Professor

Phung Thi Viet Bac

Affiliation: VinUniversity, Hanoi, Viet Nam

phung.thi viet bac@vinuni-scopus.fake

Introduction

Affiliation: VinUniversity, Hanoi, Viet Nam

Research Output

Adsorption mechanisms of ethanol, propanal, butanone, and benzene on the monolayer WS₂ Surface: Insights from non-local van der Waals density functional theory

Tran Quang Huy, Luong Thi Theu, Nguyen Thi Hai Yen, Tran Thi Nhan, Phung Viet Bac T., Dinh Van An
  • Adsorption
  • Benzene
  • Butanone
  • Ethanol
  • Propanal
  • VOC
  • WS2, DFT

Resolving adsorption mechanism of sodium polysulfides on Tim+1CmO2 MXenes for application in sodium-sulfur batteries: A first-principles study

Dang Minh Triet, Long Nguyen Truong, Thi Phung Viet Bac, Trang Nguyen Thi Bao, Nguyen Truc Anh, Tran Thi Nhan, Duy Nguyen Vo Anh, Van Nguyen To, Nghia Nguyen Van, Schall Peter
  • Anchoring materials
  • Density functional theory
  • MXenes
  • Sodium sulfide clusters
  • Sodium-sulfur batteries

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Keyphrases

  • Biomass
  • Energy storage
  • Pore structure
  • Pseudo-capacitive
  • Sugarcane bagasse
  • Adsorption
  • Benzene
  • Butanone
  • Ethanol
  • Propanal
  • VOC
  • WS2, DFT
  • CuBDC
  • CuBTC
  • Gel polymer electrolyte
  • Metal organic frameworks
  • Supercapacitors
  • Anchoring materials
  • Density functional theory
  • MXenes
  • Sodium sulfide clusters
  • Sodium-sulfur batteries
  • Chemical Engineering
  • Environmental engineering
  • Water geochemistry
  • Water resources engineering
  • cathode materials
  • O3-type layered structure
  • performance
  • sodium-ion batteries
  • sol–gel process
  • zinc doping
  • ammonia
  • co-adsorption
  • DFT calculations
  • graphene/hexagonal boron nitride heterostructures
  • water
  • Hybridized device
  • Hydrovoltaic capacitor
  • Piezoelectric
  • Sensor system
  • Solid-state battery
  • density functional theory
  • DFT
  • machine learning
  • materials informatics
  • metal-organic frameworks
  • MOFs
  • neural network model
  • All-solid-state supercapacitor
  • High energy density
  • Hybrid supercapacitor
  • Synergistic effect

Computer Science

  • Forestry

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