首页> 外文期刊>Journal of Controlled Release: Official Journal of the Controlled Release Society >Controlled release of avermectin from porous hollow silica nanoparticles: Influence of shell thickness on loading efficiency, UV-shielding property and release
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Controlled release of avermectin from porous hollow silica nanoparticles: Influence of shell thickness on loading efficiency, UV-shielding property and release

机译:阿维菌素从多孔空心二氧化硅纳米颗粒中的受控释放:壳厚度对负载效率,紫外线屏蔽性能和释放的影响

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摘要

Preparation and characterization of porous hollow silica nanoparticles (PHSNs), with various shell thicknesses in the range of 5-45 nm and a pore diameter of about 4-5 nm, were investigated. PHSNs were fabricated via a sol-gel route with two different structure-directing templates and their shell thickness could be controlled by adjusting the reactant ratio of Na2SiO3 center dot 9H(2)O/CaCO3. The produced PHSNs were applied as controlled pesticide release carriers to study the effects of the shell thickness on the loading efficiency for avermectin, the UV-shielding property for the loaded avermectin and the controlled release of the loaded avermectin from the carriers. It was found that the amount of loaded avermectin decreases with the increase of shell thickness, while the UV-shielding property of PHSNs for avermectin is improved as the shell gets thicker. In addition, the shell thickness has a significant impact on avermectin release. Increasing the shell thickness in the range of 5-45 nm leads to a more sustained release by decreasing the release rate of the pesticide from PHSNs, showing that the shell thickness is one of the main controlling factors for the active agent release from such systems. (c) 2005 Elsevier B.V. All rights reserved.
机译:研究了多孔壳中空二氧化硅纳米粒子(PHSNs)的制备和表征,该纳米粒子具有5-45 nm的各种壳厚度和约4-5 nm的孔径。 PHSNs是通过溶胶-凝胶途径用两种不同的结构导向模板制备的,并且它们的壳厚度可以通过调节Na2SiO3中心点9H(2)O / CaCO3的反应比来控制。将所生产的PHSN用作农药控制释放载体,以研究壳厚度对阿维菌素的负载效率,负载的阿维菌素的紫外线防护性能以及负载的阿维菌素从载体的控制释放的影响。发现随着壳厚度的增加,阿维菌素的负载量减少,而随着壳的变厚,PHSNs对阿维菌素的紫外线防护性能得到改善。另外,壳的厚度对阿维菌素的释放有重要影响。通过降低PHSN中农药的释放速率,在5-45 nm范围内增加壳厚度可导致更持久的释放,这表明壳厚度是活性剂从此类系统中释放的主要控制因素之一。 (c)2005 Elsevier B.V.保留所有权利。

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