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多糖与蛋白质辅助官能化六方氮化硼纳米片载药及缓释性能
引用本文:关梅,郝丽,殷子婷,梁舒华,周新华.多糖与蛋白质辅助官能化六方氮化硼纳米片载药及缓释性能[J].仲恺农业工程学院学报,2021,34(2):31-38.
作者姓名:关梅  郝丽  殷子婷  梁舒华  周新华
摘    要:为减少传统农药使用过程中有机溶剂对环境的污染,提高农药的使用效率,用羧甲基纤维素(Carboxym-ethyl cellulose,CMC)和大豆分离蛋白(Soy protein isolate,SPI)辅助球磨机械剥离并改性六方氮化硼(Hexagonal boron nitride,h-BN)得到氮化硼基载体.采用浸...

关 键 词:六方氮化硼纳米片  多糖  蛋白质  缓释
收稿时间:2021-07-15

Pesticide-loading and sustained release performance of functionalization of hexagonal boron nitride nanoplatelets assisted with polysaccharide and protein
Abstract:In order to reduce the pollution of organic solvents to the environment during the use of traditional pesticides and improve the use efficiency of pesticides, the hexagonal boron nitride (h-BN) was modified by ball milling with the aid of Carboxy methyl cellulose (CMC) and Soy protein isolate (SPI). The modified boron nitride carrier was used to adsorb the model drug triadimefon, and different composite systems were prepared by impregnation method. The interaction between pesticide and functionalized nano-carrier was characterized by means of scanning electron microscopy (SEM), transmission electron microscope (TEM), ultraviolet diffuse reflection (UV-DRS), and the slow and controlled release of triadimefon on modified boron nitride carrier was also. the loading amount of triadimefon on the modified boron nitride nanoplates was the highest under acidic conditions, (164.1±2.2) mg·g-1, and the cumulative release rate of triadimefon was only (27.25±0.57)% after 95 h at pH5. The process of pesticide release was in accordance with Korsmeyer Peppas model, the mechanism of diffusion was controlled by physical diffusion, ion exchange and drug dissolution. The contact angle with cucumber leaf surface decreased to (76.75±0.67)°, which indicated that the wettability was improved. The residual amount was still 51.6% after exposing to UV for 460 min. The existence of modified boron nitride composite carrier improved the affinity of triadimefon with cucumber leaf surface, controlled release ability and UV stability which providing a simple way to achieve simultaneous stripping and functionalization of hexagonal boron nitride nanosheets for pesticide loading and transportation.
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