1 |
CAMPOS E V R, DE OLIVEIRA J L, FRACETO L F, et al. Polysaccharides as safer release systems for agrochemicals[J]. Agronomy for Sustainable Development, 2015, 35(1): 47-66.
|
2 |
周新华, 廖列文, 张志祥, 等. 农药缓释微球的制备及其改性研究进展[J]. 农药, 2010(12): 862-867.
|
|
ZHOU Xinhua, LIAO Liewen, ZHANG Zhixiang, et al. Progress on preparation and its modification of microspheres for slowrelease pesticides[J]. Agrochemicals, 2010(12): 862-867.
|
3 |
NURUZZAMAN M, RAHMAN M M, LIU Y, et al. Nanoencapsulation, nano-guard for pesticides: a new window for safe application[J]. J. Agric. Food Chem., 2016, 64(7): 1447-1483.
|
4 |
PRASAD R, BHATTACHARYYA A, NGUYEN Q D. Nanotechnology in sustainable agriculture: recent developments, challenges, and perspectives[J]. Frontiers in Microbiology, 2017, 8: 1014.
|
5 |
KUMARI A, YADAV S K, YADAV S C. Biodegradable polymeric nanoparticles based drug delivery systems[J]. Colloids and Surfaces B: Biointerfaces, 2010, 75(1): 1-18.
|
6 |
LIU B, WANG Y, WANG X, et al. Construction of a controlled-release delivery system for pesticides using biodegradable PLA-based microcapsules[J]. Colloids and Surfaces B: Biointerfaces, 2016, 144: 38-45.
|
7 |
CHEN N, DEMPERE L A, TONG Z. Synthesis of pH-responsive lignin-based nanocapsules for controlled release of hydrophobic molecules[J]. ACS Sustainable Chemistry & Engineering, 2016, 4(10): 5204-5211.
|
8 |
JIA X, SHENG W, LI W, et al. Adhesive polydopamine coated avermectin microcapsules for prolonging foliar pesticide retention[J]. ACS Applied Materials & Interfaces, 2014, 6(22): 19552-19558.
|
9 |
YU M, YAO J, LIANG J, et al. Development of functionalized abamectin poly(lactic acid) nanoparticles with regulatable adhesion to enhance foliar retention[J]. RSC Advances, 2017, 7(19): 11271-11280.
|
10 |
WANG Y, FU Y, LI J, et al. Multifunctional chitosan/dopamine/diatom-biosilica composite beads for rapid blood coagulation[J]. Carbohydrate Polymers, 2018, 200: 6-14.
|
11 |
GAO Z, PANG L, FENG H, et al. Preparation and characterization of a novel imidacloprid microcapsule via coating of polydopamine and polyurea[J]. RSC Advances, 2017, 7(26): 15762-15768.
|
12 |
CHEN H, LIN G, ZHOU H, et al. Preparation of avermectin/grafted CMC nanoparticles and their sustained release performance[J]. Journal of Polymers and the Environment, 2018, 26(7): 2945-2953.
|
13 |
LIN G, CHEN H, ZHOU H, et al. Avermectin/polyacrylate nanoparticles: preparation, characterization, anti-UV and sustained release properties[J]. International Journal of Polymeric Materials and Polymeric Biomaterials, 2019, 68(10): 582-589.
|
14 |
HAN F, XIONG D, WANG Q, et al. Thermal properties of carboxymethylcellulose and methyl methacrylate graft copolymers[J]. Journal of Macromolecular Science, Part B, 2012, 52(9): 1242-1249.
|
15 |
LIUYUN J, YUBAO L, CHENGDONG X. A novel composite membrane of chitosan-carboxymethyl cellulose polyelectrolyte complex membrane filled with nano-hydroxyapatite I. Preparation and properties[J]. Journal of Materials Science: Materials in Medicine, 2009, 20(8): 1645-1652.
|
16 |
HAN F Q, SHAO B, WANG Q W, et al. Synthesis and characterization of carboxymethylcellulose and methyl methacrylate graft copolymers[J]. Pigment & Resin Technology, 2010, 39(3): 156-162.
|
17 |
DŽUNUZOVI Ć E, MARINOVIĆ-CINCOVIĆ M, VUKOVIĆ J, et al. Thermal properties of PMMA/TiO2 nanocomposites prepared byin-situbulk polymerization[J]. Polymer Composites, 2009, 30(6): 737-742.
|
18 |
王娟勤, 白绘宇, 易成林, 等. HA/PDM自组装复合胶体粒子及其乳化性能[J]. 物理化学学报, 2013, 29(5): 1028-1034.
|
|
WANG J Q, BAI H Y, YI C L, et al. Self-assembled HA/PDM particles and emulsification properties[J]. Acta Physico-Chimica Sinica, 2013, 29(5): 1028-1034.
|
19 |
SHEN Z, ZHOU X, QIU H, et al. A comparison study of antiultraviolet and sustained release properties of polydopamine/avermectin microcapsule and microsphere[J]. International Journal of Polymer Science, 2018 (2): 1-13.
|
20 |
LIN G, CHEN X, ZHOU H, et al. Elaboration of a feather keratin/carboxymethyl cellulose complex exhibiting pH sensitivity for sustained pesticide release[J]. Journal of Applied Polymer Science, 2018(10): 47160.
|
21 |
HOLLOWAY P J. Surface factors affecting the wetting of leaves[J]. Pesticide Science, 1970, 1(4): 156-163.
|
22 |
余曼丽. 靶向亲和型农药纳米载药系统的构建及表征[D]. 北京: 中国农业科学院, 2017.
|
|
YU Manli. Development and characterization of pesticide nanoparticles delivery systems with targeted adhesion[D]. Beijing: Chinese Academy of Agricultural Sciences, 2017.
|
23 |
LIN G, ZHOU H, LIAN J, et al. Preparation of pH-responsive avermectin/feather keratin-hyaluronic acid with anti-UV and sustained-release properties[J]. Colloids and Surfaces B: Biointerfaces, 2019, 175: 291-299.
|
24 |
BIKOVA T. UV-absorbance of oxidized xylan and monocarboxyl cellulose in alkaline solutions[J]. Carbohydrate Polymers, 2004, 55(3): 315-322.
|
25 |
PAPADOPOULOU V, KOSMIDIS K, VLACHOU M, et al. On the use of the Weibull function for the discernment of drug release mechanisms[J]. International Journal of Pharmaceutics, 2006, 309(1/2): 44-50.
|
26 |
BAHADUR A, SAEED A, SHOAIB M, et al. Modulating the burst drug release effect of waterborne polyurethane matrix by modifying with polymethylmethacrylate[J]. Journal of Applied Polymer Science, 2019, 136(13): 47253.
|
27 |
EL-HAMSHARY H, EL-NEWEHY M H, MOYDEEN ABDULHAMEED M, et al. Evaluation of clay-ionene nanocomposite carriers for controlled drug delivery: synthesis, in vitro drug release, and kinetics[J]. Materials Chemistry and Physics, 2019, 225: 122-132.
|