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首页> 外文期刊>Nano letters >The Nanocrystal Superlattice Pressure Cell: A Novel Approach To Study Molecular Bundles under Uniaxial Compression
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The Nanocrystal Superlattice Pressure Cell: A Novel Approach To Study Molecular Bundles under Uniaxial Compression

机译:纳米晶体超晶格压力传感器:研究单轴压缩下的分子束的一种新方法。

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摘要

Ordered assemblies of inorganic nanocrystals coated with organic linkers present interesting scientific challenges in hard and soft matter physics. We demonstrate that a nanocrystal superlattice under compression serves as a nanoscopic pressure cell to enable studies of molecular linkers under uniaxial compression. We developed a method to uniaxially compress the bifunctional organic linker by attaching both ends of aliphatic chains to neighboring PbS nanocrystals in a superlattice. Pressurizing the nanocrystal superlattice in a diamond anvil cell thus results in compression of the molecular linkers along their chain direction. Small-angle and wide-angle Xray scattering during the compression provide insights into the structure of the superlattice and nanocrystal cores under compression, respectively. We compare density functional theory calculations of the molecular linkers as basic Hookean springs to the experimental force?distance relationship. We determine the density of linkers on the nanocrystal surfaces. We demonstrate our method to probe the elastic force of single molecule as a function of chain length. The methodology introduced in this paper opens doors to investigate molecular interactions within organic molecules compressed within a nanocrystal superlattice.
机译:涂覆有有机连接基的无机纳米晶体的有序组装在硬物质和软物质物理学中提出了有趣的科学挑战。我们证明了在压缩下的纳米晶体超晶格用作纳米压力盒,以使在单轴压缩下的分子接头的研究成为可能。我们开发了一种方法,通过将脂族链的两端连接到超晶格中的相邻PbS纳米晶体上,来单轴压缩双功能有机接头。因此,在金刚石砧座单元中对纳米晶超晶格加压会导致分子接头沿其链链方向压缩。压缩过程中的小角X射线和广角X射线散射分别提供了对压缩下的超晶格和纳米晶核结构的见解。我们将分子连接子的密度泛函理论计算作为基本的Hookean弹簧与实验力-距离关系进行了比较。我们确定纳米晶体表面上的接头密度。我们证明了我们的方法来探测单个分子的弹力与链长的关系。本文介绍的方法学为研究纳米晶体超晶格内压缩的有机分子内的分子相互作用打开了大门。

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