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Characterization of Surface Patterning on Polymer-Grafted Nanocubes Using Atomic Force Microscopy and Force Volume Mapping

delete2024-09-19
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PRE
AI
W
Wade Shipley
Y
Yufei Wang
J
J.C.W. Chien
B
Bin Wang
A
Andrea R. Tao *
DOI:10.1021/acs.langmuir.4c01902delete
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Abstract

Abstract

En 中文
Atomic force microscopy (AFM), in particular force spectroscopy, is a powerful tool for understanding the supramolecular structures associated with polymers grafted to surfaces, especially in regimes of low polymer density where different morphological structures are expected. In this study, we utilize force volume mapping to characterize the nanoscale surfaces of Ag nanocubes (AgNCs) grafted with a monolayer of polyethylene glycol (PEG) chains. Spatially resolved force-distance curves taken for a single AgNC were used to map surface properties, such as adhesion energy and deformation. We confirm the presence of surface octopus micelles that are localized on the corners of the AgNC, using force curves to resolve structural differences between the micelle bodies and legs. Furthermore, we observe unique features of this system including a polymer corona stemming from AgNC-substrate interactions and polymer bridging stemming from particle-particle interactions.
Keywords:
NANOMECHANICAL PROPERTIES
JANUS NANOPARTICLES
SINGLE-CRYSTALS
BRUSHES
GOLD
SPECTROSCOPY
AFM
PATCHY
CHAIN
TOPOGRAPHY

Journal

Langmuir cover
Langmuir
IF:
3.9
Papers:
5.4W
Citations:
10.6W

Organization

University of California System cover
University of California System
Scholars:
37.2W
Papers: 33.6W
Citations: 6.6K
U
University of California San Diego
Scholars:
4.6W
Papers: 3.5W
Citations: 924