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progress on the impact and degradation of herbicide 2,4-D in the [18] LIU C L (刘长令). New progress in the development of fluorine-
environment[J]. Shandong Chemical Industry (山东化工), 2022, containing pesticides[J]. Fine and Specialty Chemicals (精细与专用
51(12): 68-72. 化学品), 2000(6): 3-6.
[11] QURRATU A, REEHAN A. A review of 2,4-dichlorophenoxyacetic [19] HUANG Z H, GUO X Y, XIONG L T, et al. A versatile triazole
acid (2,4-D) derivatives: 2,4-D dimethylamine salt and 2,4-D butyl selenoureas against pests, fungi, and weeds[J]. ACS Agricultural
ester[J]. International Journal of Applied Engineering Research, Science & Technology, 2022, 2: 754-760.
2016, 1: 9946-9955. [20] GUO X Y, HUANG Z H, XIONG L T, et al. Azole selenoureas
[12] WANG Z C, WANG Y Y, GONG F F, et al. Biodegradation of disrupt the midgut and cause malformed development of plutella
carbendazim by a novel actinobacterium Rhodococcus jialingiae xylostella[J]. Journal of Integrative Agriculture, 2022, 4(22): 2-14.
djl-6-2[J]. Chemosphere, 2010, 81(5): 639-644. [21] LIU C L (刘长令). Ways to create fluorine-containing pesticides[J].
[13] LI H B, LI J, HOU C T, et al. A sub-nanomole level electrochemical Pesticide (农药), 1998(8): 3-7, 19.
method for determination of prochloraz and its metabolites based on medical [22] SONG X J (宋新建), SHAO Y (邵宇), YANG P (杨平), et al.
stone doped disposable electrode[J]. Talanta, 2010, 83(2): 591-595. Synthesis and biological activity of fluorinated 1,3,4-thiadiazolylureas[J].
[14] DAI S G (戴树桂). Environmental Chemistry[M]. Beijing: Higher Fine Chemicals (精细化工), 2012, 29(3): 290-293.
Education Press (高等教育出版社), 1997. [23] WANG D X (王大翔). The important role of heterocyclic compounds
[15] XU W (徐玮). Study on the control effect of imidazole sulfate on in the development of pesticides[J]. Pesticide (农药), 1995, (1): 6-9.
citrus diseases during the fresh-keeping period[D]. Ya'an: Sichuan [24] LIU T (刘婷), TIAN H K (田辉凯), TONG Y L (童益利), et al.
Agricultural University (四川农业大学), 2019. Research progress of pyrazole formamide pesticides[J]. Modern
[16] ZHAN J S (詹家绥), WU E J (吴娥娇), LIU X L (刘西莉), et al. Agrochemicals (现代农药), 2009(6): 5-13.
Molecular mechanism of resistance of plant pathogenic fungi to [25] TANG R Y, LI G, YU J Q. Conformation-induced remote meta-C—H
several important unit point fungicides[J]. Scientia Agricultura Sinica activation of amines[J]. Nature, 2014, 507(7491): 215-220.
(中国农业科学), 2014, 47(17): 3392-3404. [26] XIE Y Y (谢昀烨), WANG L P (王连平), FANG L (方丽), et al.
[17] REN Z H (任志华). Study on the residue of 2,4-D in citrus fruit and Compared the sensitivity of four fungicides to strawberry gray mold
its fresh-keeping effect[D]. Guangzhou: South China Normal University, in different regions of Zhejiang province[J]. Pesticide (农药), 2017,
(华南师范大学), 2005. 56(2): 135-137.
(上接第 2608 页) a self-segregated carbon nanotube (CNT)/polydimethylsiloxane (PDMS)
[56] GUO R Y (郭茹月), BAO Y (鲍艳). Research progress on wearable coating[J]. Progress in Natural Science: Materials International,
piezoresistive strain sensors based on two-dimensional conductive 2022, 32(1): 34-42.
materials/flexible polymer composites[J]. Fine Chemicals (精细化 [59] CHENG H N, YANG C, ZHANG N Y, et al. High-performance
工), 2021, 38(4): 649-661. pressure/strain sensors featuring a conductive network constructed
[57] XIA P P, LIU P, WU S G, et al. Highly stretchable and sensitive from c-MWCNTs and nanospheres for human activity monitoring[J].
flexible resistive strain sensor based on waterborne polyurethane Journal of Materials Chemistry C, 2022, 10(32): 11755-11766.
polymer for wearable electronics[J]. Composites Science and [60] DING Y C, XU T, ONYILAGHA O, et al. Recent advances in
Technology, 2022, 221: 109355. flexible and wearable pressure sensors based on piezoresistive 3D
[58] LIU L B, ZHANG X Z, XIANG D, et al. Highly stretchable, monolithic conductive sponges[J]. ACS Applied Materials &
sensitive and wide linear responsive fabric-based strain sensors with Interfaces, 2019, 11(7): 6685-6704.
(上接第 2681 页) 4-aminobenzoic acid modified interlayer and polysulfides for
lithium-sulfur batteries[J]. Carbon, 2019, 155(C): 553-561.
[16] HUANG X, ZHANG K, LUO B, et al. Polyethylenimine expanded [20] YAN L L, GAO X G, WAHID P F, et al. A novel epoxy resin-based
cathode binder for low cost, long cycling life, and high-energy
graphite oxide enables high sulfur loading and long-term stability of lithium-sulfur batteries[J]. Journal of Materials Chemistry A, 2018,
lithium-sulfur batteries [J]. Small, 2019, 15(29): e1804578.
[17] YI H (易欢). Aqueous-processable polymer binders for cathode of 6(29): 14315-14323.
lithium sulfur batteries [D]. Guangzhou: South China University of [21] KWOK C Y, PANG Q, WORKU A, et al. Impact of the mechanical
Technology (华南理工大学), 2018. properties of a functionalized cross-linked binder on the longevity of
[18] DING Y Y (丁阳阳). The properties and application of sodium Li-S batteries[J]. ACS Applied Materials & Interfaces, 2019, 11(25):
alginate in aqueous zinc ion batteries[D]. Changchun: Changchun 22481-22491.
University of Technology (长春工业大学), 2021. [22] SHEN X W, XU N, LIU X J, et al. Strongly trapping soluble lithium
[19] SORACHA K, NATTAPOL M, SALATAN D, et al. Strong polysulfides using polar cysteamine groups for highly stable lithium
cooperative interaction of lithium and hydrogen bonds between sulfur batteries[J]. Nanotechnology, 2020, 31(48): 485403.
(上接第 2713 页) [23] WALL G, MONTELONGO J D, BONIFACIO B V, et al. Candida
[22] LIU R (刘芮), ZHANG W C (张文成). Antibacterial activity and albicans biofilm growth and dispersal: Contributions to pathogenesis[J].
mechanism of flavonoids from Ginkgo biloba L.[J]. Food Research Current Opinion in Microbiology, 2019, 52: 1-6.
and Development (食品研究与开发), 2022, 43(24): 73-79. [24] GAO Y (高原), JI Y B (季宇彬), QU Y (曲颖), et al. Study on
[22] VAVALA E, COLONE M, PASSARIELLO C, et al. Characterization inhibition of Candida albicans and its biofilm formation by eugenol
of biofilms in drug-sensitive and drug-resistant strains of Candida [J]. Chinese Archives of Traditional Chinese Medicine (中华中医药
albicans[J]. Journal of Chemotherapy, 2013, 25(2): 87-95. 学刊), 2021, 39(11): 80-83,262.