[1] | Stelinski L L,Miller J R,Rogers M E.Mating Disruption of Citrus Leafminer Mediated by a Noncompetitive Mechanism at a Remarkably Low Pheromone Release Rate[J]. J Chem Ecol,2008,34(8):1107-1113. | [2] | Andersson J,Borgkarlson A K,Vongvanich N,et al. Male Sex Pheromone Release and Female Mate Choice in a Butterfly[J]. J Exp Biol,2007,210(6):964-970. | [3] | Damberger F F,Ishida Y,Leal W S,et al. Structural Basis of Ligand Binding and Release in Insect Pheromone-Binding Proteins:NMR Structure of Antheraea polyphemus PBP1 at pH 4.5[J]. J Mol Biol,2007,373(4):811-819. | [4] | Bradley S J,Suckling D M,Mcnaughton K G,et al. A Temperature-Dependent Model for Predicting Release Rates of Pheromone from a Polyethylene Tubing Dispenser[J]. J Chem Ecol,1995,21(6):745-760. | [5] | Jadhav S R,Chiou B S,Wood D F,et al. Molecular Gels-Based Controlled Release Devices for Pheromones[J]. Soft Matter,2011,7(3):864-867. | [6] | Herlekar I.Using Nanotechnology to Control Pests:Trapping Fruit Fly Using Pheromone Gels[J]. Sci India,2014,106(2):14-15 | [7] | Fernandes M J G,Gonçalves M S T,Costa S P G. Photorelease of Amino Acid Neurotransmitters from Pyrenylmethyl Ester Conjugates[J]. Tertahedron,2007,63(41):10133-10139. | [8] | Wadl P A,Williams L H,Harris-Shultz K R,et al. Method for DNA Isolation From Sweetpotato Weevil(Coleoptera:Curculionidae) Collected in Pheromone-Baited Traps[J]. J Econ Entomol,2019,112(2):1001-1003. | [9] | Ke F,Guo F,Yu J,et al. Highly Site-Selective Epoxidation of Polyene Catalyzed by Metal Organic Frameworks Assisted by Polyoxometalate[J]. J Inorg Organomet P,2017,27(4):1-7. | [10] | Weatherston I,Miller D,Lavoiedornik J .Capillaries as Controlled Release Devices for Insect Pheromones and Other Volatile Substances-A Reevaluation:Part II.Predicting Release Rates from Celcon and Teflon Capillaries[J]. J Chem Ecol,1985,11(8):967-978. | [11] | HAN Guozhi,YAN Li,GENG Jian,et al. Preparation of a Kind of Polymer Fiber with Pest Control Effect Based on Pheromone Sustained Release[P]. 2018,201811010888.1(in Chinese). 韩国志,严力,耿见,等.一种基于信息素缓释的具有防虫功效的高分子纤维制备方法[P]. 2018,201811010888.1 | [12] | Mafra-Neto A,Lame F M D,Fettig C J. Manipulation of Insect Behavior with Specialized Pheromone and Lure Application Technology[J]. ACS Symp Ser,2013,1141(4):31-58. | [13] | Onufrieva K,Thorpe K,Hickman A,et al. Persistence of the Gypsy Moth Pheromone, Disparlure, in the Environment in Various Climates[J]. Insects,2013,4(1):104-116. | [14] | Stelinski L,Vogel K,Gut L,et al. Seconds-Long Preexposures to Pheromone from Rubber Septum or Polyethelene Tube Dispensers Alters Subsequent Behavioral Responses of Male Grapholita molesta(Lepidoptera:Tortricidae) in a Sustained-Flight Tunnel[J]. Environ Entomol,2005,34(3):696-704. | [15] | Higbee B S,Burks C S,Larsen T E.Demonstration and Characterization of a Persistent Pheromone Lure for the Navel Orangeworm, Amyelois transitella(Lepidoptera:Pyralidae)[J]. Insects,2014,5(3):596-608. | [16] | Santos Silva B,Colbert M,Santangelo M,et al. Monitoring Microsphere Coating Processes Using PAT Tools in a Bench Scale Fluid Bed[J]. Eur J Pharm Sci,2019,135(1):12-21. | [17] | Valladares G A.Preparation and Evaluation of Alginate/Chitosan Microspheres Containing Pheromones for Pest Control of Megaplatypus mutatus Chapuis(Platypodinae: Platypodidae)[J]. Polym Int,2016,65(2):216-223. | [18] | Waldstein D E,Gut L J.Effects of Rain and Sunlight on Oriental Fruit Moth(Lepidoptera:Tortricidae) Pheromone Microcapsules Applied to Apple Foliage[J]. J Agric Urban Entomol,2004,21(2):117-128. | [19] | CHEN Zengliang,FANG Yuling,ZHANG Zhongning,et al. Synthesis and Assessment of Attractiveness and Mating Disruption Efficacy of Sex Pheromone Microcapsules for the Diamondback Moth, Plutella xylostella(L.)[J]. Chinese Sci Bull,2007,52(10):1365-1371(in Chinese). 陈增良,方宇凌,张钟宁,等. 小菜蛾性信息素微胶囊的合成及其田间诱捕和迷向活性研究[J]. 科学通报,2007,52(10):1365-1371. | [20] | Gu X L,Zhu X,Kong X Z,et al. Comparisons of Simple and Complex Coacervations for Preparation of Sprayable Insect Sex Pheromone Microcapsules and Release Control of the Encapsulated Pheromone Molecule[J]. J Microencapsul,2010,27(4):355-364. | [21] | ZHU Xiaoli,GU Xiangling,LIAN Jie,et al. Preparation of Insect Sex Pheromone Simulacrum Dodecanol Containing Microcapsules and Its Controlled Release[J]. Acta Chim Sin,2008,66(1):121-128(in Chinese). 朱晓丽,顾相伶,廉洁,等. 昆虫激素模拟化合物十二醇微胶囊的制备与释放行为研究[J]. 化学学报,2008,66(1):121-128 | [22] | Liu X,Macaulay E D,Pickett J A.Propheromones that Release Pheromonal Carbonyl Compounds in Light[J]. J Chem Ecol,1984,10(5):809-822. | [23] | Herrmann A.Using Photolabile Protecting Groups for the Controlled Release of Bioactive Volatiles[J]. Photochem Photobiol Sci,2012,11(3):446-459 | [24] | Atta S,Ikbal M,Boda N,et al. Photoremovable Protecting Groups as Controlled-Release Device for Sex Pheromone[J]. Photochem Photobiol,2013,12(2):393-403. | [25] | Torsten E,Volker H,BjöRn S,et al. Deactivation Behavior and Excited-State Properties of (Coumarin-4-yl)methyl Derivatives.2.Photocleavage of Selected (Coumarin-4-yl)methyl-Caged Adenosine Cyclic 3',5'-Monophosphates with Fluorescence Enhancement[J]. J Org Chem,2002,67(3):703-710. | [26] | Fernandes M J G,Gonçalves M S T,Costa S P G. Photorelease of Amino Acid Neurotransmitters from Pyrenylmethyl Ester Conjugates[J]. Tetrahedron,2007,63(41):10133-10139. | [27] | Singh A K,Khade P K.Anthracene-9-methanol-A Novel Fluorescent Phototrigger for Biomolecular Caging[J]. Tetrahedron Lett,2005,46(33):5563-5566. | [28] | Kong X Z,Gu X,Zhu X,et al. Spreadable Dispersion of Insect Sex Pheromone Capsules, Preparation via Complex Coacervation and Release Control of the Encapsulated Pheromone Component Molecule[J]. Biomed Microdevices,2009,11(1):275-285. | [29] | Kikionis S,Ioannou E,Konstantopoulou M,et al. Electrospun Micro/Nanofibers as Controlled Release Systems for Pheromones of Bactrocera Oleae and Prays Oleae[J]. J Chem Ecol,2017,43(3):254-262. | [30] | Ahmad R,Hussein M Z,Wan A K,et al. Valuation of Controlled-Release Property and Phytotoxicity Effect of Insect Pheromone Zinc-Layered Hydroxide Nanohybrid Intercalated with Hexenoic Acid[J]. J Agric Food Chem,2015,63(51):10893-10902. | [31] | Moreno J M,Navarro I,D az U,et al. Single-Layered Hybrid Materials Based on 1D Associated Metal Organic Nanoribbons for Controlled Release of Pheromones[J]. Angew Chem Int Ed,2016,128(37):11192-11196. |
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