Hierarchical Self-Assembly of Multidimensional Functional Materials from Sequence-Defined Peptoids.

Angew Chem Int Ed Engl

Physical Sciences Division, Pacific Northwest National Laboratory, Richland, WA 99354, USA.

Published: June 2024

Hierarchical self-assembly represents a powerful strategy for the fabrication of functional materials across various length scales. However, achieving precise formation of functional hierarchical assemblies remains a significant challenge and requires a profound understanding of molecular assembly interactions. In this study, we present a molecular-level understanding of the hierarchical assembly of sequence-defined peptoids into multidimensional functional materials, including twisted nanotube bundles serving as a highly efficient artificial light harvesting system. By employing synchrotron-based powder X-ray diffraction and analyzing single crystal structures of model compounds, we elucidated the molecular packing and mechanisms underlying the assembly of peptoids into multidimensional nanostructures. Our findings demonstrate that incorporating aromatic functional groups, such as tetraphenyl ethylene (TPE), at the termini of assembling peptoid sequences promotes the formation of twisted bundles of nanotubes and nanosheets, thus enabling the creation of a highly efficient artificial light harvesting system. This research exemplifies the potential of leveraging sequence-defined synthetic polymers to translate microscopic molecular structures into macroscopic assemblies. It holds promise for the development of functional materials with precisely controlled hierarchical structures and designed functions.

Download full-text PDF

Source
http://dx.doi.org/10.1002/anie.202403263DOI Listing

Publication Analysis

Top Keywords

functional materials
16
hierarchical self-assembly
8
multidimensional functional
8
sequence-defined peptoids
8
peptoids multidimensional
8
highly efficient
8
efficient artificial
8
artificial light
8
light harvesting
8
harvesting system
8

Similar Publications

Enhancing Optical Properties of Lead-Free CsNaBiCl Nanocrystals via Indium Alloying.

Inorg Chem

January 2025

School of Materials Science and Engineering, Jiangsu Engineering Laboratory of Light-Electricity-Heat Energy-Converting Materials and Applications, Changzhou University, Changzhou 213164, PR China.

This study presents the synthesis and characterization of CsNaBiCl nanocrystals (NCs) doped with varying concentrations of In to improve their luminescent properties. Utilizing a colloidal solution method, we systematically varied the In concentration to identify the optimal alloying level for enhancing the photoluminescence (PL) properties of the CsNaBiCl NCs. Structural analysis confirmed that the In-alloyed NCs maintained high crystallinity and a uniform cubic shape.

View Article and Find Full Text PDF

Synthetic bone transplantation has emerged in recent years as a highly promising strategy to address the major clinical challenge of bone tissue defects. In this field, bioactive glasses (BGs) have been widely recognized as a viable alternative to traditional bone substitutes due to their unique advantages, including favorable biocompatibility, pronounced bioactivity, excellent biodegradability, and superior osseointegration properties. This article begins with a comprehensive overview of the development and success of BGs in bone tissue engineering, and then focuses on their composite reinforcement systems with biodegradable metals, calcium-phosphorus (Ca-P)-based bioceramics, and biodegradable medical polymers, respectively.

View Article and Find Full Text PDF

The aim of this study was to comparatively determine the frequency of breast cancer-related lymphedema (BCRL) by using prospective monitoring with perometer and circumferential measurements in a group of patients who underwent breast cancer surgery. We also aimed to evaluate the relationship between volume changes and functional status and quality of life (QoL) in patients with breast cancer-related subclinical lymphedema. Patients who had unilateral breast cancer surgery for breast were assessed with circumferential and perometer, respectively, for volumes at baseline, 3rd-month, 6th-month, 9th-month, and 12th-month by the same physiotherapist.

View Article and Find Full Text PDF

A comprehensive investigation of identifying miRNA biomarkers and their potential role in age-related cataract by meta-analysis and bioinformatics analysis.

Graefes Arch Clin Exp Ophthalmol

January 2025

Shaanxi Eye Hospital, Xi'an People's Hospital (Xi'an Fourth Hospital), Affiliated People's Hospital of Northwest University, No. 21 Jiefang Road, Xi'an, Shaanxi Province, 710004, China.

Purpose: Age-related cataract (ARC) remains one of the leading causes of blindness globally. Despite the satisfactory outcomes of surgical interventions, significant disparities in access to medical care prevent many patients from receiving effective treatment. Thus, identifying reliable biomarkers and therapeutic targets to expand treatment options for ARC is essential.

View Article and Find Full Text PDF

Context: Exploration for renewable and environmentally friendly energy sources has become a major challenge to overcome the depletion of fossil fuels and their environmental hazards. Therefore, solar cell technology, as an alternative solution, has attracted the interest of many researchers. In the present work, the CsXInBr (X = Cu or Ag) compounds as lead-free halide perovskites have been studied due to their direct energy gap in the range of solar energy, thermodynamic stability, low effective mass of electrons, and high absorption coefficient.

View Article and Find Full Text PDF

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!