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Controlled biocide release from hierarchically-structured biogenic silica: surface chemistry to tune release rate and responsiveness

机译:从分层结构的生物硅中控制杀菌剂的释放:通过表面化学调节释放速率和响应性

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摘要

Biocides are essential for crop protection, packaging and several other biosystem applications. Therein, properties such as tailored and controlled release are paramount in the development of sustainable biocide delivery systems. We explore the self-similar nano-organized architecture of biogenic silica particles to achieve high biocide payload. The high surface area accessibility of the carrier allowed us to develop an efficient, low energy loading strategy, reaching significant dynamic loadings of up to 100 mg·g−1. The release rate and responsiveness were tuned by manipulating the interfaces, using either the native hydroxyl surfaces of the carrier or systems modified with amines or carboxylic acids in high density. We thoroughly evaluated the impact of the carrier-biocide interactions on the release rate as a function of pH, ionic strength and temperature. The amine and carboxyl functionalization strategy led to three-fold decrease in the release rate, while higher responsiveness against important agro-industrial variables. Key to our discoveries, nanostructuring thymol in the biogenic silica endowed systems with controlled, responsive release promoting remarkable, high and localized biocidal activity. The interfacial factors affecting related delivery were elucidated for an increased and localized biocidal activity, bringing a new light for the development of controlled release systems from porous materials.
机译:杀菌剂对于作物保护,包装和其他几种生物系统应用至关重要。其中,诸如定制释放和控制释放之类的特性在可持续杀菌剂递送系统的开发中至关重要。我们探索生物仿生二氧化硅颗粒的自相似纳米组织结构,以实现高杀菌力负载。载体的高表面积可及性使我们能够开发一种有效的,低能量的装载策略,达到高达100 mg·g -1 的显着动态载荷。使用载体的天然羟基表面或经高密度胺或羧酸改性的体系,可以通过操纵界面来调节释放速率和响应性。我们彻底评估了载体-杀生物剂相互作用对释放速率的影响,该释放速率是pH,离子强度和温度的函数。胺和羧基官能化策略导致释放速率降低三倍,同时对重要的农业工业变量具有更高的响应能力。我们发现的关键是,生物二氧化硅中的百里香酚纳米结构赋予了系统可控的响应释放,从而促进了显着的,高的和局部的杀生物活性。阐明了影响相关递送的界面因素以增加和局部的杀生物活性,为开发多孔材料的控释系统提供了新的思路。

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