Publications

A consolidated archive of books, book chapters, peer-reviewed journal articles, and citation records showcasing the depth and impact of our research initiatives.

Books/Chapters

2021

Photosensitizers and Applications

(Edited by Davor Margetic and Renjith Thomas)
Published by: Nova Publishers
Book
2021

Renjith Thomas, T Pooventhiran

Comprehensive quantum mechanical study of structural features, reactivity, molecular properties and wave function based characteristics of Capmatinib, (Ed Dibya R Pai) Advanced Materials and Nano systems: Theory and Experiment
Published by: Bentham Publishers
Chapter
2021

Renjith Thomas, Anila Skariah

Sars Covid-2 : Vaccines, drug repurposing, global heath security and mental well-being, (Ed Dhiraj Singh) Covid-10 Crisis and India
Published by: New Delhi
Chapter

Journal Articles

[37]

A.H. Almuqrin, J.S. Al-Otaibi, Y.S. Mary, R. Thomas, S. Kaya, D.Ö. Işın, Spectral analysis and detailed quantum mechanical investigation of some acetanilide analogues and their self-assemblies with graphene and fullerene, J. Mol. Model. 26 (2020) 254. https://doi.org/10.1007/s00894-020-04485-3.

2020View
[36]

S. Beegum, Y.S. Mary, Y.S. Mary, R. Thomas, S. Armaković, S.J. Armaković, J. Zitko, M. Dolezal, C. Van Alsenoy, Exploring the detailed spectroscopic characteristics, chemical and biological activity of two cyanopyrazine-2-carboxamide derivatives using experimental and theoretical tools, Spectrochim. Acta – Part A Mol. Biomol. Spectrosc. 224 (2020) 1–13. https://doi.org/10.1016/j.saa.2019.117414.

2020View
[35]

K.E. Srikanth, A. Veeraiah, T. Pooventhiran, R. Thomas, K.A. Solomon, C.J. Soma Raju, J.N.L. Latha, Detailed molecular structure (XRD), conformational search, spectroscopic characterization (IR, Raman, UV, fluorescence), quantum mechanical properties and bioactivity prediction of a pyrrole analogue, Heliyon. 6 (2020). https://doi.org/10.1016/j.heliyon.2020.e04106.

2020View
[34]

T. Pooventhiran, U. Bhattacharyya, D.J. Rao, V. Chandramohan, P. Karunakar, A. Irfan, Y.S. Mary, R. Thomas, Detailed spectra, electronic properties, qualitative non-covalent interaction analysis, solvatochromism, docking and molecular dynamics simulations in different solvent atmosphere of cenobamate, Struct. Chem. 31 (2020) 2475–2485. https://doi.org/10.1007/s11224-020-01607-8.

2020View
[33]

A. Irfan, M. Imran, R. Thomas, M.W. Mumtaz, M.A.R. Basra, S. Ullah, A.G. Al-Sehemi, M.A. Assiri, Hole transport nature exploration of 4,4-Difluoro-8-(C4H3X)-4-bora-3a,4a-diaza-s-indacene (X{{0.167em}}={{0.167em}}O, S, Se) ({BODIPY}) systems, Mol. Simul. 46 (2020) 1334–1339. https://doi.org/10.1080/08927022.2020.1820005.

2020View
[32]

J.S. Al-Otaibi, Y.S. Mary, S. Armaković, R. Thomas, Hybrid and bioactive cocrystals of pyrazinamide with hydroxybenzoic acids: Detailed study of structure, spectroscopic characteristics, other potential applications and noncovalent interactions using SAPT, J. Mol. Struct. 1202 (2020) 127316. https://doi.org/10.1016/j.molstruc.2019.127316.

2020View
[31]

D. Majumdar, Y. Agrawal, R. Thomas, Z. Ullah, M.K. Santra, S. Das, T.K. Pal, K. Bankura, D. Mishra, Syntheses, characterizations, crystal structures, DFT/TD-DFT, luminescence behaviors and cytotoxic effect of bicompartmental Zn (II)-dicyanamide Schiff base coordination polymers: An approach to apoptosis, autophagy and necrosis type classical cell death, Appl. Organomet. Chem. 34 (2020).

2020View
[30]

A. Irfan, M. Imran, R. Thomas, M.W. Mumtaz, M.A. Qayyum, S. Ullah, M.A. Assiri, A.G. Al-Sehemi, Exploration of electronic nature and intrinsic mobility of 10-(1,3-dithiol-2-ylidene)anthracene based organic semiconductor materials, Optik (Stuttg). 224 (2020). https://doi.org/10.1016/j.ijleo.2020.165530.

2020View
[29]

V.S. Kumar, Y.S. Mary, K. Pradhan, D. Brahman, Y.S. Mary, R. Thomas, M.S. Roxy, C.V. Alsenoy, Synthesis, spectral properties, chemical descriptors and light harvesting studies of a new bioactive azo imidazole compound, J. Mol. Struct. 1199 (2020). https://doi.org/10.1016/j.molstruc.2019.127035.

2020View
[28]

A. Bielenica, S. Beegum, Y.S. Mary, Y.S. Mary, R. Thomas, S. Armaković, S.J. Armaković, S. Madeddu, M. Struga, C. Van Alsenoy, Experimental and computational analysis of 1-(4-chloro-3-nitrophenyl)-3-(3,4-dichlorophenyl)thiourea, J. Mol. Struct. 1205 (2020) 127587. https://doi.org/10.1016/j.molstruc.2019.127587.

2020View
[27]

Z. Ullah, R. Thomas, Mechanistic insights can resolve the low reactivity and selectivity issues in intermolecular Rauhut–Currier (RC) reaction of γ-hydroxyenone, New J. Chem. 44 (2020) 12857–12865. https://doi.org/10.1039/D0NJ02732D

2020View
[26]

A.M. John, J. Jose, R. Thomas, K.J. Thomas, S.P. Balakrishnan, Spectroscopic and TDDFT investigation of highly selective fluoride sensors by substituted acyl hydrazones, Spectrochim. Acta – Part A Mol. Biomol. Spectrosc. 236 (2020).

2020View
[25]

Y.S. Priya, K.R. Rao, P.V. Chalapathi, A. Veeraiah, K.E. Srikanth, Y.S. Mary, R. Thomas, Intricate spectroscopic profiling, light harvesting studies and other quantum mechanical properties of 3-phenyl-5-isooxazolone using experimental and computational strategies, J. Mol. Struct. 1203 (2020).

2020View
[24]

A. Alsalme, T. Pooventhiran, N. Al-Zaqri, D.J. Rao, S.S. Rao, R. Thomas, Modelling the structural and reactivity landscapes of tucatinib with special reference to its wavefunction-dependent properties and screening for potential antiviral activity, J. Mol. Model. 26 (2020) 341.

2020View
[23]

S. Jeeva, S. Muthu, R. Thomas, B.R.R. Raajaraman, G. Mani, G. Vinitha, Co-crystals of urea and hexanedioic acid with third-order nonlinear properties: An experimental and theoretical enquiry, J. Mol. Struct. 1202 (2020) 127237.

2020View
[22]

J.S. Al-Otaibi, A.H. Almuqrin, Y.S. Mary, R. Thomas, Modeling the conformational preference, spectroscopic properties, UV light harvesting efficiency, biological receptor inhibitory ability and other physico-chemical properties of five imidazole derivatives using quantum mechanical and molecular mechanics t, J. Mol. Liq. 310 (2020).

2020View
[21]

M. Smitha, Y.S. Mary, K. Pradhan, D. Brahman, Y.S. Mary, R. Thomas, R. Pavithran, V. Alsenoy, “Synthesis, spectral characterisation, quantum mechanical analysis and light harvesting properties of two azoimidazole analogues” J. Mol. Struct. 1197 (2019) 45–55(10.1016/j.molstruc.2019.05.051), J. Mol. Struct. 1197 (2019) .

2019View
[20]

T. Sajini, R. Thomas, B. Mathew, Computational Design and Fabrication of Enantioselective Recognition Sorbents for L-phenylalanine Benzyl Ester on Multiwalled Carbon Nanotubes Using Molecular Imprinting Technology, Chinese J. Polym. Sci. (English Ed. 37 (2019) 1305–1318.

2019View
[19]

Y.S. Mary, Y.S. Mary, K.S. Resmi, V.S. Kumar, R. Thomas, B. Sureshkumar, Detailed quantum mechanical, molecular docking, QSAR prediction, photovoltaic light harvesting efficiency analysis of benzil and its halogenated analogues, Heliyon. 5 (2019).

2019View
[18]

K.R. P.R., Y.S. Mary, A. Fernandez, A.P. S, Y.S. Mary, R. Thomas, Single crystal XRD, DFT investigations and molecular docking study of 2- ((1,5-dimethyl-3-oxo-2-phenyl-2,3-dihydro-1H-pyrazol-4-yl)amino)naphthalene-1,4-dione as a potential anti- cancer lead molecule, Comput. Biol. Chem. 78 (2019) 153–164.

2019View

All Publications

R. Thomas, A.A. Khairbek, S.A. Sunny, A.Y.A. Alzahrani, Machine learning analysis of metalloid nanoclusters from the Quantum Cluster Database: Structural-phase transitions, electronic-geometric coupling, and exploratory binary nano-alloy predictions, Calphad 94 (2026) 102978. doi.org/10.1016/j.calphad.2026.102978

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Modelling of polymer blends

Modelling of polymer blends

R. Thomas, A.M. John, A.Y.A. Alzahrani, T. Pooventhiran, D.I. Saleh, S.F. Mahmoud, Dispersion-Dominated Noncovalent Stabilization with Weak Polarization-Assisted O···H Contacts in the PMMA-PS Polymer Framework, Macromol. Chem. Phys. 227 (2026). doi.org/10.1002/macp.70290

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A Systematic Computational Protocol for Deconstructing Non-Covalent Interactions: BerchNCI 1.0

A Systematic Computational Protocol for Deconstructing Non-Covalent Interactions: BerchNCI 1.0

Non-covalent interactions constitute the fundamental organizing principles of supramolecular assemblies; however, the accurate modeling of these subtle, dispersion-driven forces remains a formidable challenge in theoretical chemistry. In this work, we formally propose the Berchmans Protocol for Modelling Non-Covalent Interactions 1.0 (BerchNCI 1.0), a comprehensive, hierarchical computational workflow designed to decipher the electronic anatomy of NCIs with benchmark precision.

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Electron Upconversion Enables CP and CS Bond Formation Under Mild Oxidative Conditions: A Theoretical Study

Electron Upconversion Enables CP and CS Bond Formation Under Mild Oxidative Conditions: A Theoretical Study

Meera's first paper as the part of her PhD thesis published in Journal of Computational Chemistry. The work has been based on some of the finidngs of Prog Igor Alabugin of Florida State University, USA. Traditional methods for forming carbon–phosphorus (C–P) and carbon–sulfur (C–S) bonds often rely on strong oxidants that generate high-energy carbocation intermediates, frequently leading to unwanted side reactions. In this work, we employ DFT to investigate an alternative mechanism operating under basic conditions that utilizes three-electron bond formation and concomitant electron upconversion. Our computational results reveal a radical-anionic pathway initiated by a cyclization to form a 2-center-3-electron (2c-3e) bond, followed by the oxidation of the resulting upconverted radical-anion by mild oxidants such as molecular oxygen . This pathway is shown to be both thermodynamically and kinetically favored over conventional two-electron routes, providing a more controlled and selective strategy for C–P and C–S bond construction. These findings suggest that electron-upconversion mechanisms can significantly advance green chemistry by reducing dependence on harsh reagents and minimizing synthetic side reactions.

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Sneha & Ananya’s paper in Journal of Physical Chemistry B

Sneha & Ananya’s paper in Journal of Physical Chemistry B

PhD student Sneha Anna Sunny's paper on the Mapping the Interaction Landscape of Adenosine and Minoxidil Sulfate Using an Independent Gradient Model Based on Hirshfeld Partition and Interaction Region Indicator. Ananya Prakash is a final year MSc Physics student of our college who worked in our lab as part of the Kerala Theoretical Physics Initiative (KTPI) student project initiative,

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Manjesh Mathew: Benchmarking Computational Approaches for Proton Affinity

Manjesh Mathew: Benchmarking Computational Approaches for Proton Affinity

In this collaborative study with Dr Ralph Puchta, Manjesh Mathew, PhD student assessed the proton affinities and gas phase basicities of molecules ranging from ammonia to proton sponges like PMG using computational methods including B3LYP, BP86, PBEPBE, APFD, wB97XD, and M062X with the def2tzvp basis set. The M062X method showed the highest accuracy, closely matching experimental results for all examples, especially those containing heteroatoms, while APFD and wB97XD tended to overestimate values. Dispersion corrections were evaluated but found not to significantly affect basicity predictions. Computational and Theoretical Chemistry

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Alen Binu Abraham : Non-Covalent Interactions of Caffeine and Ascorbic Acid

Alen Binu Abraham : Non-Covalent Interactions of Caffeine and Ascorbic Acid

In this study, we explored the non-covalent interactions between caffeine and ascorbic acid, focusing on their hydrogen bonding in both gas and solvent (water) phases, using Density Functional Theory. The binding energy calculations revealed significant interactions with values of −14.65 kcal/mol in the gas phase and −11.62 kcal/mol in water. Through Natural Bond Orbital, RDG, AIM, and LED analyses, we confirmed the stabilization energy and electron delocalization in the caffeine-ascorbic acid complex, enhancing our understanding of drug-drug interactions and their implications for drug efficacy and delivery systems. Abraham, Alen Binu, Alzahrani, Abdullah Y. and Thomas, Renjith. "Exploring non-covalent interactions between caffeine and ascorbic acid: their significance in the physical chemistry of drug efficacy" Zeitschrift für Physikalische Chemie, vol. 238, no. 2, 2024, pp. 401-420. 

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Gayathri: Hydrogen Bonding and Dynamics of Prontosil in Water and Methanol

Gayathri: Hydrogen Bonding and Dynamics of Prontosil in Water and Methanol

In this theoretical study, we investigated the solvation energies of prontosil, a pioneering sulfa drug, in water and methanol using DFT/M06-2X/cc-pVDZ level of theory. Our findings reveal that prontosil shows more favorable interactions with methanol than water, as evidenced by NBO, RDG, QTAIM analyses, and local energy decomposition (LED) analysis using DLPNO-CCSD(T). The prontosil-methanol complex displayed the lowest binding energy and highest stability, suggesting methanol as a more suitable solvent for prontosil in terms of molecular interactions and stability. These insights are further corroborated by ab initio molecular dynamics simulations, underscoring the importance of solvent choice in drug design and molecular interaction studies. Here is the link to "Understanding the hydrogen bonding preferences and dynamics of prontosil in water and methanol":

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Jisha’s paper in Journal of Physical Chemistry-B (ACS)

Jisha’s paper in Journal of Physical Chemistry-B (ACS)

Postdoc Dr Jisha's latest paper Assessing the Noncovalent Interaction of Deucravacitinib and Ethanol with Special Reference to an Independent Gradient Model Based on Hirshfeld Partition

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Rajimon’s first bioactive chalcone paper in JMS

Rajimon’s first bioactive chalcone paper in JMS

Rajimons Chalcone paper in collaboration with Prof Sarojini, Mangalore Univeristy

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Metalfree cycloaddition in New Journal of Chemistry

Metalfree cycloaddition in New Journal of Chemistry

The paper investigates the metal-free [3+2] cycloaddition reaction between phenyl azide and phenyl enaminone to selectively synthesize 1,2,3-triazoles. Using computational methods, it explores the reaction pathways (1,4- and 1,5-pathway), solvent effects, and the impact of phenyl azide substituents, offering insights into the reaction mechanism and the role of water as a solvent and catalyst.

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Rajimon : Schiff base derived from 4-Chloroaniline and 2-Formylphenol

Rajimon : Schiff base derived from 4-Chloroaniline and 2-Formylphenol

PhD student Rajimon KJ's 6th first-authored paper in Journal of Molecular Structure (Elsevier). Comprehensive assessment of schiff base derived from 4-Chloroaniline and 2-Formylphenol: Molecular architecture, experimental with computational bioactivity profiling, emphasizing anticancer efficacy against pulmonary and mammary carcinoma cell models

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Get In Touch

We welcome research collaborations and enquiries from theoreticians, experimental chemists, and interdisciplinary researchers. Prospective PhD, postdoctoral, and student researchers are encouraged to contact us via the details below or the message form.

Dr. Renjith Thomas

Department of Chemistry

St. Berchmans College (Autonomous)

Changanassery, Kerala, India – 686101


[email protected]

+91 95446 58314