Page 117 - 《精细化工》2022年第11期
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第 11 期                张群利,等:  鱼鳞明胶/壳聚糖/薰衣草精油抗菌复合膜的制备及性能                                 ·2267·


                 edible films[J]. Journal of Chinese Institute of  Food  Science and   properties of fish gelatin composite films[J]. Food and Fermentation
                 Technology (中国食品学报), 2021, 21(12): 369-378.       Industries (食品与发酵工业), 2020, 46(20): 33-39.
            [13]  JIN  W G (金文刚), SHANG M J (尚美君), LIU  Y (刘洋),  et al.   [22]  WANG  M R (王梦如),  QIAO H Y  (乔海颜), KE M  Y (柯梦雨),
                 Effects of tannin acid and rutin on gelling characteristics of chum   et al. The antibacterial effect of plant-originated essential oils  on
                 salmon skin gelatin[J]. Food and Fermentation Industries (食品与发  food preservation and its application  on packaging[J]. Science  and
                 酵工业), 2022, 48(3): 123-129.                       Technology of Food Industry (食品工业科技), 2022, 43(7): 439-444.
            [14]  YU S C (于淑池), LAI Z H (赖卓慧). Study on extraction technology   [23]  SONG L L (宋琳璐), SHAN M Y (单梦圆), TAGN Y (唐艳), et al.
                 and properties of  gelatin from golden pompano bones[J]. Food   Study on the function of orange essential oil in optimizing fish scale
                 Research and Development (食品研究与开发), 2020, 41(3): 159-165.   gelatin films[J]. Science and Technology of Food Industry (食品工业
            [15]  ZHANG J L (张金丽), CHEN Z H (陈子和), CHEN Y T (陈燕婷),   科技), 2018, 39(11): 240-247.
                 et al. Preparation and properties of nanoparticles modified fish scale   [24]  SHAO D X (邵东旭),  WANG H (王卉), PEI Z S (裴志胜),  et al.
                 gelatin-agar composite films silver[J]. Fine Chemicals (精细化工),   Tilapia preservation by composite antibacterial film with  fish-scale
                 2020, 37(12): 2496-2503, 2509.                    collagen[J]. Packaging Engineering (包装工程), 2016, 37(23): 73-77.
            [16]  FU B F, MEI S S, SU X J, et al. Integrating waste fish scale-derived   [25]  CHEN P (陈萍), LIU B (刘兵), FU J H (符继红). Study on the
                 gelatin and chitosan into edible nanocomposite film for perishable   composition-activity relationship of the antioxidant active component
                 fruits[J]. International Journal of Biological Macromolecules, 2021,   in essential oil of  lavandula angustifolia from Xinjiang[J].  China
                 191: 1164-1174.                                   Pharmacy (中国药房), 2021, 32(12): 1460-1465.
            [17] YAO  L  (姚磊). Effect of edible fish-scale gelatin films with the   [26]  HAN  X P (韩翔鹏), HE M S (何美珊),  WU J S (吴金松). The
                 addition of rosemary extracts and phytic acid on the preservation of   elimination effects of lavender essential oil on Vibrio parahaemolyticus
                 crucian carp (Carassius carassius)[J]. China Food Additives (中国食  biofilms developed at different temperatures[J]. Food and Fermentation
                 品添加剂), 2019, 30(7): 180-186.                      Industries (食品与发酵工业), DOI: 10.13995/j.cnki.11-1802/ts.029601.
            [18]  ZHANG J L (张金丽), CHEN Z H (陈子和), CHEN Y T (陈燕婷),   [27]  ZHANG Y B (张赟彬), WANG J W (王景文), LI  Y X (李月霞),
                 et al. Effect of fish scale gelatin-agar composite film incorporated   et al. Improvement of  physical and mechanical properties of
                 with silver nanoparticles on preservation quality of loquat fruits[J].   chitosan-based food packaging films by incorporating lavender
                 Journal of Jimei University (Natural Science) (集美大学学报:自然  essential oil[J]. Transactions of the Chinese Society of Agricultural
                 科学版), 2020, 25(6): 411-419.                       Engineering, 2014, 30(2): 286-292.
            [19]  SHAN M Y (单梦圆), SONG L L (宋琳璐), HU Q J (胡奇杰), et al.   [28]  CHENG  Y Q (程宇勤), QI Z X (齐子修), MA C (马成),  et al.
                 Effect of fish scale gelatin-based films on the preservation of fresh   Properties of functional fish skin gelatin composite film[J].  China
                 tuna meat[J]. Journal of Nuclear Agricultural Sciences (核农学报),   Food Additives (中国食品添加剂), 2021, (10): 59-66.
                 2019, 33(6): 1137-1145.                       [29]  LI Y H (李宜航), TANG W L (唐文力). Study on optimal conditions
            [20]  LI Z J (李占君), ZHANG  Z H (张志环), ZHANG H  L  (张厚良),   for extracting fish scale gelatin by hot water method[J]. Guangzhou
                 et al. Study on extraction process of essential oil from  perilla   Chemical Industry (广州化工), 2021, 49(11): 67-69.
                 frutescens and its fatty acid composition[J]. Forest Engineering (森林  [30]  YANG P P (杨萍萍), GUO S Q (郭思琪), HOU W F (侯温甫), et al.
                 工程), 2019, 35(1): 36-41.                          Antibacterial of  ε-poly-L-lysine/polyvinyl alcohol composite film
            [21]  LI X (李鑫), TU Z C (涂宗财), SHA X M (沙小梅), et al. Effects of   and its  preservation effect on fresh  duck meat[J].  Modern Food
                 adding different essential oils on antimicrobial activity and physical   Science and Technology (现代食品科技), 2020, 36(3): 113-119, 98.




            (上接第 2224 页)                                           embedded in carbon nanotubes arrays as bifunctional catalysts for
            [59]  XU Y, YAN Y, HE T, et al. Supercritical CO 2-assisted synthesis of   efficient  overall water splitting[J]. Materials Today Nano, 2019,  8:
                 NiFe 2O 4/vertically-aligned carbon nanotube arrays hybrid as a   100053.
                 bifunctional electrocatalyst for efficient overall water splitting[J].   [66]  LIU B Y, ZHANG T, HAN X B, et al. Atomically dispersed Ni(Ⅰ)
                 Carbon, 2019, 145: 201-208.                       on alloy-capsulated nitrogen-doped carbon nanotube array for high-
            [60]  GENG B, YAN F, LIU  L N,  et al. Ni/MoC  heteronanoparticles   performance electrochemical CO 2 reduction reaction[J]. Angewandte
                 encapsulated within nitrogen-doped carbon nanotube arrays as highly   Chemie International Edition, 2020, 59: 12055-12061.
                 efficient self-supported electrodes for overall water splitting[J].   [67]  YANG Y, LI M X, ZHU Z W. A novel electrochemical sensor based
                 Chemical Engineering Journal, 2020, 406: 126815.     on carbon nanotubes array for selective detection of dopamine or uric
            [61]  ZHANG M Y, HU A P, ZHENG L, et al. Synergistic effect of three-   acid[J]. Talanta, 2019, 201: 295-300.
                 dimensional cobalt diselenide/carbon nanotube arrays composites for   [68]  ZHU H,  CHANG F X, ZHU Z W. The fabrication  of carbon
                 enhanced hydrogen evolution reaction[J]. Electrochimica Acta, 2018,   nanotubes  array-based  electrochemical  chiral  sensor  by
                 285: 254-261.                                     electrosynthesis[J]. Talanta, 2017, 166: 70-74.
            [62]  YANG L J, LI H, YU Y, et al. Assembled 3D MOF on 2D nanosheets   [69]  LI X, HUANG W, YAO G,  et al. Highly sensitive flexible tactile
                 for  self-boosting catalytic synthesis of N-doped carbon  nanotube   sensors based  on microstructured multiwall carbon nanotube
                 encapsulated metallic Co electrocatalysts for overall water   arrays[J]. Scripta Materialia, 2017, 129: 61-64.
                 splitting[J]. Applied Catalysis B: Environmental, 2020, 271: 118939.     [70]  ZHOU S H, XU H B, LIU J Y, et al. Simplified synthesis of N-doped
            [63]  REN S S, DUAN X D, GE F Y, et al. Trimetal-based N-doped carbon   carbon nanotube arrayed  mesoporous carbon for electrochemical
                 nanotubes arrays on Ni foams as  self-supported electrodes for   detection of amitrole[J]. Chemical Physics, 2021, 542: 111074.
                 hydrogen/oxygen evolution reactions and water splitting[J]. Journal   [71]  YANG M Q, WANG H, LIU P, et al. A 3D electrochemical biosensor
                 of Power Sources, 2020, 480: 228866.              based on super-aligned carbon nanotube array for point-of-care uric
            [64]  GUO M R, QAYUM A, DONG S, et al. In situ conversion of metal   acid monitoring[J]. Biosensors & Bioelectronics, 2021, 179: 113082.
                 (Ni, Co or Fe) foams into metal sulfide (Ni 3S 2, Co 9S 8 or FeS) foams   [72]  ZHANG  Y, XIAO J, SUN  Y M,  et al. Flexible nanohybrid
                 with surface grown N-doped carbon nanotube arrays as efficient   microelectrode based on carbon fiber wrapped by gold nanoparticles
                 superaerophobic electrocatalysts for overall water splitting[J].   decorated nitrogen doped carbon nanotube arrays:  In situ
                 Journal of Materials Chemistry A, 2020, 8(18): 9239-9247.     electrochemical detection in live cancer  cells[J]. Biosensors and
            [65]  BIAN J  L, SONG Z Y, ZHANG Y  Z,  et al.  NiCoP nanopeapods   Bioelectronics, 2018, 100: 453-461.
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