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Structural and Electronic Properties of Iron-Doped Sodium Montmorillonite  Clays: A First-Principles DFT Study | ACS Omega
Structural and Electronic Properties of Iron-Doped Sodium Montmorillonite Clays: A First-Principles DFT Study | ACS Omega

Competitive Adsorption of Uranyl and Toxic Trace Metal Ions at MFe2O4- montmorillonite (M = Mn, Fe, Zn, Co, or Ni) Interfaces | SpringerLink
Competitive Adsorption of Uranyl and Toxic Trace Metal Ions at MFe2O4- montmorillonite (M = Mn, Fe, Zn, Co, or Ni) Interfaces | SpringerLink

Basics of Clay Minerals and Their Characteristic Properties | IntechOpen
Basics of Clay Minerals and Their Characteristic Properties | IntechOpen

Synthesis and characterization of low dimensional ZnS- and  PbS-semiconductor particles on a montmorillonite template - Physical  Chemistry Chemical Physics (RSC Publishing)
Synthesis and characterization of low dimensional ZnS- and PbS-semiconductor particles on a montmorillonite template - Physical Chemistry Chemical Physics (RSC Publishing)

Structural and Electronic Properties of Iron-Doped Sodium Montmorillonite  Clays: A First-Principles DFT Study | ACS Omega
Structural and Electronic Properties of Iron-Doped Sodium Montmorillonite Clays: A First-Principles DFT Study | ACS Omega

Insights into the Nature of the Active Sites of Tin‐Montmorillonite for the  Synthesis of Polyoxymethylene Dimethyl Ethers (OME) - Baranowski - 2019 -  ChemCatChem - Wiley Online Library
Insights into the Nature of the Active Sites of Tin‐Montmorillonite for the Synthesis of Polyoxymethylene Dimethyl Ethers (OME) - Baranowski - 2019 - ChemCatChem - Wiley Online Library

The chemical structure of montmorillonite, Na þ MMT. | Download Scientific  Diagram
The chemical structure of montmorillonite, Na þ MMT. | Download Scientific Diagram

Model structure of dry montmorillonite. The clay layer is represented... |  Download Scientific Diagram
Model structure of dry montmorillonite. The clay layer is represented... | Download Scientific Diagram

a Diffractogram of multi composites, b energy band gap of TiO2 pristine...  | Download Scientific Diagram
a Diffractogram of multi composites, b energy band gap of TiO2 pristine... | Download Scientific Diagram

Montmorillonite - an overview | ScienceDirect Topics
Montmorillonite - an overview | ScienceDirect Topics

Estimating band gaps of pristine TiO2 nanoparticles (a), MMT (b),... |  Download Scientific Diagram
Estimating band gaps of pristine TiO2 nanoparticles (a), MMT (b),... | Download Scientific Diagram

Emerging WS2/montmorillonite composite nanosheets as an efficient  hydrophilic photocatalyst for aqueous phase reactions | Scientific Reports
Emerging WS2/montmorillonite composite nanosheets as an efficient hydrophilic photocatalyst for aqueous phase reactions | Scientific Reports

Ni and Zn modified acid activated montmorillonite clay for effective  removal of carbol fuchsin dye from aqueous solution | SpringerLink
Ni and Zn modified acid activated montmorillonite clay for effective removal of carbol fuchsin dye from aqueous solution | SpringerLink

Photocatalytic reduction of carbon dioxide with water vapors over  montmorillonite modified TiO2 nanocomposites - ScienceDirect
Photocatalytic reduction of carbon dioxide with water vapors over montmorillonite modified TiO2 nanocomposites - ScienceDirect

Modeling the Acid–Base Properties of Montmorillonite Edge Surfaces |  Environmental Science & Technology
Modeling the Acid–Base Properties of Montmorillonite Edge Surfaces | Environmental Science & Technology

Structural and Electronic Properties of Iron-Doped Sodium Montmorillonite  Clays: A First-Principles DFT Study | ACS Omega
Structural and Electronic Properties of Iron-Doped Sodium Montmorillonite Clays: A First-Principles DFT Study | ACS Omega

Computational screening of transition metal-doped CdS for photocatalytic  hydrogen production | npj Computational Materials
Computational screening of transition metal-doped CdS for photocatalytic hydrogen production | npj Computational Materials

First‐Principles Design of Na‐ion Superionic Conductors: Interstitial‐Based  Na Diffusion in NaCuZrS3 - Wang - 2022 - Chemistry – A European  Journal - Wiley Online Library
First‐Principles Design of Na‐ion Superionic Conductors: Interstitial‐Based Na Diffusion in NaCuZrS3 - Wang - 2022 - Chemistry – A European Journal - Wiley Online Library

Minerals | Free Full-Text | Investigation on Atomic Structure and  Mechanical Property of Na- and Mg-Montmorillonite under High Pressure by  First-Principles Calculations
Minerals | Free Full-Text | Investigation on Atomic Structure and Mechanical Property of Na- and Mg-Montmorillonite under High Pressure by First-Principles Calculations

Variations of Chemical Composition and Band Gap Energies in Hectorite and  Montmorillonite Clay Minerals on Sub-Micron Length Sca
Variations of Chemical Composition and Band Gap Energies in Hectorite and Montmorillonite Clay Minerals on Sub-Micron Length Sca

Magnetic iron oxide/clay nanocomposites for adsorption and catalytic  oxidation in water treatment applications
Magnetic iron oxide/clay nanocomposites for adsorption and catalytic oxidation in water treatment applications

Relationships between Distortions of Inorganic Framework and Band Gap of  Layered Hybrid Halide Perovskites | Chemistry of Materials
Relationships between Distortions of Inorganic Framework and Band Gap of Layered Hybrid Halide Perovskites | Chemistry of Materials

Can Tauc plot extrapolation be used for direct-band-gap semiconductor  nanocrystals?: Journal of Applied Physics: Vol 117, No 12
Can Tauc plot extrapolation be used for direct-band-gap semiconductor nanocrystals?: Journal of Applied Physics: Vol 117, No 12

DFT Study of Electronic Structure and Optical Properties of Kaolinite,  Muscovite, and Montmorillonite
DFT Study of Electronic Structure and Optical Properties of Kaolinite, Muscovite, and Montmorillonite

Crystals | Free Full-Text | DFT Study of Electronic Structure and Optical  Properties of Kaolinite, Muscovite, and Montmorillonite
Crystals | Free Full-Text | DFT Study of Electronic Structure and Optical Properties of Kaolinite, Muscovite, and Montmorillonite