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Michel Pellarin

Explore the profile of Michel Pellarin including associated specialties, affiliations and a list of published articles. Areas
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Articles 13
Citations 61
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Recent Articles
1.
Moreira M, Cottancin E, Pellarin M, Roiban L, Masenelli-Varlot K, Ugarte D, et al.
Small . 2024 Dec; 21(6):e2411151. PMID: 39711220
Bimetallic nanoparticles are used in numerous applications in catalysis, plasmonics or fuel cell technology. The addition of the second metal to the nanoparticles allows enhancing and fine-tuning their properties by...
2.
Camus E, Pellarin M, Blanchard N, Boisron O, Hillenkamp M, Roiban L, et al.
Faraday Discuss . 2022 Oct; 242(0):478-498. PMID: 36200810
In this study, the atomic and chemical structure and the optical response of AB bimetallic nanoparticles (BNPs) combining gold or silver (A) with aluminium or indium (B) were investigated at...
3.
Rye J, Bonnet C, Lerouge F, Pellarin M, Lerme J, Parola S, et al.
Nanoscale . 2018 Aug; 10(34):16094-16101. PMID: 30109878
Sensitive, robust and stable sensors are required to bring biosensing techniques from the forefront of research to clinical and commercial settings. To this end, we report on the development of...
4.
Ramade J, Langlois C, Pellarin M, Piccolo L, Lebeault M, Epicier T, et al.
Nanoscale . 2017 Sep; 9(36):13563-13574. PMID: 28876014
Multimetallic nano-alloys display a structure and consequently physicochemical properties evolving in a reactive environment. Following and understanding this evolution is therefore crucial for future applications in gas sensing and heterogeneous...
5.
Pellarin M, Ramade J, Rye J, Bonnet C, Broyer M, Lebeault M, et al.
ACS Nano . 2016 Dec; 10(12):11266-11279. PMID: 28024347
Homodimers of noble metal nanocubes form model plasmonic systems where the localized plasmon resonances sustained by each particle not only hybridize but also coexist with excitations of a different nature:...
6.
Pellarin M, Broyer M, Lerme J, Lebeault M, Ramade J, Cottancin E
Phys Chem Chem Phys . 2016 Jan; 18(5):4121-33. PMID: 26780585
The optical absorption of bimetallic nanoparticles M-Ag involving silver as an active plasmonic compound has been the subject of very extensive experimental studies, both for a large range of sizes...
7.
Manchon D, Lerme J, Zhang T, Mosset A, Jamois C, Bonnet C, et al.
Nanoscale . 2014 Dec; 7(3):1181-92. PMID: 25488835
In this article, we show for the first time, both theoretically and empirically, that plasmonic coupling can be used to generate Localized Surface Plasmon Resonances (LSPRs) in transition metal dimeric...
8.
Cottancin E, Langlois C, Lerme J, Broyer M, Lebeault M, Pellarin M
Phys Chem Chem Phys . 2014 Feb; 16(12):5763-73. PMID: 24531859
Owing to the very different electrovalences of indium and silver, nanoparticles made of these elements are among the simplest examples of hybrid plasmonic systems retaining a full metallic character. The...
9.
Navarro J, Manchon D, Lerouge F, Cottancin E, Lerme J, Bonnet C, et al.
Nanotechnology . 2012 Mar; 23(14):145707. PMID: 22433232
A great number of works focus their interest on the study of gold nanoparticle plasmonic properties. Among those, sharp nanostructures appear to exhibit the more interesting features for further developments....
10.
Grillet N, Manchon D, Bertorelle F, Bonnet C, Broyer M, Cottancin E, et al.
ACS Nano . 2011 Nov; 5(12):9450-62. PMID: 22087471
Absolute extinction cross sections of individual silver nanocube dimers are measured using spatial modulation spectroscopy in correlation with their transmission electron microscopy images. For very small interparticle distances and an...