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Nanoparticle layer deposition for highly controlled multilayer formation based on high- coverage monolayers of nanoparticles

机译:纳米颗粒层沉积用于基于纳米颗粒的高覆盖单层的高度可控的多层形成

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摘要

This paper establishes a strategy for chemical deposition of functionalized nanoparticles onto solid substrates in a layer-by-layer process based on self-limiting surface chemical reactions leading to complete monolayer formation within the multilayer system without any additional intermediate layers – nanoparticle layer deposition (NPLD). This approach is fundamentally different from previously established traditional layer-by-layer deposition techniques and is conceptually more similar to well-known atomic and molecular – layer deposition processes. The NPLD approach uses efficient chemical functionalization of the solid substrate material and complementary functionalization of nanoparticles to produce a nearly 100% coverage of these nanoparticles with the use of “click chemistry”. Following this initial deposition, a second complete monolayer of nanoparticles is deposited using a copper-catalyzed “click reaction” with the azide-terminated silica nanoparticles of a different size. This layer-by-layer growth is demonstrated to produce stable covalently-bound multilayers of nearly perfect structure over macroscopic solid substrates. The formation of stable covalent bonds is confirmed spectroscopically and the stability of the multilayers produced is tested by sonication in a variety of common solvents. The 1-, 2- and 3-layer structures are interrogated by electron microscopy and atomic force microscopy and the thickness of the multilayers formed is fully consistent with that expected for highly efficient monolayer formation with each cycle of growth. This approach can be extended to include a variety of materials deposited in a predesigned sequence on different substrates with a highly conformal filling.
机译:本文基于自我限制的表面化学反应,建立了在多层体系中将功能化纳米颗粒化学沉积到固体基质上的策略,该过程导致多层系统内完全单层形成,而无需任何其他中间层–纳米颗粒层沉积(NPLD) )。这种方法从根本上不同于以前建立的传统逐层沉积技术,并且在概念上更类似于众所周知的原子和分子层沉积工艺。 NPLD方法利用固体化学物质的有效化学功能化和纳米颗粒的互补功能化,通过“点击化学”的作用产生了这些纳米颗粒近100%的覆盖率。在此初始沉积之后,使用铜催化的“点击反应”将叠氮化物封端的二氧化硅纳米颗粒与不同尺寸的纳米颗粒形成第二个完整的单分子层。已证明这种逐层生长可在宏观固体基质上产生几乎完美结构的稳定的共价结合多层。用光谱法确认形成稳定的共价键,并通过在多种常用溶剂中超声处理来测试所产生的多层的稳定性。通过电子显微镜和原子力显微镜对1层,2层和3层结构进行了询问,所形成的多层厚度与在每个生长周期内形成高效单层的预期厚度完全一致。该方法可以扩展为包括以预先设计的顺序沉积在具有高度保形填充物的不同基板上的各种材料。

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