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George P Demopoulos

Explore the profile of George P Demopoulos including associated specialties, affiliations and a list of published articles. Areas
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Articles 29
Citations 155
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Recent Articles
1.
Yekani R, Chiu H, Strandell D, Wang Z, Bessette S, Gauvin R, et al.
Nanoscale . 2023 Jan; 15(5):2152-2161. PMID: 36648300
In this study, to elucidate the origin of inductance and its relationship with the phenomenon of hysteresis in hybrid perovskite solar cells (PSCs), two electron transport layer (ETL) structures have...
2.
Arshad N, Usman M, Adnan M, Ahsan M, Rehman M, Javed S, et al.
Nanomaterials (Basel) . 2023 Jan; 13(1). PMID: 36616009
Designing multifunctional nanomaterials for high performing electrochemical energy conversion and storage devices has been very challenging. A number of strategies have been reported to introduce multifunctionality in electrode/catalyst materials including...
3.
Uceda M, Chiu H, Zhou J, Gauvin R, Zaghib K, Demopoulos G
Nanoscale . 2020 Nov; 12(45):23092-23104. PMID: 33180083
In this paper, electrophoretic deposition (EPD) is shown to promote nanoscale assembling of graphene oxide (GO) enabling the fabrication of highly homogeneous, robust, and capacity fade resistant composite titanium niobate...
4.
Stoyel Q, Voisard F, Brodusch N, Demopoulos G, Zaghib K, Gauvin R
Ultramicroscopy . 2020 Oct; 219:113126. PMID: 33091709
A method of calculating the magnitude of the core hole screening of lithium materials is implemented for the simulation of Energy Loss Near Edge Structure (ELNES). ELNES is calculated for...
5.
Larouche F, Tedjar F, Amouzegar K, Houlachi G, Bouchard P, Demopoulos G, et al.
Materials (Basel) . 2020 Feb; 13(3). PMID: 32050558
An exponential market growth of Li-ion batteries (LIBs) has been observed in the past 20 years; approximately 670,000 tons of LIBs have been sold in 2017 alone. This trend will...
6.
Wang H, Yasin A, Quitoriano N, Demopoulos G
Nanomaterials (Basel) . 2019 Sep; 9(10). PMID: 31561636
CuZnSnS(CZTS) is a promising semiconductor material for photovoltaic applications,with excellent optical and electronic properties while boasting a nontoxic, inexpensive, andabundant elemental composition. Previous high-quality CZTS thin films often required eithervacuum-based...
7.
Wang Z, Chiu H, Paolella A, Zaghib K, Demopoulos G
ChemSusChem . 2019 Feb; 12(10):2220-2230. PMID: 30770645
Integration of solar-energy harvesting and storage functions has attracted significant research attention, as it holds promise for ultimate development of light-chargeable devices. In this context, a functional nanocomposite anode that...
8.
Wang Z, Gauvin R, Demopoulos G
Nanoscale . 2017 May; 9(22):7650-7665. PMID: 28540970
CuZnSnS (CZTS), other than in standard p-n junction device architecture, can be employed as a broad light absorber upon coating onto a wide bandgap electron conducting TiO film. Earlier CZTS...
9.
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...
10.
Wang Z, Elouatik S, Demopoulos G
Phys Chem Chem Phys . 2016 Oct; 18(42):29435-29446. PMID: 27738685
Kesterite, a highly promising photo-absorbing crystalline form of CuZnSnS (CZTS), has been prepared via various routes. However, the lack of in-depth understanding of the dynamic phase formation process of kesterite...