Perumal Dhandapani
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Explore the profile of Perumal Dhandapani including associated specialties, affiliations and a list of published articles.
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10
Citations
51
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Recent Articles
1.
Dhandapani P, Srinivasan V, Parthipan P, Alsalhi M, Devanesan S, Narenkumar J, et al.
Environ Geochem Health
. 2024 Feb;
46(3):81.
PMID: 38367190
This study presents an environmentally sustainable method for minimizing sludge production in the textile effluent sector through the combined application of electrokinetic (EK) and electrooxidation (EO) processes. AAS and XRF...
2.
Elumalai P, Kumar A, Dhandapani P, Cui J, Gao X, Prakash A, et al.
Environ Res
. 2023 Nov;
242:117753.
PMID: 38008204
Polycyclic aromatic hydrocarbons (PAHs) are potentially hazardous compounds that could cause a severe impact on many ecosystems. They are very challenging to remove using conventional methods due to their hydrophobic...
3.
Parthipan P, Cheng L, Dhandapani P, Rajasekar A
Sci Total Environ
. 2022 Oct;
856(Pt 2):159203.
PMID: 36202367
Sulfate-reducing bacteria (SRB) have impacted the biocorrosion process for various industrial sectors, especially in the oil and gas industry. The higher stability over extreme conditions is the key parameter for...
4.
Dhandapani P, Santhoshkumar M, Narenkumar J, Alsalhi M, Kumar P, Devanesan S, et al.
Bioprocess Biosyst Eng
. 2022 Sep;
45(11):1825-1837.
PMID: 36156176
This study aims to develop a reduced graphene oxide (RGO)-silver nanoparticles (AgNPs) coating on the cotton fabric (CT) surface using photoreduction with a hydrothermal process and evaluate the antibacterial activity...
5.
Impact of biosurfactant and iron nanoparticles on biodegradation of polyaromatic hydrocarbons (PAHs)
Parthipan P, Cheng L, Dhandapani P, Elumalai P, Huang M, Rajasekar A
Environ Pollut
. 2022 May;
306:119384.
PMID: 35504349
Polycyclic aromatic hydrocarbons (PAHs) are hazardous toxic contaminants and considered as primary pollutants due to their persistent nature and most of them are carcinogenic and mutagenic. The key challenge in...
6.
Dhandapani P, Alsalhi M, Karthick R, Chen F, Devanesan S, Kim W, et al.
J Hazard Mater
. 2020 Dec;
409:124661.
PMID: 33288337
In this study, we reported the biological approach to synthesis of ZnO nanorod (NR) on the reduced graphene oxide (RGO) for photocatalytic, antibacterial activity and hydrogen production under sunlight. Bacillus...
7.
Dhandapani P, Devanesan S, Narenkumar J, Maruthamuthu S, Alsalhi M, Rajasekar A, et al.
Saudi J Biol Sci
. 2020 Apr;
27(4):1130-1138.
PMID: 32256175
The ZnO particle with varieties of morphology was prepared from ice-cube of zinc ammonium complex at boiling water surface in 1 min induction of thermal shock. The zinc ammonium complex...
8.
Karuppusamy S, Pratheepkumar A, Dhandapani P, Maruthamuthu S, Kulandainathan M
J Biomed Nanotechnol
. 2015 Oct;
11(9):1535-49.
PMID: 26485925
Cellulose membranes were engineered to produce hydrophobic surfaces via a simple and soft chemical process to introduce multifunctional properties of an otherwise hydrophilic cellulose surface with polymer-grafted nanosilver to form...
9.
Dhandapani P, Maruthamuthu S, Rajagopal G
J Photochem Photobiol B
. 2012 Apr;
110:43-9.
PMID: 22483978
The nano-TiO(2) was synthesized biologically employing Bacillus subtilis (FJ460362). These nanoparticles were characterized by FTIR, TGA-DTA, UV-Visible spectroscopy, XRD and TEM. FTIR and TGA results confirm that the organic impurities...
10.
Subramanian B, Dhandapani P, Maruthamuthu S, Jayachandran M
J Biomater Appl
. 2010 Sep;
26(6):687-705.
PMID: 20819919
Titanium/titanium nitride (Ti/TiN) nanoscale multilayered films were deposited onto 316L stainless steel substrates by reactive magnetron sputtering using a Ti target. Coatings characterized by X-ray diffraction showed that the stack...