High-efficiency fluorescence through bioinspired supramolecular self-assembly
Peptide self-assembly has attracted extensive interest in the field of eco-friendly
optoelectronics and bioimaging due to its inherent biocompatibility, intrinsic fluorescence …
optoelectronics and bioimaging due to its inherent biocompatibility, intrinsic fluorescence …
Self‐Assembled Fluorescent Nanoparticles from π‐Conjugated Small Molecules: En Route to Biological Applications
J Schill, APHJ Schenning… - Macromolecular Rapid …, 2015 - Wiley Online Library
Since the development of supramolecular chemical biology, self‐organised nano‐
architectures have been widely explored in a variety of biomedical applications …
architectures have been widely explored in a variety of biomedical applications …
Bioinspired stable and photoluminescent assemblies for power generation
Peptide assemblies are ideal components for eco‐friendly optoelectronic energy harvesting
devices due to their intrinsic biocompatibility, ease of fabrication, and flexible …
devices due to their intrinsic biocompatibility, ease of fabrication, and flexible …
[HTML][HTML] Self-assembly of small organic molecules into luminophores for cancer theranostic applications
J Wang, X Wang, K Yang, S Hu, W Wang - Biosensors, 2022 - mdpi.com
Self-assembled biomaterials have been widely explored for real-time fluorescence imaging,
imaging-guided surgery, and targeted therapy for tumors, etc. In particular, small molecule …
imaging-guided surgery, and targeted therapy for tumors, etc. In particular, small molecule …
Orderly Self‐Assembly of Organic Fluorophores for Sensing and Imaging
Z Li, PZ Liang, TB Ren, L Yuan… - Angewandte Chemie, 2023 - Wiley Online Library
Fluorescence imaging utilizing traditional organic fluorophores is extensively applied in both
cellular and in vivo studies. However, it faces significant obstacles, such as low signal‐to …
cellular and in vivo studies. However, it faces significant obstacles, such as low signal‐to …
Covalently assembled dipeptide nanoparticles with adjustable fluorescence emission for multicolor bioimaging
S Li, Y Liu, R Xing, X Yan - ChemBioChem, 2019 - Wiley Online Library
Peptide self‐assembly, inspired by the naturally occurring fabrication principle, remains the
most attractive in constructing fluorescent nanoagents towards bioimaging. However, the …
most attractive in constructing fluorescent nanoagents towards bioimaging. However, the …
Fluorescence correlation spectroscopy and fluorescence lifetime imaging microscopy for deciphering the morphological evolution of supramolecular self-assembly
The properties and functions of non-covalent interaction-driven fluorescent supramolecular
self-assembly depend greatly on their evolution dynamics. Electron microscopy, atomic force …
self-assembly depend greatly on their evolution dynamics. Electron microscopy, atomic force …
Self‐Assembling Peptide‐Based Functional Biomaterials
Peptides can self‐assemble into various hierarchical nanostructures through noncovalent
interactions and form functional materials exhibiting excellent chemical and physical …
interactions and form functional materials exhibiting excellent chemical and physical …
[HTML][HTML] Self-assembled supramolecular artificial light-harvesting nanosystems: construction, modulation, and applications
XM Chen, X Chen, XF Hou, S Zhang, D Chen… - Nanoscale …, 2023 - pubs.rsc.org
Artificial light-harvesting systems, an elegant way to capture, transfer and utilize solar
energy, have attracted great attention in recent years. As the primary step of natural …
energy, have attracted great attention in recent years. As the primary step of natural …
Spatiotemporal control of supramolecular self-assembly and function
The enzyme-triggered self-assembly of peptides has flourished in controlling the self-
assembly kinetics and producing nanostructures that are typically inaccessible by …
assembly kinetics and producing nanostructures that are typically inaccessible by …
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- supramolecular self assembly
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- morphological evolution self assembly
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- orderly self assembly
- multicolor bioimaging dipeptide nanoparticles