Published February 13, 2024 | Version v1
Journal article Open

Relationship between molecular structure and corrugations in self-assembled polypeptoid nanosheets revealed by cryogenic electron microscopy

  • 1. Materials Sciences Division, Lawrence Berkeley National Laboratory, Berkeley California 94720, USA
  • 2. Molecular Foundry, Lawrence Berkeley National Laboratory, Berkeley California 94720, USA
  • 3. Department of Chemical and Biomolecular Engineering, University of California, Berkeley, California 94720, USA

Description

Designing conformationally dynamic molecules that self-assemble into predictable nanostructures remains an important unmet challenge. This paper describes how atomic-scale cryogenic transmission electron microscopy (cryo-TEM) can be used to explore the relationship between molecular structure and self-assembly of block copolymers. We examined sheetlike micelles formed in water using a series of diblock copolypeptoids with the same hydrophilic block and three distinct crystalline hydrophobic blocks. Our cryo-TEM images revealed all the structures share nansoscale features, but differ in their intermolecular packing geometries. Different molecular arrangements, parallel and antiparallel V-shaped crystal motifs, were revealed by two-dimensional atomic-scale through-plane images. However, images from tilted samples revealed an unexpected feature when the hydrophobic polypeptoid block comprised phenyl rings with substituted bromine atoms at the para position. The nanosheets contained atomic-scale corrugations that were absent in the other systems which comprised unsubstituted aliphatic and aromatic side chains. We hypothesize that these corrugations are due to the dipolar characteristics of the brominated phenyl group and interactions between this group and water molecules.

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10.1103_PhysRevMaterials.8.020301.pdf

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Additional details

Identifiers

DOI
10.1103/PhysRevMaterials.8.020301;
Crossref Funder ID
10.13039/100006132; 10.13039/100006151; 10.13039/100000015;

Publishing Information

Journal Title
Physical Review Materials
Journal Volume
8
Journal Issue
2
Journal Page Range
11 pgs.
ISSN
2475-9953

INIS

Country of Publication
United States
Country of Input or Organization
International Atomic Energy Agency (IAEA)
Subject category
S77: NANOSCIENCE AND NANOTECHNOLOGY;
Descriptors DEI
AROMATICS; ATOMS; COPOLYMERS; CRYSTALS; GEOMETRY; IMAGES; INTERACTIONS; MOLECULAR STRUCTURE; MOLECULES; NANOSTRUCTURES; SHEETS; TRANSMISSION ELECTRON MICROSCOPY; WATER
Descriptors DEC
ELECTRON MICROSCOPY; HYDROCARBONS; HYDROGEN COMPOUNDS; MATHEMATICS; MICROSCOPY; ORGANIC COMPOUNDS; ORGANIC POLYMERS; OXYGEN COMPOUNDS; POLYMERS

Optional Information

Contract/Grant/Project number
DE-AC02-05CH11231; DE-AC02-05CH11231
Notes
Contact Email: Corresponding author: xijiang@lbl.gov; Contact Email: Corresponding author: nbalsara@berkeley.edu; Record automatically processed
Funding organization
Office of Science; Basic Energy Sciences; U.S. Department of Energy