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Muhammad Ali Ehsan

Researcher at King Fahd University of Petroleum and Minerals

Publications -  81
Citations -  1366

Muhammad Ali Ehsan is an academic researcher from King Fahd University of Petroleum and Minerals. The author has contributed to research in topics: Thin film & Chemical vapor deposition. The author has an hindex of 18, co-authored 80 publications receiving 855 citations. Previous affiliations of Muhammad Ali Ehsan include University of Malaya.

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First theoretical framework of Z-shaped acceptor materials with fused-chrysene core for high performance organic solar cells.

TL;DR: Low values of binding energy, excitation energy, and reorganizational energy (electron and hole) suggest that novel designed molecules offer high charge mobilities as compared to FCIC.
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Core-Shell Vanadium Modified Titania@β-In2S3 Hybrid Nanorod Arrays for Superior Interface Stability and Photochemical Activity.

TL;DR: Findings highlight the significance of modifications in host substrates and interfaces, which have profound implications on interphase stability, photocatalysis and solar-fuel-based devices.
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Nanoscale palladium as a new benchmark electrocatalyst for water oxidation at low overpotential

TL;DR: In this article, a nanoscale nanoporous Pd-derived benchmark material was used as a highly stable and low overpotential electrocatalyst for water oxidation, achieving an onset potential of just 1.43 V vs. RHE; η = 200 mV.
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Fabrication of pristine Mn2O3 and Ag–Mn2O3 composite thin films by AACVD for photoelectrochemical water splitting

TL;DR: The Ag-Mn2O3 composite film displayed enhanced photocatalytic activity in photoelectrochemical (PEC) water splitting and yielded a photocurrent of 3 mA cm(-2) at 0.7 V versus Ag/AgCl which was 1.6 times higher than a pristine Mn2 O3 film alone, under AM 1.5 G illumination.
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Performance of cobalt titanate towards H2O2 based catalytic oxidation of lignin model compound

TL;DR: In this article, mixed metal cobalt titanium oxide (CoTiO3) prepared by solution phase method has been evaluated for the liquid phase catalytic oxidation of vainlly alcohol to vanillin using H2O2 as an oxygen source.