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PDF] Photoluminescence and Raman Studies of α-MoO3 Doped with Erbium and  Neodymium | Semantic Scholar
PDF] Photoluminescence and Raman Studies of α-MoO3 Doped with Erbium and Neodymium | Semantic Scholar

Humidity-driven degradation of sputtered molybdenum oxide and  molybdenum–titanium-oxide thin films - Journal of Materials Chemistry C  (RSC Publishing) DOI:10.1039/D2TC04267C
Humidity-driven degradation of sputtered molybdenum oxide and molybdenum–titanium-oxide thin films - Journal of Materials Chemistry C (RSC Publishing) DOI:10.1039/D2TC04267C

Yahoo!オークション - モリブデン酸水和物 10g MoO3・H2O 無機化合物標...
Yahoo!オークション - モリブデン酸水和物 10g MoO3・H2O 無機化合物標...

Molybdenum trioxide | MoO3 | CID 14802 - PubChem
Molybdenum trioxide | MoO3 | CID 14802 - PubChem

Oxygen deficient α-MoO3 with enhanced adsorption and state-quenching of H2O  for gas sensing: a DFT study - Journal of Materials Chemistry C (RSC  Publishing)
Oxygen deficient α-MoO3 with enhanced adsorption and state-quenching of H2O for gas sensing: a DFT study - Journal of Materials Chemistry C (RSC Publishing)

a) Sketch of the structural evolution upon heat-treatment of the... |  Download Scientific Diagram
a) Sketch of the structural evolution upon heat-treatment of the... | Download Scientific Diagram

MoO3 + H2 = Mo + H2O - Balanced Chemical Equation
MoO3 + H2 = Mo + H2O - Balanced Chemical Equation

Molecules | Free Full-Text | Nanostructured MoO3 for Efficient Energy and  Environmental Catalysis
Molecules | Free Full-Text | Nanostructured MoO3 for Efficient Energy and Environmental Catalysis

Figure 2 from The Synthesis of α-MoO3 by Ethylene Glycol | Semantic Scholar
Figure 2 from The Synthesis of α-MoO3 by Ethylene Glycol | Semantic Scholar

MoO3 Nanoparticles
MoO3 Nanoparticles

Aqueous synthesis of molybdenum trioxide (h-MoO3, α-MoO3·H2O and h-/α-MoO3  composites) and their photochromic properties study - ScienceDirect
Aqueous synthesis of molybdenum trioxide (h-MoO3, α-MoO3·H2O and h-/α-MoO3 composites) and their photochromic properties study - ScienceDirect

Interlayer gap widened α-phase molybdenum trioxide as high-rate anodes for  dual-ion-intercalation energy storage devices | Nature Communications
Interlayer gap widened α-phase molybdenum trioxide as high-rate anodes for dual-ion-intercalation energy storage devices | Nature Communications

Influence of MoO3(110) Crystalline Plane on Its Self-Charging  Photoelectrochemical Properties | Scientific Reports
Influence of MoO3(110) Crystalline Plane on Its Self-Charging Photoelectrochemical Properties | Scientific Reports

Molybdenum Oxide Nanopowder / MoO3 Nanoparticles (MoO3, 99.94+%, high  purity, 13-80 nm, Orthorhombic crystal)
Molybdenum Oxide Nanopowder / MoO3 Nanoparticles (MoO3, 99.94+%, high purity, 13-80 nm, Orthorhombic crystal)

Solved Balance the following redox half-equations. . Do not | Chegg.com
Solved Balance the following redox half-equations. . Do not | Chegg.com

Single Crystals of α-MoO3-Intercalated {Ni(H2O)6}2+ and Electrocatalytic  Water Reduction: Toward a Class of Molybdenum Bronzes | Inorganic Chemistry
Single Crystals of α-MoO3-Intercalated {Ni(H2O)6}2+ and Electrocatalytic Water Reduction: Toward a Class of Molybdenum Bronzes | Inorganic Chemistry

Keggin-type polycationic AlO4Al12(OH)24(H2O)127+ intercalated MoO3  composites for methyl orange adsorption
Keggin-type polycationic AlO4Al12(OH)24(H2O)127+ intercalated MoO3 composites for methyl orange adsorption

Influence of the annealing temperature on the formation of Mo17O47 and MoO3  nanoparticles and their Photocatalytic performances for the degradation of  MB dye | Journal of Materials Science: Materials in Electronics
Influence of the annealing temperature on the formation of Mo17O47 and MoO3 nanoparticles and their Photocatalytic performances for the degradation of MB dye | Journal of Materials Science: Materials in Electronics

Water (Non-)Interaction with MoO3 | The Journal of Physical Chemistry C
Water (Non-)Interaction with MoO3 | The Journal of Physical Chemistry C

Water (Non-)Interaction with MoO3 | The Journal of Physical Chemistry C
Water (Non-)Interaction with MoO3 | The Journal of Physical Chemistry C

Full article: Thermal stability and photoluminescence property of hexagonal  MoO3·0.55H2O microrods
Full article: Thermal stability and photoluminescence property of hexagonal MoO3·0.55H2O microrods

Charge redistribution for MoO3-H2O (a), MoO3-4H2O (b), and VO-MoO3-H2O |  Download Scientific Diagram
Charge redistribution for MoO3-H2O (a), MoO3-4H2O (b), and VO-MoO3-H2O | Download Scientific Diagram

Water (Non-)Interaction with MoO3 | The Journal of Physical Chemistry C
Water (Non-)Interaction with MoO3 | The Journal of Physical Chemistry C

A schematic view of the crystalline structures of MoO 3 ·2H 2 O, β-MoO... |  Download Scientific Diagram
A schematic view of the crystalline structures of MoO 3 ·2H 2 O, β-MoO... | Download Scientific Diagram

MoO3 + H2 = Mo + H2O - Balanced Chemical Equation
MoO3 + H2 = Mo + H2O - Balanced Chemical Equation

Water (Non-)Interaction with MoO3 | The Journal of Physical Chemistry C
Water (Non-)Interaction with MoO3 | The Journal of Physical Chemistry C

Hydrophobic/Hydrophilic Interplay in 1,2,4‐Triazole‐ or Carboxylate‐Based  Molybdenum(VI) Oxide Hybrids: A Step Toward Development of Reaction‐Induced  Self‐Separating Catalysts - Lysenko - 2021 - ChemCatChem - Wiley Online  Library
Hydrophobic/Hydrophilic Interplay in 1,2,4‐Triazole‐ or Carboxylate‐Based Molybdenum(VI) Oxide Hybrids: A Step Toward Development of Reaction‐Induced Self‐Separating Catalysts - Lysenko - 2021 - ChemCatChem - Wiley Online Library

Thermogravimetric analysis of MoO3-H2O from 50 to 650 °C. | Download  Scientific Diagram
Thermogravimetric analysis of MoO3-H2O from 50 to 650 °C. | Download Scientific Diagram

Keggin-type polycationic AlO4Al12(OH)24(H2O)127+ intercalated MoO3  composites for methyl orange adsorption,Chinese Chemical Letters - X-MOL
Keggin-type polycationic AlO4Al12(OH)24(H2O)127+ intercalated MoO3 composites for methyl orange adsorption,Chinese Chemical Letters - X-MOL