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Efficient Adsorption Characteristics of Pristine and Silver‐Doped Graphene Oxide Towards Contaminants: A Potential Membrane Material for Water Purification?
Author(s) -
Panigrahi Puspamitra,
Dhinakaran Ashok Kumar,
Sekar Yuvaraj,
Ahuja Rajeev,
Hussain Tanveer
Publication year - 2018
Publication title -
chemphyschem
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.016
H-Index - 140
eISSN - 1439-7641
pISSN - 1439-4235
DOI - 10.1002/cphc.201800223
Subject(s) - graphene , adsorption , oxide , doping , portable water purification , membrane , chemical engineering , nanomaterials , materials science , contamination , water treatment , chemistry , nanotechnology , environmental chemistry , inorganic chemistry , environmental engineering , environmental science , organic chemistry , metallurgy , biochemistry , engineering , ecology , optoelectronics , biology
In this work, we have investigated the potential of pristine and silver (Ag)‐functionalized graphene oxide monolayers GO (GO−Ag) as efficient membranes for water filtration. Our first principles calculations based on density functional theory (DFT) reveal the hydrophilic nature of GO surfaces. The phonon frequency calculations within density functional perturbation theory (DFPT) confirmed the stability of GO sheets in aqueous media. Van der Waals‐corrected binding energies of GO sheet towards heavy metals suggest that even pristine GO sheets are completely impermeable to various heavy metals like arsenic (As) and lead (Pb). However, compared to GO, the GO−Ag sheets have a much higher affinity towards the three amino acids histidine, phenyl‐alanine and tyrosine, which are the main component of a bacteria cell wall. The GO−Ag sheet is found to be extremely efficient for bacteria inactivation.

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