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  4. Interfacial assembly of nanorods: Smectic alignment and multilayer stacking
 
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Interfacial assembly of nanorods: Smectic alignment and multilayer stacking

Journal
Nanoscale
Journal Volume
13
Journal Issue
33
Pages
14236-14244
Date Issued
2021
Author(s)
Cheng Y.-T
Tsao H.-K
Sheng Y.-J.
YU-JANE SHENG  
DOI
10.1039/d1nr03784f
URI
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85113954416&doi=10.1039%2fd1nr03784f&partnerID=40&md5=c0156d32fc6b903baf9d3430e28d76b0
https://scholars.lib.ntu.edu.tw/handle/123456789/598295
Abstract
Large-scale spatial arrangement and orientation ordering of nanorod assembly on substrates are critical for nanodevice fabrication. However, complicated processes and templates or surface modification of nanorods are often required. In this work, we demonstrate, by dissipative particle dynamics simulations, that various ordered structures of adsorbed nanorods on smooth substrates can be simply achieved by non-affinity adsorption. The structures of interfacial assembly, including monolayers with a nematic-like arrangement and multilayer stacking with a smectic-like arrangement, depend on the nanorod concentration and the solvent size. As the nanorod concentration increases, the adsorbed layer becomes densely packed and the arrangement of nanorods changes from nematic-like to smectic. The assembly process driven by entropy is a two-dimensional layer-by-layer growth. Multilayer stacking with a smectic-like arrangement takes place at dilute concentrations of nanorods for large solvents such as pentamers, but at concentrated concentrations, it takes place for small solvents such as monomers. Moreover, nanorod bundles appear in the bulk phase for large solvents at dilute concentrations. The proposed strategy for interfacial assembly is caused by the free volume released for solvents, which is independent of the chemical compositions of substrates and nanorods. This journal is ? The Royal Society of Chemistry.
Subjects
Multilayers
Solvents
Substrates
Chemical compositions
Dilute concentrations
Dissipative particle dynamics simulation
Interfacial assembly
Layer-by-layer growth
Nano-device fabrication
Nanorod concentrations
Spatial arrangements
Nanorods
SDGs

[SDGs]SDG3

Type
journal article

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