材料科学
胶体
壳体(结构)
空隙(复合材料)
中子散射
分散性
肿胀 的
化学工程
小角中子散射
分子动力学
化学物理
磁导率
纳米技术
位阻效应
复合材料
化学
散射
高分子化学
膜
立体化学
计算化学
光学
物理
工程类
生物化学
作者
Alexander Schmid,Janine Dubbert,Andrey A. Rudov,Jan Skov Pedersen,Peter Lindner,Matthias Karg,Igor I. Potemkin,Walter Richtering
摘要
We report on hollow shell-shell nanogels with two polymer shells that have different volume phase transition temperatures. By means of small angle neutron scattering (SANS) employing contrast variation and molecular dynamics (MD) simulations we show that hollow shell-shell nanocontainers are ideal systems for controlled drug delivery: The temperature responsive swelling of the inner shell controls the uptake and release, while the thermoresponsive swelling of the outer shell controls the size of the void and the colloidal stability. At temperatures between 32 °C < T < 42 °C, the hollow nanocontainers provide a significant void, which is even larger than the initial core size of the template, and they possess a high colloidal stability due to the steric stabilization of the swollen outer shell. Computer simulations showed, that temperature induced switching of the permeability of the inner shell allows for the encapsulation in and release of molecules from the cavity.
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