].Carbohydrate Polymers,2017,164:301-308.
[27] Sun H,Ji T,Zhou X,et al.Mechanically strong,transparent,and biodegradable wood-derived film[J].Materials Chemistry Frontiers,2021,5(21):7903-7909.
[28] Piao X,Li J,Zhao Y,et al.Oxidized cellulose nanofibrils-based surimi gel enhancing additives:interactions,performance and mechanisms[J].Food Hydrocolloids,2022,133:107893.
[29] Yu H Y,Chen G Y,Wang Y B,et al.A facile one-pot route for preparing cellulose nanocrystal/zinc oxide nanohybrids with high antibacterial and photocatalytic activity[J].Cellulose,2015,22(1):261-273.
[30] Oun A A,Rhim J W.Preparation of multifunctional chitin nanowhiskers/ZnO-Ag NPs and their effect on the properties of carboxymethyl cellulose-based nanocomposite film[J].Carbohydrate Polymers,2017,169:467-479.
[31] Kumar S,Krishnakumar B,Sobral A J,et al.Bio-based (chitosan/PVA/ZnO) nanocomposites film:thermally stable and photoluminescence material for removal of organic dye[J].Carbohydrate Polymers,2019,205:559-564.
[32] Shao H,Zhang Y,Pan H,et al.Preparation of flexible and UV-blocking films from lignin-containing cellulose incorporated with tea polyphenol/citric acid[J].International Journal of Biological Macromolecules,2022,207:917-926.
[33] Ko H U,John A,Mun S,et al.Preparation and characterization of Cellulose-ZnO nanolayer film by blending method[J].Macromolecular Research,2015,23(9):814-818.
[34] Kanmani P,Rhim J W.Properties and characterization of bionanocomposite films prepared with various biopolymers and ZnO nanoparticles[J].Carbohydrate Polymers,2014,106:190-199.
[35] 王宝川,陈士军,张萍波,等.不同粒径氧化锌以及改性纳米氧化锌对多功能PBAT复合膜的影响[J].中国塑料,2023,37(4):11-16.
[36] Li J,Zhuang S.Antibacterial activity of chitosan and its deri-vatives and their interaction mechanism with bacteria:current state and perspectives[J].European Polymer Journal,2020,138:109984.