Francois Baneyx
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Explore the profile of Francois Baneyx including associated specialties, affiliations and a list of published articles.
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76
Citations
1191
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Recent Articles
1.
Larson H, Lin Z, Baneyx F, Cossairt B
Nanoscale
. 2025 Feb;
17(11):6593-6603.
PMID: 39969092
Indium phosphide nanowires are important components in high-speed electronics and optoelectronics, including photodetectors and photovoltaics. However, most syntheses either use high-temperature and costly vapor-phase methodology or highly toxic and pyrophoric...
2.
Lowe C, Larson H, Cai Y, Chiang H, Pozzo L, Baneyx F, et al.
Langmuir
. 2024 Dec;
41(1):1047-1056.
PMID: 39737696
Circular dichroism (CD) spectroscopy has emerged as a potent tool for probing chiral small-molecule ligand exchange on natively achiral quantum dots (QDs). In this study, we report a novel approach...
3.
Naser N, Wixson W, Larson H, Cossairt B, Pozzo L, Baneyx F
Soft Matter
. 2024 Nov;
21(2):166-178.
PMID: 39526900
High information content building blocks offer a path toward the construction of precision materials by supporting the organization and reconfiguration of organic and inorganic components through engineered functions. Here, we...
4.
Cai Y, Naser N, Ma J, Baneyx F
Biomacromolecules
. 2024 Mar;
25(4):2390-2398.
PMID: 38478587
Thermoresponsive elastin-like peptides (ELPs) have been extensively investigated in biotechnology and medicine, but little attention has been paid to the process by which coacervation causes ELP-decorated particles to aggregate. Using...
5.
Cai Y, Qi X, Boese J, Zhao Y, Hellner B, Chun J, et al.
Soft Matter
. 2024 Feb;
20(8):1935-1942.
PMID: 38323470
Although a broad range of ligand-functionalized nanoparticles and physico-chemical triggers have been exploited to create stimuli-responsive colloidal systems, little attention has been paid to the reversible assembly of unmodified nanoparticles...
6.
Ma J, Jin B, Guye K, Chowdhury M, Naser N, Chen C, et al.
Adv Mater
. 2022 Oct;
35(3):e2207543.
PMID: 36281797
Sequence-defined foldamers that self-assemble into well-defined architectures are promising scaffolds to template inorganic mineralization. However, it has been challenging to achieve robust control of nucleation and growth without sequence redesign...
7.
Shao L, Ma J, Prelesnik J, Zhou Y, Nguyen M, Zhao M, et al.
Chem Rev
. 2022 Oct;
122(24):17397-17478.
PMID: 36260695
Hierarchical materials that exhibit order over multiple length scales are ubiquitous in nature. Because hierarchy gives rise to unique properties and functions, many have sought inspiration from nature when designing...
8.
Jin B, Yan F, Qi X, Cai B, Tao J, Fu X, et al.
Angew Chem Int Ed Engl
. 2022 Feb;
61(14):e202201980.
PMID: 35167709
While bio-inspired synthesis offers great potential for controlling nucleation and growth of inorganic particles, precisely tuning biomolecule-particle interactions is a long-standing challenge. Herein, we used variations in peptoid sequence to...
9.
Qi X, Zhao Y, Lachowski K, Boese J, Cai Y, Dollar O, et al.
ACS Nano
. 2022 Jan;
16(2):1919-1928.
PMID: 35073061
At-will tailoring of the formation and reconfiguration of hierarchical structures is a key goal of modern nanomaterial design. Bioinspired systems comprising biomacromolecules and inorganic nanoparticles have potential for new functional...
10.
Soto-Rodriguez J, Hemmatian Z, Black J, Rolandi M, Baneyx F
ACS Appl Bio Mater
. 2022 Jan;
2(2):930-935.
PMID: 35016296
Merging biological systems with electronic components requires converting biological ionic currents into electrical signals. Previously, we coupled green-light-activated transport of protons by a palladium-binding version of deltarhodopsin (HtdR) with electronic...