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SYNTHESIS OF ORGANIC-INORGANIC HYBRID NANO PARTICLES

机译:有机 - 无机杂交纳米颗粒的合成

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We have been developed supercritical hydrothermal synthesis method for nano particle production. In the method, metal salt aqueous solution is mixed with high temperature water to rapidly increase the temperature of the metal salt solution and thus reduce the reactions and crystallizations during the heating up period. By using this method, we succeeded in the continuous and rapid production of nanocrystals. In this paper, we will propose a new method to synthesize organic-inorganic fused materials based on the methods of supercritical hydrothermal synthesis. By introducing organic materials in a reaction atmosphere of supercritical hydrothermal synthesis, nanoparticles whose surface was modified with organic materials were synthesized. In supercritical state, water and organic materials form a homogeneous phase, which provides an excellent reaction atmosphere for the organic modification of nanoparticles. Modification with bio-materials including amino acids was also possible. By changing organic modifiers, particle morphology and crystal structure was changed. This surface modification provides a various unique characteristics for the nanoparticles: Dispersion of nanoparticles in aqueous solutions, organic solvents or in liquid polymers can be controlled by selecting hydrophilic or hydrophobic modifiers. Polymer-like materials can be formed probably by the self-assembly of amino acid modified nanoparticles.
机译:我们已经开发出用于纳米颗粒生产的超临界水热合成方法。在该方法中,金属盐水溶液与高温水混合,迅速增加金属盐溶液的温度,从而减少加热期间的反应和结晶。通过使用这种方法,我们成功地在纳米晶体的连续和快速生产中。本文提出了一种新方法,基于超临界水热合成方法合成有机无机熔融材料。通过在超临界水热合成的反应气氛中引入有机材料,合成了用有机材料改性表面的纳米颗粒。在超临界状态下,水和有机材料形成均相,为纳米颗粒的有机改性提供了优异的反应气氛。还可以改变包括氨基酸的生物材料。通过改变有机改性剂,改变粒子形态和晶体结构。该表面改性为纳米颗粒提供了各种独特的特性:通过选择亲水或疏水改性剂,可以控制纳米颗粒中纳米颗粒中的分散体,有机溶剂或液态聚合物中的。可以通过氨基酸改性纳米颗粒的自组装形成聚合物样材料。

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