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SYSTEM AND METHOD FOR CONTROLLING THE SIZE AND/OR DISTRIBUTION OF CATALYST NANOPARTICLES FOR NANOSTRUCTURE GROWTH

机译:用于控制纳米结构增长的催化剂纳米粒子的尺寸和/或分布的系统和方法

摘要

Techniques for controlling the size and/or distribution of a catalyst nanoparticles (P1, P2,…, PN) on a substrate are provided. The catalyst nanoparticles comprise any species that can be used for growing a nanostructure (CNT1, CNT2,…,CNTN), such as a nanotube, on the substrate surface. Polymers are used as a carrier of a catalyst payload, and such polymers self-assemble on a substrate thereby controlling the size and/or distribution of resulting catalyst nanoparticles. Amphiphilic block copolymers are known self-assembly systems, in which chemically-distinct blocks microphase-separate into a nanoscale morphology, such as cylindrical or spherical, depending on the polymer chemistry and molecular weight. Such block copolymers are used as a carrier of a catalyst payload, and their self-assembly into a nanoscale morphology controls size and/or distribution of resulting catalyst nanoparticles onto a substrate.
机译:提供了用于控制催化剂纳米颗粒(P1,P2,…,PN)在基底上的尺寸和/或分布的技术。催化剂纳米颗粒包括可用于在基底表面上生长纳米结构(CNT1,CNT2,…,CNTN)的任何物质,例如纳米管。聚合物用作催化剂有效载荷的载体,并且这种聚合物在基材上自组装,从而控制所得催化剂纳米颗粒的尺寸和/或分布。两性嵌段共聚物是已知的自组装系统,其中取决于聚合物的化学性质和分子量,化学上不同的嵌段将微相分离成纳米级形态,例如圆柱形或球形。此类嵌段共聚物用作催化剂有效载荷的载体,并且它们的自组装成纳米级形态控制了所得催化剂纳米粒子在基底上的尺寸和/或分布。

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