Research

Publications

  • Issac, S., Jos, T. C., Joseph, R., & Kumar, K. G. (2025, June). Electrochemical studies of Lamivudine using glassy carbon electrode modified with a polymeric film of L-Cysteine. In Journal of Physics: Conference Series (Vol. 3038, No. 1, p. 012003). IOP Publishing.
  • Aparna, A. Saritha, R.A. Jose, and Kuruvilla Joseph. Robust Shape Memory Chlorobutyl Rubber/Boron Nitride Polymer Nanocomposites for Oil-Water Separation Application. Journal of the Taiwan Institute of Chemical Engineers, 166(2): 105623 (2025).
  • Aparna, A. Sethulekshmi, A. Saritha, R.A. Jose, and Kuruvilla Joseph. Effective Role of Tannic Acid in the Fabrication of Hydrophobic, Oleophilic, Antibacterial, Boron Nitride/Chlorobutyl Rubber Nanocomposite for Reusable Protective Clothing and Oil-Water Separation. International Journal of Biological Macromolecules, 263 (2024): 130341.
  • Thomas, F. and Thomas, R. (2024). Dynamics of the Interaction Between Water and the Amino Acids Alanine, Arginine, Asparagine, and Glutamine Using LED, QTAIM, AIMD, and Core-Valence Bifurcation (CVB) Index. Journal of Molecular Liquids, 408: 125404.
  • Ashok, G., Thomas, F., and Thomas, R. (2024). Understanding the Hydrogen Bonding Preferences and Dynamics of Prontosil in Water and Methanol. Chemical Physics Impact, 8: 100453.
  • Vettakunnel, N. J., & Vijayan, R. (2023, September). Microwave-mediated green synthesis of silver nanoparticles using glycosmis pentaphylla leaf extract and exploration of their antimicrobial properties. In REFLECTION (Vol. 1, No. 1, pp. 45-50).
  • Suleimen, Y.M.; Jose, R.A.; Suleimen, R.N.; Ishmuratova, M.Y.; Toppet, S.; Dehaen, W.; Alsfouk, A.A.; Elkaeed, E.B.; Eissa, I.H.;Metwaly, A.M. Isolation and In Silico Inhibitory Potential against SARS-CoV 2 RNA Polymerase of the Rare Kaempferol 3-O-(600-O-acetyl)-Glucoside from Calligonum tetrapterum. Plants 2022, 11, 2072. https://doi.org/10.3390/plants11152072  
  • Suleimen, Y.M.; Jose, R.A.; Suleimen, R.N.; Ishmuratova, M.Y.; Toppet, S.; Dehaen, W.; Alsfouk, A.A.;Elkaeed, E.B.; Eissa, I.H.;Metwaly, A.M. Isolation and In Silico SARS-CoV-2 Main Protease Inhibition Potential of Jusan Coumarin, a New Dicoumarin from Artemisia glauca. Molecules 2022, 27, 2281. DOI:10.3390/molecules27072281 
  • Suleimen YM, Jose RA, Suleimen RN, et al. Jusanin, a new flavonoid from Artemisia commutata with an in silico inhibitory potential against the SARS-CoV-2 main protease. Molecules 2022;27:1636. DOI:10.3390/molecules27051636 
  • Suleimen YM, Jose RA, Suleimen RN, et al. Isolation and in silico anti-SARS-CoV-2 Papain-like 
  • protease potentialities of two rare 2-phenoxychromone derivatives from Artemisia spp. Molecules 2022;27:1216. DOI:10.3390/molecules27041216
  • 10. Gopalan, G. P., Anil, A. N., Ghimire, S., Joy, N., Yuyama, K. I., Biju, V., & Francis, R. (2019). Phase transfer reaction for the preparation of stable polymer-quantum dot conjugates. Journal of Photochemistry and Photobiology A: Chemistry, 371, 91-97.
  • Thankachan, R. M., Joy, N., Abraham, J., Kalarikkal, N., Thomas, S., & Oluwafemi, O. S. (2017). Enhanced photocatalytic performance of ZnO nanostructures produced via a quick microwave assisted route for the degradation of rhodamine in aqueous solution. Materials Research Bulletin, 85, 131-139.
  • Francis, R., & Joy, N. (2017, April). Dispersion of pristine multi wall carbon nanotube by chain end modified poly (N-isopropyl acrylamide). In ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY (Vol. 253). 1155 16TH ST, NW, WASHINGTON, DC 20036 USA: AMER CHEMICAL SOC.
  • Francis, R., Joy, N., Aparna, E. P., & Vijayan, R. (2014). Polymer grafted inorganic nanoparticles, preparation, properties, and applications: a review. Polymer Reviews, 54(2), 268-347.
  • Rani A Jose, Arnout Voet, Katleen Broos, Arjen Jakobi, Gilles Bruylants, Brecht Egle, Kam Y.J. Zhang, Marc De Maeyer, Hans Deckmyn and Wim M. De Borggraeve. “An integrated fragment based screening approach for the discovery of small molecule modulators of the VWF-GPIbα interaction”. Chem Commun, 2012 Oct 24;48(92):11349-51 (DOI:10.1039/c2cc35269a)
  • Katleen Broos, Mieke Trekels, Rani A Jose, Jonas Demeulemeester, Tom Venken, Brecht Egle, Wim M De Borggraeve, Hans Deckmyn, Marc De Maeyer.(2012). Identification of a small molecule that modulates the platelet glycoprotein Ib – von willebrand factor interaction. Journal of Biological Chemistry, 16,287(12), 9461-72 (DOI 10.1074/jbc.M111.311431). 
  • Jose, R, De Zotti M, Peggion C, Formaggio F, Toniolo C, De Borggraeve W. (2011). Comparison of distance information in [TOAC1,Glu(OMe)7,18,19] alamethicin F50/5 from paramagnetic relaxation enhancement measurements with data obtained from an X-ray diffraction-based model. Journal of Peptide Science, 17 (5), 377-382 (DOI: 10.1002/psc.1354).
  • Lonappan, L., Issac, S., Joseph, R., Thomas, D., & Girish Kumar, K. (2011). Electrochemical studies of tamsulosin hydrochloride using multiwalled carbon nanotube-modified glassy carbon sensor. Micro & Nano Letters, 6(10), 867-870.
  • Jos, T., Issac, S., Joseph, R., Rajith, L., & Girish Kumar, K. (2012). Electrocatalysis and determination of pyridine-2-aldoxime methochloride using carbon nanotube-modified gold electrode. Micro & Nano Letters, 7(8), 854-858.
  • Joseph, R., Issac, S., Augustine, P., Theresa, C. J., & Kumar, K. G. (2025, June). Voltammetric Determination of PAM Chloride Using Dodecanethiol and Carbon Nanotube Modified Gold Electrode. In Journal of Physics: Conference Series (Vol. 3038, No. 1, p. 012004). IOP Publishing.
  • Joseph, R., & Kumar, K. G. (2009). Electrochemical reduction and voltammetric determination of metronidazole benzoate at modified carbon paste electrode. Analytical letters, 42(14), 2309-2321.
  • Joseph, R., & Girish Kumar, K. (2010). Differential pulse voltammetric determination and catalytic oxidation of sulfamethoxazole using [5, 10, 15, 20‐tetrakis (3‐methoxy‐4‐hydroxy phenyl) porphyrinato] Cu (II) modified carbon paste sensor. Drug testing and analysis, 2(6), 278-283.
  • Joseph, R., & Kumar, K. G. (2011). Electrochemical Sensing of Acyclovir at a Gold Electrode Modified with 2-Mercaptobenzothiazole–[5, 10, 15, 20-tetrakis-(3-methoxy-4-hydroxyphenyl) porphyrinato] copper (II). Analytical Sciences, 27(1), 67-72.
  • Joseph, R., & Kumar, K. G. (2011). Electrochemical Sensing of Acyclovir at a Gold Electrode Modified with 2-Mercaptobenzothiazole–[5, 10, 15, 20-tetrakis-(3-methoxy-4-hydroxyphenyl) porphyrinato] copper (II). Analytical Sciences27(1), 67-72.
  • Joseph, R., & Girish Kumar, K. (2010). Differential pulse voltammetric determination and catalytic oxidation of sulfamethoxazole using [5, 10, 15, 20‐tetrakis (3‐methoxy‐4‐hydroxy phenyl) porphyrinato] Cu (II) modified carbon paste sensor. Drug testing and analysis2(6), 278-283.
  • Suleimenov, E. M., Jose, R. A., Rakhmadieva, S. B., De Borggraeve, W., & Dehaen, W. (2009). Flavonoids from Senecio viscosus. Chemistry of natural compounds45(5), 731-732.
  • Joseph, R., & Kumar, K. G. (2009). Electrochemical reduction and voltammetric determination of metronidazole benzoate at modified carbon paste electrode. Analytical letters42(14), 2309-2321.
  • Kołodziejczak, J., Jezierska, A., Panek, J. J., De Borggraeve, W. M., Kochel, A., Jose, R. A., & Koll, A. (2008). Structural property investigations of 1-[2-(2-methoxyphenyl) ethyl] piperidinium chloride: An experimental and computational study. Journal of Molecular Structure891(1-3), 184-191.

Book Chapters

  • Biomedical Applications of Polymeric Materials and Composites, Chapter 2,  Conducting Polymers: An Introduction, Nidhin Joy, Joby Eldo & Raju Francis, Publisher John Wiley & Sons, 2016, 21-36.
  • Biomedical Applications of Polymeric Materials and Composites, Chapter 3,  Conducting Polymers: Biomedical Applications, Nidhin Joy, Joby Eldo & Raju Francis, Publisher John Wiley & Sons, 2016, 37-90.
  • Recycling of Polymers Methods, Characterization and Applications Publisher: John Wiley & Sons, Chapter 6 Fibers, Raju Francis, Nidhin Joy, Anjaly Sivadas & Geethy.P.Gopalan, 2016, 163-189.
  • Biomedical Applications of Polymeric Materials and Composites, Chapter 8, Properties of Stimuli-Responsive Polymers, Raju Francis, Geethy P. Gopalan, Anjaly Sivadas & Nidhin Joy, Publisher John Wiley & Sons, 2016, 187-232.
  • Biomedical Applications of Polymeric Materials and Composites, Chapter 9, Stimuli-Responsive Polymers: Biomedical Applications, Raju Francis, Geethy P. Gopalan, Anjaly Sivadas & Nidhin Joy, Publisher John Wiley & Sons, 2016, 233-260.
  • Recycling of Polymers Methods, Characterization and Applications Publisher: John Wiley & Sons, Chapter 9 Ecoprofiles of Recycled Polymers at a Glance (part-2) Toxic or Environmental Effects of Recycled Polymers, Raju Francis, Nidhin Joy & Anjaly Sivadas. 2016, 248-256.
  • Biomedical Applications of Polymeric Materials and Composites, Chapter 11 Relevance of Natural Degradable Polymers in the Biomedical field, Raju Francis, Nidhin Joy & Anjaly Sivadas, Publisher John Wiley & Sons, 2016, 303-364.
  • Biomedical Applications of Polymeric Materials and Composites, Chapter 12 Synthetic biodegradable polymers for Medical and Clinical Applications, Raju Francis, Nidhin Joy & Anjaly Sivadas, Publisher John Wiley & Sons, 2016, 365-386.