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Vapor-Stripping and Encapsulating to Construct Particles with Time-Controlled Asymmetry and Anisotropy

机译:汽提和包封以构建具有时间控制不对称和各向异性的颗粒

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An innovative chemical vapor sublimation and deposition (CVSD) process was shown to produce nanoscale anisotropic hybrid materials. Taking advantage of controlled thermodynamic properties and the mass transfer of molecules, this process allowed for water vapor sublimation from an iced template/substrate and stagewise vapor deposition of poly-p-xylylene onto the sublimating ice substrate. In this study, the use of sensitive soybean agglutinin (SBA) protein tubes was demonstrated as an example to prepare the anisotropic hybrid material based on the CVSD process. The rationale of a timing parameter, Δt, was controlled to program the sublimation of the SBA-ice templates and the deposition of poly-p-xylylene during the CVSD process. As a result of this control, a stripping stage occurred, during which SBA tubes were exposed on the particle surface, and a subsequent encapsulation stage enabled the transformation of the ice templates into a nanometer-sized anisotropic hybrid material of poly-p-xylylene as the matrix with encapsulated SBA tubes. The timing parameter Δt and the controlled stripping and encapsulating stages during CVSD represent a straightforward and intriguing mechanism stemming from physical chemistry fundamentals for the fabrication of hybrid materials from sensitive molecules and with predetermined sizes and asymmetrical shapes. A simulation analysis showed consistency with the experimental results and controllability of the timing mechanism with predictable particle sizes.
机译:一个创新的化学气相升华和沉积(CVSD)过程被证明产生纳米级各向异性混合材料。趁着控制热力学性质和分子的质量传递,这个过程允许水蒸汽从升华冰冷模板/衬底和分阶段的蒸气聚对亚二甲苯基的沉积到升华冰衬底。在这项研究中,凝集素(SBA)蛋白管中的使用敏感大豆被证明作为一个例子,以制备基于所述CVSD过程各向异性混合材料。一个定时参数,Δt的的基本原理,控制为的SBA-冰模板的升华和聚对苯二亚甲基的期间CVSD过程沉积编程。作为此控制的结果,一个汽提阶段发生,在此期间,SBA管暴露在粒子表面上,和随后的封装阶段启用的冰模板转变为如聚 - 对 - 亚二甲苯基的纳米尺寸的各向异性混合材料基质包封SBA管。参数Δt的和受控剥离和CVSD期间包封级代表一个直接的和有趣机构从物理化学的基本面用于从敏感分子杂化材料的制造和具有预定尺寸和不对称的形状所产生的定时。仿真分析显示与具有可预测颗粒尺寸的定时机制的实验结果和可控性的一致性。

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