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    • 3. 发明授权
    • Synthesis, uses and compositions of crystal hydrogels
    • 水凝胶的合成,用途和组成
    • US07347988B2
    • 2008-03-25
    • US10295484
    • 2002-11-15
    • Zhibing HuXihua LuJun GaoTong CaiGang HuangBo Zhou
    • Zhibing HuXihua LuJun GaoTong CaiGang HuangBo Zhou
    • A61K7/021
    • G02B1/04C08F220/56C08J3/075G01N2021/7723
    • A method is disclosed for creating hydrogels with ordered crystalline structures that exhibit a characteristic colored opalescence. In addition to the unique optical properties, these materials contain a large amount of water in their crosslinked networks. The manufacturing processes include synthesizing monodispersed hydrogel nanoparticles containing specific reactive functional groups, self-assembly of these particles to form a crystalline structure, and subsequent crosslinking neighboring spheres to stabilize the entire network. Polymerizing a hydrogel monomeric composition around the crystalline structure can enhance the mechanical strength. The resulting network is dimensionally and thermodynamically stabile under various pH and temperature conditions. The color and volume of these crystalline hydrogel networks can reversibly change in response to external stimuli such as temperature, pH and other environmental conditions. These new materials may lead to a variety of technological and artistic applications, ranging from sensors, displays, controlled drug delivery devices, jewelry and decorative consumer products.
    • 公开了一种用于产生具有有色晶体结构的水凝胶的方法,其具有特征性的着色乳光。 除了独特的光学性能之外,这些材料在其交联网络中含有大量的水。 制造方法包括合成包含特定反应性官能团的单分散水凝胶纳米颗粒,这些颗粒的自组装形成晶体结构,随后交联相邻球体以稳定整个网络。 在晶体结构周围聚合水凝胶单体组合物可以增强机械强度。 所得到的网络在各种pH和温度条件下在尺寸和热力学上是稳定的。 这些结晶水凝胶网络的颜色和体积可以响应于诸如温度,pH和其他环境条件的外部刺激而可逆地改变。 这些新材料可能导致各种技术和艺术应用,从传感器,显示器,受控药物输送装置,首饰和装饰消费品。