
Electronic structure, optical properties and band edges of layered MoO3 ...
Apr 1, 2017 · MoO 3 is a n-type wide band-gap semiconductor with gap about 3.0 eV [8]. It crystalized in two layered polymorphs at ambient conditions, the thermodynamically stable …
Predicting Optical Band Gap of MoO3 Using Machine Learning …
Nov 23, 2023 · In this work, optical bandgap of MoO 3 has been predicted using three different machine learning algorithms which are gradient boosting regression, random forest …
Tweaking the Electronic and Optical Properties of α-MoO3 by …
Jul 4, 2018 · The band gap of mono-Se doped systems are 2.24, 2.20 and 2.35 eV for the Se t, Se a and Se s doping, respectively, which are comparable to the band gaps of the …
First-Principles Calculation of MoO2 and MoO3 Electronic and …
Band structure (A) and projected density of electronic states (B) of monoclinic MoO 2. Band structure (C) and projected density of electronic states (D) of orthorhombic MoO 3. The Fermi …
Interface Structure of MoO3 on Organic Semiconductors
Feb 16, 2016 · Wide band gap molecules such as 4,4′ -N,N′ -dicarbazole-biphenyl (CBP), which has a deep ionization potential of 6.0 eV, are known to form charge transfer complexes with …
Impact of lattice distortion and electron doping on α-MoO3
Nov 20, 2014 · According to their UPS valence band spectra, two gap states were observed for the metal deposited MoO 3 films. As they proposed, these states resemble the features of …
Optical Band-Gap of MoO 3 thin films undoped and doped with …
Optical Band-Gap of MoO 3 thin films undoped and doped with AuNPs. [...] Gold nanoparticles (AuNPs) were deposited by DC-magnetron sputtering onto molybdenum trioxide (MoO3) thin …
mp-20589: MoO3 (orthorhombic, Pnma, 62) - Materials Project
Browse many computed properties for this orthorhombic MoO3 compound, including formation energy from the elements, energy of decomposition into the set of most stable materials at this …
MoO3 overview: hexagonal plate-like MoO3 nanoparticles …
Jan 25, 2018 · UV–Vis spectrum confirms the electron transition and the band gap in MoO 3 nanoparticles. The presence of functional groups are confirmed by FT-IR spectroscopy. XRD …
MoO3: The Applications of Molybdenum Trioxide Nanoparticles …
Properties such as the band gap of MoO 3 nanoparticles are subsequently varied, with a reported band gap range of 2.8 – 6.6eV. Tight control of MoO 3 synthesis enables high-purity …
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