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Chen Tao

Researcher at Wuhan University

Publications -  62
Citations -  3059

Chen Tao is an academic researcher from Wuhan University. The author has contributed to research in topics: Perovskite (structure) & Chemistry. The author has an hindex of 21, co-authored 46 publications receiving 2299 citations. Previous affiliations of Chen Tao include Istituto Italiano di Tecnologia & Jilin University.

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Structural and optical properties of methylammonium lead iodide across the tetragonal to cubic phase transition: implications for perovskite solar cells

TL;DR: In this article, temperature resolved UV-vis absorption and spectral photocurrent response measurements of MAPbI3 thin films and solar cells, together with ab initio simulations, were used to investigate the changes in material properties occurring across the tetragonal to cubic phase transition.
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Role of tungsten oxide in inverted polymer solar cells

TL;DR: Tungsten oxide (WO3) was inserted as an anode interfacial layer between the photoactive layer and top electrode in inverted polymer solar cells (PSCs) with nanocrystalline titanium dioxide as an electron selective layer as discussed by the authors.
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17.6% stabilized efficiency in low-temperature processed planar perovskite solar cells

TL;DR: In this paper, a planar perovskite solar cell with a stabilized power conversion efficiency (PCE) of 17.6% at the maximum power point and a PCE of 17% extracted from quasi-static J-V with an open-circuit voltage of 1.11 V is presented.
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Performance improvement of inverted polymer solar cells with different top electrodes by introducing a MoO3 buffer layer

TL;DR: In this paper, Molybdenum trioxide (MoO3) was inserted between the active layer and top electrode in inverted polymer solar cells (PSCs) with nanocrystalline titanium dioxide as an electron selective layer.
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Efficient, Large Area ITO-and-PEDOT-free Organic Solar Cell Sub-modules

TL;DR: The optimised MoO -Ag-MoO stack (MAMS) has an optical transmission of 80% at the wavelength of 520 nm, sheet resistance of 5 ohm sq and yields conversion efficiencies in 5 cm × 5 cm photoactive-area "sub-modules" of 3.17% - outperforming the equivalent conventional ITO/PEDOT:PSS devices.