Materials Science, Condensed Matter Physics, Mechanics of Materials, Multidisciplinary
41
Scopus Publications
829
Scholar Citations
19
Scholar h-index
28
Scholar i10-index
Scopus Publications
Influence of molybdenum on structural, morphological, optical and electrochemical properties of ZnO nanoparticles P. Sakthivel, P. Periasamy, N. Dineshbabu, T. Suthan, N. Chidhambaram, K. Ravichandran Next Materials, 2026 The present research explores the addition of molybdenum (Mo)-doped ZnO nanoparticles synthesized using a hydrothermal method. The initial goal of the study is to remove the inherent downsides of pristine ZnO nanostructures corresponding to low electrical conductivity and low electrochemical activity by defect engineering. Pure ZnO nanomaterials were enriched with 2-percent (mol) of Mo and characterised using X-ray diffraction (XRD), scanning electron microscopy (SEM), Fourier-transform infrared spectroscopy (FT-IR), UV–visible spectroscopy, photoluminescence (PL), cyclic voltammetry (CV), and electrochemical impedance spectroscopy (EIS). The XRD analysis indicated the formation of single-stage hexagonal wurtzite ZnO with the successful addition of Mo in the lattice as well as contraction of the lattice, decreased crystallite size (between 30 nm and 22 nm) and increased microstrain. The morphological analysis showed that the agglomeration is lower and increased heterogeneity on the surface of the doped sample. Optical studies revealed that the defect induced intermediate energy states between 3.5 eV and 3.7 eV, with the blue-shift of the absorption edge and increased bandgap of 3.5 eV to 3.7 eV. The photoluminescence measurements further proved the high defect density by the suppression of near-band-edge emission and high deep-level emissions. The electrochemical analysis demonstrated that the performance of Mo-doped ZnO has significantly improved, and a reduced resistance to charge transfer (7.7 kΩ). These enhancements have arisen due to the defect-assisted pseudocapacitive behavior, increased electroactive sites and improved charge transfer kinetics. The specific capacitance for pure and Mo-doped ZnO nanostructure was called 78 F/g and 91 F/g respectively. Finally, the present study demonstrates that dopant-induced structural changes and multifunctional behavior are directly correlated with Mo-doped ZnO, which makes such material a promising candidate to be used in energy storage, optoelectronics and sensing applications.
Anti Microbial Activity, Vibrational, Electronic and Topology Analysis of 3, 4, 5-Trimethoxybenzaldehyde P. R. Babila, E. S. Ashlin, R. P. Jebin, T. Suthan, G. Edwin Sheela Polycyclic Aromatic Compounds, 2024 The density functional theory (DFT) approach has become one of the most gainful means to scrutinize the molecular structure and vibrational spectra are finding well-known use in the applications related to biological systems. The experimental and theoretical on the molecular structure, electronic, and characteristics of 3, 4, 5-Trimethoxybenzaldehyde (TMB) are reported. The structure of the molecule was optimized and structural characteristics were determined by DFT using the wb97xd method with 6-311 G++ (d, p) basis sets. The vibrational assignments were made on the basis of potential energy distribution. A good consistency between the observed and calculated spectra was achieved. The intramolecular charge transfer and second-order perturbation theory of Fock Matrix in Natural bond orbital analysis by means NBO analysis. It shows the electronic stability of the compound arising from hyper conjugative interactions and charge delocalization of that molecule. Besides, the HOMO-LUMO, MEP, and Fukui were performed. In this review, the present benzaldehyde derivatives for skirmishing against bacteria strain Escherichia coli and fungi strain Candida Sp. Spectral and quantum chemical calculations are also discussed. HIGHLIGHTS The molecular structure of 3, 4, 5-Trimethoxybenzaldehyde was optimized based on the DFT technique with wb97xd/6-311++G (d, p) basis set. 3, 4, 5-Trimethoxybenzaldehyde was characterized based on FT-IR, FT-Raman, and UV-Vis spectral analysis. Quantum chemical computations are performed to analyze the HOMO-LUMO, Fukui, and MESP property. Molecular docking analysis shows the biological activity. In vitro analysis of the antimicrobial activity of 3, 4, 5-Trimethoxybenzaldehyde was tested against bacterial strain Escherichia coli and fungi strain Candida Spices.
Influence of molybdenum on structural, morphological, optical and electrochemical properties of ZnO nanoparticles P Sakthivel, P Periasamy, N Dineshbabu, T Suthan, N Chidhambaram, ... Next Materials 12, 102239 , 2026 2026
Growth and characterization of organic 2, 5-dichloronitrobenzene single crystals for nonlinear optical applications SW Mithra, T Suthan, C Gnanasambandam, KU Madhu, NP Rajesh, ... Journal of Materials Science: Materials in Electronics 37 (9), 651 , 2026 2026
Growth and characterisation of organic material 4-dimethylaminopyridine single crystals for nonlinear optical applications S Prince, T Suthan, C Gnanasambandam, CS Biju, P Sakthivel Journal of Materials Science: Materials in Electronics 36 (2), 101 , 2025 2025 Citations: 4
Growth and characterization of organic 5-methyl-2-hydroxy-3-nitroacetophenone single crystals for nonlinear optical applications TR Anitha, T Suthan, C Gnanasambandam, PPA Priya, TCS Girisun Journal of Materials Science: Materials in Electronics 35 (34), 2153 , 2024 2024 Citations: 1
Growth and characterization of organic 4-chloroaniline single crystals for nonlinear optical applications TR Anitha, S Prince, T Suthan, C Gnanasambandam, NP Rajesh, ... Journal of Materials Science: Materials in Electronics 35 (19), 1324 , 2024 2024 Citations: 12
Growth and characterization of organic p-nitroacetophenone single crystals for nonlinear optical applications TR Anitha, S Goma, T Suthan, C Gnanasambandam, TCS Girisun Journal of Materials Science: Materials in Electronics 35 (17), 1129 , 2024 2024 Citations: 9
Anti Microbial Activity, Vibrational, Electronic and Topology Analysis of 3, 4, 5-Trimethoxybenzaldehyde PR Babila, ES Ashlin, RP Jebin, T Suthan, G Edwin Sheela Polycyclic Aromatic Compounds 44 (5), 3100-3120 , 2024 2024 Citations: 6
Experimental and computational studies of organic 4-[[(4-chlorophenyl) imino] methyl] phenol single crystals for optic and biological applications CS Rose, T Suthan, SM Delphine, CCW Bell, S Athimoolam Journal of Molecular Structure 1288, 135779 , 2023 2023 Citations: 4
Growth and characterization of organic 4-hydroxybenzophenone single crystals for nonlinear optical applications ML Lima Rose, T Suthan, C Gnanasambandam, TC Sabari Girisun, ... Journal of Materials Science: Materials in Electronics 34 (25), 1773 , 2023 2023 Citations: 4
Growth and characterization of organic 2, 4-dihydroxybenzophenone single crystals for nonlinear optical applications MLL Rose, T Suthan, S Goma, C Gnanasambandam, TCS Girisun Journal of Materials Science: Materials in Electronics 34 (21), 1604 , 2023 2023 Citations: 10
Growth and characterization of organic 2, 3, 4-trihydroxybenzophenone single crystals for nonlinear optical applications ML Lima Rose, T Suthan, C Gnanasambandam, TC Sabari Girisun Journal of Materials Science: Materials in Electronics 34 (10), 884 , 2023 2023 Citations: 12
Studies on crystal growth, experimental, structural, DFT, optical, thermal and biological studies of 3-hydroxy-4-methoxybenzaldehyde single crystals CS Rose, T Suthan, SM Delphine, CCW Bell, NCJP Lekshmi Heliyon 9 (4) , 2023 2023 Citations: 6
Growth and characterization of organic 2, 2′, 4, 4′-tetrahydroxybenzophenone single crystals for nonlinear optical applications MLL Rose, T Suthan, S Goma, C Gnanasambandam, TCS Girisun J. Mater. Sci: Mater. Electron 34, 1679 , 2023 2023
Growth and characterization of organic 4-methoxy-2-nitroaniline single crystals for optical applications S Prince, T Suthan, S Goma, C Gnanasambandam, NP Rajesh Journal of Materials Science: Materials in Electronics 34 (3), 165 , 2023 2023 Citations: 24
Growth and characterization of organic 2-methoxy-4-nitroaniline single crystal for optical applications PPA Priya, T Suthan, SAT Raja, VB Jothy Journal of Materials Science: Materials in Electronics 33 (17), 14214-14227 , 2022 2022 Citations: 16
Growth And Characterization Of Organic 2, 4-Dihydroxyacetophenone Single Crystals. PP Priya, T Suthan, SA Thambi Raja, VB Jothy, GB Sankar Webology 19 (2) , 2022 2022
Growth and characterization of organic 2, 4-dinitroaniline single crystals for optical applications S Prince, T Suthan, C Gnanasambandam Journal of Electronic Materials 51 (4), 1639-1652 , 2022 2022 Citations: 38
Growth and characterization of organic 4-methyl-2-nitroaniline single crystals for nonlinear optical applications S Prince, T Suthan, C Gnanasambandam, NP Rajesh, G Vinitha Journal of Materials Science: Materials in Electronics 33 (8), 5909-5923 , 2022 2022 Citations: 20
Growth and characterization of organic material 3, 4-dimethoxybenzaldehyde-2, 4-dinitroaniline single crystal RP Jebin, T Suthan, TR Anitha, NP Rajesh, G Vinitha Journal of Materials Science: Materials in Electronics 32 (3), 3232-3246 , 2021 2021 Citations: 25
Growth and characterization of organic material 2-bromobenzyl alcohol single crystal by vertical Bridgman technique S Siva Bala Solanki, NP Rajesh, T Suthan Journal of Materials Science: Materials in Electronics 32 (2), 1808-1817 , 2021 2021 Citations: 13
MOST CITED SCHOLAR PUBLICATIONS
Growth and characterization of benzil single crystals using nanotranslation by the modified vertical Bridgman technique T Suthan, PV Dhanaraj, NP Rajesh, CK Mahadevan, ... CrystEngComm 13 (12), 4018-4024 , 2011 2011 Citations: 70
Growth and characterization of naphthalene single crystals grown by modified vertical Bridgman method T Suthan, NP Rajesh, PV Dhanaraj, CK Mahadevan Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy 75 (1 … , 2010 2010 Citations: 65
Growth and characterization of organic material 4-nitrobenzaldehyde single crystal using modified vertical Bridgman technique T Suthan, NP Rajesh Journal of crystal growth 312 (21), 3156-3160 , 2010 2010 Citations: 58
Synthesis, crystal growth and characterization of a semiorganic material: calcium dibromide bis (glycine) tetrahydrate PV Dhanaraj, T Suthan, NP Rajesh Current Applied Physics 10 (5), 1349-1353 , 2010 2010 Citations: 48
Growth and characterization of organic material 3-hydroxybenzaldehyde single crystal by modified vertical Bridgman technique T Suthan, PV Dhanaraj, NP Rajesh Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy 87, 194-198 , 2012 2012 Citations: 43
Growth and characterization of organic material 2-hydroxypyridine single crystal by modified vertical Bridgman technique T Suthan, NP Rajesh, CK Mahadevan, D Sajan, G Bhagavannarayana Materials Chemistry and Physics 130 (3), 915-920 , 2011 2011 Citations: 42
Studies on crystal growth and physical properties of 2-amino-5-chloropyridine single crystal T Suthan, NP Rajesh, CK Mahadevan, G Bhagavannarayana Materials Chemistry and Physics 129 (1-2), 433-438 , 2011 2011 Citations: 40
Growth and characterization of 2-hydroxy-4-methoxybenzophenone single crystal using modified vertical Bridgman technique T Suthan, NP Rajesh, CK Mahadevan, G Bhagavannarayana Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy 78 (2 … , 2011 2011 Citations: 39
Growth and characterization of organic 2, 4-dinitroaniline single crystals for optical applications S Prince, T Suthan, C Gnanasambandam Journal of Electronic Materials 51 (4), 1639-1652 , 2022 2022 Citations: 38
Growth and characterization of organic material 2-methylamino-5-chlorobenzophenone single crystal by modified vertical Bridgman technique T Suthan, NP Rajesh, CK Mahadevan, KS Kumar, G Bhagavannarayana Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy 79 (5 … , 2011 2011 Citations: 36
Studies on crystal growth and physical properties of 4-(dimethylamino) benzaldehyde-2, 4-dinitroaniline single crystal RP Jebin, T Suthan, NP Rajesh, G Vinitha, SAB Dhas Optical Materials 57, 163-168 , 2016 2016 Citations: 27
Growth and characterization of organic material 4-dimethylaminobenzaldehyde single crystal RP Jebin, T Suthan, NP Rajesh, G Vinitha, U Madhusoodhanan Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy 135, 959-964 , 2015 2015 Citations: 27
Growth and characterization of organic material 3, 4-dimethoxybenzaldehyde-2, 4-dinitroaniline single crystal RP Jebin, T Suthan, TR Anitha, NP Rajesh, G Vinitha Journal of Materials Science: Materials in Electronics 32 (3), 3232-3246 , 2021 2021 Citations: 25
Growth and characterization of organic 4-methoxy-2-nitroaniline single crystals for optical applications S Prince, T Suthan, S Goma, C Gnanasambandam, NP Rajesh Journal of Materials Science: Materials in Electronics 34 (3), 165 , 2023 2023 Citations: 24
Growth and characterization of organic material 3, 4, 5-trimethoxybenzaldehyde single crystal for optical applications RP Jebin, T Suthan, NP Rajesh, G Vinitha Optics & Laser Technology 115, 500-507 , 2019 2019 Citations: 24
Growth and characterization of benzyl 4-hydroxybenzoate single crystal by vertical Bridgman technique for optical applications SSB Solanki, NP Rajesh, T Suthan Optics & Laser Technology 103, 163-169 , 2018 2018 Citations: 23
Growth and characterization of organic 4-methyl-2-nitroaniline single crystals for nonlinear optical applications S Prince, T Suthan, C Gnanasambandam, NP Rajesh, G Vinitha Journal of Materials Science: Materials in Electronics 33 (8), 5909-5923 , 2022 2022 Citations: 20
Growth and characterization of ethyl 4-hydroxybenzoate single crystals by modified vertical Bridgman technique SSB Solanki, NP Rajesh, T Suthan Optics & Laser Technology 93, 143-148 , 2017 2017 Citations: 19
Molecular structure, NBO analysis, electronic absorption and vibrational spectral analysis of 2-Hydroxy-4-Methoxybenzophenone: Reassignment of fundamental modes L Joseph, D Sajan, K Chaitanya, T Suthan, NP Rajesh, J Isac Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy 120, 216-227 , 2014 2014 Citations: 19
Growth and characterization of organic 2-methoxy-4-nitroaniline single crystal for optical applications PPA Priya, T Suthan, SAT Raja, VB Jothy Journal of Materials Science: Materials in Electronics 33 (17), 14214-14227 , 2022 2022 Citations: 16