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Pierre Hovington

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Articles 12
Citations 121
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Recent Articles
1.
Oktavian R, Goeminne R, Glasby L, Song P, Huynh R, Qazvini O, et al.
Nat Commun . 2024 May; 15(1):3898. PMID: 38724490
In 2021, Svante, in collaboration with BASF, reported successful scale up of CALF-20 production, a stable MOF with high capacity for post-combustion CO capture which exhibits remarkable stability towards water....
2.
Lin J, Nguyen T, Vaidhyanathan R, Burner J, Taylor J, Durekova H, et al.
Science . 2021 Dec; 374(6574):1464-1469. PMID: 34914501
Metal-organic frameworks (MOFs) as solid sorbents for carbon dioxide (CO) capture face the challenge of merging efficient capture with economical regeneration in a durable, scalable material. Zinc-based Calgary Framework 20...
3.
Bessette S, Hovington P, Demers H, Golozar M, Bouchard P, Gauvin R, et al.
Microsc Microanal . 2019 May; 25(4):866-873. PMID: 31122303
A technique to characterize the native passivation layer (NPL) on pure lithium metal foils in a scanning electron microscope (SEM) is described in this paper. Lithium is a very reactive...
4.
Bessette S, Paolella A, Kim C, Zhu W, Hovington P, Gauvin R, et al.
Sci Rep . 2018 Dec; 8(1):17575. PMID: 30514866
Time-of-flight secondary ion mass spectrometry (TOF-SIMS) using a focused ion-beam scanning electron microscope (FIB-SEM) is a promising and economical technique for lithium detection and quantification in battery materials because it...
5.
Golozar M, Hovington P, Paolella A, Bessette S, Lagace M, Bouchard P, et al.
Nano Lett . 2018 Nov; 18(12):7583-7589. PMID: 30462516
Li metal batteries suffer from dendrite formation which causes short circuit of the battery. Therefore, it is important to understand the chemical composition and growth mechanism of dendrites that limit...
6.
Daigle J, Asakawa Y, Hovington P, Zaghib K
ACS Appl Mater Interfaces . 2017 Nov; 9(47):41371-41377. PMID: 29110452
Lithium titanium oxide (LiTiO)-based electrodes are very promising for long-life cycle batteries. However, the surface reactivity of LiTiO in organic electrolytes leading to gas evolution is still a problem that...
7.
Mascaro A, Wang Z, Hovington P, Miyahara Y, Paolella A, Gariepy V, et al.
Nano Lett . 2017 Jun; 17(7):4489-4496. PMID: 28627889
One of the main challenges in improving fast charging lithium-ion batteries is the development of suitable active materials for cathodes and anodes. Many materials suffer from unacceptable structural changes under...
8.
Paolella A, Faure C, Bertoni G, Marras S, Guerfi A, Darwiche A, et al.
Nat Commun . 2017 Apr; 8:14643. PMID: 28393912
Recently, intensive efforts are dedicated to convert and store the solar energy in a single device. Herein, dye-synthesized solar cell technology is combined with lithium-ion materials to investigate light-assisted battery...
9.
Paolella A, Turner S, Bertoni G, Hovington P, Flacau R, Boyer C, et al.
Nano Lett . 2016 Mar; 16(4):2692-7. PMID: 26966938
Based on neutron powder diffraction (NPD) and high angle annular dark field scanning transmission electron microscopy (HAADF-STEM), we show that calcium ions help eliminate the Fe-antisite defects by controlling the...
10.
Hovington P, Timoshevskii V, Burgess S, Demers H, Statham P, Gauvin R, et al.
Scanning . 2016 Feb; 38(6):571-578. PMID: 26840888
Lithium is the key element for the development of battery and new technology and the development of an analytical technique to spatially and quantitatively resolve this element is of key...