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Osmotic pressure-dependent release profiles of payloads from nanocontainers by co-encapsulation of simple salts

机译:渗透与压力有关的释放的有效载荷从nanocontainers co-encapsulation简单的盐

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The encapsulation of payloads in micro-to nano-scale capsules allows protection of the payload from the surrounding environment and control of its release profile. Herein, we program the release of hydrophilic payloads from nanocontainers by co-encapsulating simple inorganic salts for adjusting the osmotic pressure. The latter either leads to a burst release at high concentrations of co-encapsulated salts or a sustained release at lower concentrations. Osmotic pressure causes swelling of the nanocapsule's shell and therefore sustained release profiles can be adjusted by crosslinking it. The approach presented allows for programing the release of payloads by co-encapsulating inexpensive salts inside nanocontainers without the help of stimuli-responsive materials.
机译:的封装在micro-to载荷纳米胶囊可以保护从周围的环境和载荷控制其释放。程序释放亲水的有效载荷nanocontainers co-encapsulating简单无机盐在渗透调节压力。在高浓度的co-encapsulated释放盐或持续释放较低浓度。有关纳米胶囊的外壳,因此持续发布概要文件可以调节交联。编程有效载荷的释放co-encapsulating便宜的盐里面nanocontainers没有的帮助stimuli-responsive材料。

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