首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >The Role of Modifying Molecular Chains in the Formation of Organized Molecular Films of Organo-Modified Nanodiamond: Construction of a Highly Ordered Low Defect Particle Layer and Evaluation of Desorption Behavior of Organic Chains
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The Role of Modifying Molecular Chains in the Formation of Organized Molecular Films of Organo-Modified Nanodiamond: Construction of a Highly Ordered Low Defect Particle Layer and Evaluation of Desorption Behavior of Organic Chains

机译:修饰分子链在有机修饰的纳米金刚石的有组织分子膜形成中的作用:高序低缺陷​​颗粒层的构建和有机链的解吸行为评估

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The role of organo-modifying molecular chains in the formation of molecular films of organo-modified nanodiamond is discussed herein based on interfacial chemical particle integration of organo-modified nanodiamond having a particle size of 5 nm. The surface of nanodiamond is known to be covered with a nanolayer of adsorbed water. This water nanolayer was exploited for organo-modification of nanodiamond with long-chain fatty acids via adsorption, leading to nanodispersion of nanodiamond in general organic solvents as a mimic of solvency. The organo-modified nanodiamond dispersed solution was used as a spreading solution for depositing a mono-particle layer on the water surface, and a Langmuir particle layer was integrated at the air/water interface. Multi-particle layers were then formed via the Langmuir-Blodgett technique and were subjected to fine structural analysis. The effect of organo-modification enabled integration and multilayer formation of inorganic nanoparticles due to enhancement of the van der Waals interactions between the chains. That is to say, the encounter between the organo-modifying chain and the inorganic particles led to solubilization of the inorganic particles and enhanced interactions between the particles, which can be regarded as imparting new function to the organic molecules. The morphology of the single-particle layer was maintained after removal of the organic region of the composite via the baking process, whereas the regularity of the layered period was disordered. Thus, the organic chains are essential as modifiers for maintenance of the layered structure.
机译:本文基于粒径为5nm的有机改性的纳米金刚石的界面化学颗粒整合,讨论了有机改性的分子链在有机改性的纳米金刚石的分子膜的形成中的作用。已知纳米金刚石的表面覆盖有吸附水的纳米层。该水纳米层被用于通过吸附作用用长链脂肪酸对纳米金刚石进行有机改性,从而导致纳米金刚石在一般有机溶剂中的纳米分散,从而模拟了溶解能力。将有机改性的纳米金刚石分散溶液用作铺展溶液,以在水表面上沉积单颗粒层,并且在空气/水界面处整合朗格缪尔颗粒层。然后通过Langmuir-Blodgett技术形成多层颗粒,并进行精细的结构分析。由于链间范德华相互作用的增强,有机改性的作用使无机纳米颗粒得以整合和多层形成。也就是说,有机改性链与无机颗粒之间的相遇导致无机颗粒的溶解和颗粒之间的增强的相互作用,这可以认为是赋予有机分子新的功能。在通过烘烤过程除去复合材料的有机区域之后,保持了单颗粒层的形态,而分层时间的规律性是无序的。因此,有机链作为维持层状结构的改性剂必不可少。

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