Li Zhu-Zhu, Chen Jian-Feng, Liu Fan, Liu An-Qi, Wang Qing, Sun Hai-Yan, Wen Li-Xiong
Key Lab for Nanomaterials, Ministry of Education, Beijing University of Chemical Technology, Beijing 100029, PR China.
Pest Manag Sci. 2007 Mar;63(3):241-6. doi: 10.1002/ps.1301.
The shielding protection given by self-prepared porous hollow silica nanoparticles (PHSN) to pesticides from degradation by UV light was investigated using avermectin as a model pesticide. It was demonstrated that PHSN carriers with a shell thickness of approximately 15 nm and a pore diameter of 4-5 nm have an encapsulation capacity of 625 g kg(-1) for avermectin using a supercritical fluid loading method. PHSN carriers exhibited remarkable UV-shielding properties for avermectin. This was affected by the intensity of UV light, the pH and the temperature of the release medium. Rises in UV intensity, pH and/or temperature reduced the UV protection of PHSN for avermectin. In addition, avermectin loaded into the inner core of the PHSN carriers was released slowly into the release medium for about 30 days following a typical sustained-release pattern. It thus appears that PHSN carriers have a promising future in applications requiring sustained pesticide release.
以阿维菌素为模型农药,研究了自制多孔空心二氧化硅纳米颗粒(PHSN)对农药的紫外线降解屏蔽保护作用。结果表明,采用超临界流体负载法,壳层厚度约为15nm、孔径为4-5nm的PHSN载体对阿维菌素的包封量为625g kg⁻¹。PHSN载体对阿维菌素表现出显著的紫外线屏蔽性能。这受到紫外线强度、释放介质的pH值和温度的影响。紫外线强度、pH值和/或温度的升高会降低PHSN对阿维菌素的紫外线防护效果。此外,负载在PHSN载体内核中的阿维菌素以典型的缓释模式在约30天内缓慢释放到释放介质中。因此,PHSN载体在需要农药持续释放的应用中似乎具有广阔的前景。