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P. Kumar, Naidu, S. V., and Gupta, P., Efficient total synthesis of sapinofuranone B, Journal of Organic Chemistry, vol. 70, no. 7, pp. 2843-2846, 2005.
N. Sharma, Kumari, N., Chundawat, T. S., Kumar, S., and Bhagat, S., Efficient trifluoromethylation of C(sp(2))-H functionalized alpha-oxoketene dithioacetals: a route to the regioselective synthesis of functionalized trifluoromethylated pyrazoles, RSC Advances, vol. 7, no. 17, pp. 10150-10153, 2017.
S. Kushwaha, Soni, H., Bojja, S., and Padmaja, P., Efficient valorisation of palm shell powder to bio-sorbents for copper remediation from aqueous solutions, Journal of Environmental Chemical Engineering, vol. 5, no. 3, 2017.
P. R. Athawale, Jachak, G., Shukla, A., Shanmugam, D., and Reddy, S., Efforts to access the potent antitrypanosomal marine natural product janadolide: synthesis of des- tert -butyl janadolide and its biological evaluation, ACS Omega, 2018.
P. Siva Swaroop, Tripathy, S., Jachak, G. R., and D. Reddy, S., Efforts towards the synthesis of microsporin B: ready access to both the enantiomers of the key amino acid fragment, Tetrahedron Letters, vol. 55, no. 34, pp. 4777-4779, 2014.
S. Kishor Sonawane, Chidambaram, H., Boral, D., Gorantla, N. Vijay, Balmik, A. Ankur, Dangi, A., Ramasamy, S., Marelli, U. Kiran, and Chinnathambi, S., EGCG impedes human Tau aggregation and interacts with Tau, Scientific Reports, vol. 10, no. 1, p. 12579, 2020.
A. Moudgil, Deval, A. S., Dharne, M. S., Sarkar, D. M., Choudhari, A. S., and Chaudhari, B. P., Eichhornia crassipes mediated bioinspired synthesis of crystalline nano silver as an integrated medicinal material: a waste to value approach, Journal of Cluster Science, vol. 32, no. 2, pp. 391-404, 2021.
A. Mart and Shashidhar, M. S., Elaboration of the ether cleaving ability and selectivity of the classical pearlman's catalyst [Pd(OH)(2)/C]: concise synthesis of a precursor for a myo-inositol pyrophosphate, Tetrahedron, vol. 68, no. 47, pp. 9769-9776, 2012.
C. Das, Chatterjee, S., Kumaraswamy, G., and Krishnarnoorthy, K., Elastic compressible energy storage devices from ice templated polymer gels treated with polyphenols, Journal of Physical Chemistry C, vol. 121, no. 6, pp. 3270-3278, 2017.
F. Ram, Biswas, B., Torris, A., Kumaraswamy, G., and Shanmuganathan, K., Elastic piezoelectric aerogels from isotropic and directionally ice-templated cellulose nanocrystals: comparison of structure and energy harvesting, Cellulose, vol. 28, no. 10, pp. 6323-6337, 2021.
B. A. Kakade, Mehta, R., Durge, A., Kulkarni, S., and Pillai, V., Electric field induced, superhydrophobic to superhydrophilic switching in multiwalled carbon nanotube papers, Nano Letters, vol. 8, no. 9, pp. 2693-2696, 2008.
R. Kar and Pal, S., Electric field response of molecular reactivity descriptors: a case study, Theoretical Chemistry Accounts, vol. 120, no. 4-6, pp. 375-383, 2008.
M. Pattabi, Gurumurthy, S. C., Sanjeev, G., and Gaikwad, A. B., Electrical behavior of silver particulate films deposited on 8 MeV electron beam irradiated softened polystyrene substrates, Journal of Materials Science-Materials in Electronics, vol. 22, no. 8, pp. 1095-1100, 2011.
A. Kumar Rath, Sahu, S., and Pal, A. J., Electrical bistability in a xanthene class molecule: conduction mechanisms, Applied Physics Letters, vol. 89, p. Article No: 142110, 2006.
M. V. Sardeshpande, Gupta, S., and Ranade, V. V., Electrical resistance tomography for gas holdup in a gas-liquid stirred tank reactor, Chemical Engineering Science, vol. 170, no. SI, pp. 476-490, 2017.
R. Devivaraprasad, Nalajala, N., Bera, B., and Neergat, M., Electrocatalysis of oxygen reduction reaction on shape-controlled pt and pd nanoparticles-importance of surface cleanliness and reconstruction, Frontiers in Chemistry, vol. 7, p. 648, 2019.
H. Kuiry, Das, D., Das, S., Chakraborty, S., Chandra, B., and Gupta, S. Sen, Electrocatalytic alcohol oxidation by a molecular iron complex, Faraday Discussions, vol. 234, pp. 42-57, 2022.
A. Maibam, Krishnamurty, S., and Dar, M. Ahmad, Electrocatalytic nitrogen reduction directed through the p-band center of boron on BSAC@Mo2C, Materials Advances, no. 1, 2021.
A. Maibam, Krishnamurty, S., and BabaRao, R., Electrocatalytic nitrogen reduction on defective graphene modulated from single atom catalyst to aluminium clusters, Applied Surface Science, vol. 623, p. 157024, 2023.
D. Das, Pattanayak, S., Singh, K. K., Garai, B., and Gupta, S. Sen, Electrocatalytic water oxidation by a molecular cobalt complex through a high valent cobalt oxo intermediate, Chemical Communications, vol. 52, no. 79, pp. 11787-11790, 2016.
A. B. Deshmukh, Nalawade, A. C., Karbhal, I., Qureshi, M. Shadbar, and Shelke, M. V., Electrochemical capacitive energy storage in PolyHIPE derived nitrogen enriched hierarchical porous carbon nanosheets, Carbon, vol. 128, pp. 287-295, 2018.
P. Yadav, Sharma, N., Patrike, A., Sabri, Y. M., Jones, L. A., and V. Shelke, M., Electrochemical evaluation of the stability and capacity of r-GO-wrapped copper antimony chalcogenide anode for Li-ion battery, ChemElectroChem, vol. 7, no. 15, pp. 3291-3300, 2020.
S. Seo, Kim, Y., You, J., Sarwade, B. D., Wadgaonkar, P. P., Menon, S. K., More, A. S., and Kim, E., Electrochemical fluorescence switching from a patternable poly(1,3,4-oxadiazole) thin film, Macromolecular Rapid Communications, vol. 32, no. 8, pp. 637-643, 2011.
S. Pattanayak, Chowdhury, D. Roy, Garai, B., Singh, K. K., Paul, A., Dhar, B. B., and Gupta, S. Sen, Electrochemical formation of Fe-V (O) and mechanism of its reaction with water during O-O bond formation, Chemistry-A European Journal, vol. 23 , no. 14, pp. 3414-3424, 2017.
S. Mahima, Chaki, N. K., Sharma, J., Kakade, B. A., Pasricha, R., Rao, A. M., and Vijayamohanan, K., Electrochemical organization of monolayer protected gold nanoclusters on single-walled carbon nanotubes: significantly enhanced double layer capacitance, Journal of Nanoscience and Nanotechnology, vol. 6, no. 5, pp. 1387-1391, 2006.
K. Bin Masood, Parte, G., Jain, N., Dwivedi, P. K., Kumar, P., ,, Patel, R., and Singh, J., Electrochemical performance of pre-lithiated ZnMoO4 and r-GO@ZnMoO4 composite anode for lithium-ion battery application, Journal of the Taiwan Institute of Chemical Engineers, vol. 112, pp. 60-66, 2020.
M. G. Wankhede, Gaikwad, A. B., and Patil, P. P., Electrochemical polymerization of o-anisidine on low carbon steel from aqueous salicylate solution: corrosion protection study, Surface & Coating Technology, vol. 201, no. 6, pp. 2240-2247, 2006.
D. B. Shinde and Pillai, V. K., Electrochemical preparation of luminescent graphene quantum dots from multiwalled carbon nanotubes, Chemistry-A European Journal, vol. 18, no. 39, pp. 12522-12528, 2012.
D. B. Shinde, Dhavale, V. M., Kurungot, S., and Pillai, V. K., Electrochemical preparation of nitrogen-doped graphene quantum dots and their size-dependent electrocatalytic activity for oxygen reduction, Bulletin of Materials Science, vol. 38, no. 2, pp. 435-442, 2015.
J. Debgupta, Devarapalli, R. Reddy, Rahman, S., Shelke, M. V., and Pillai, V. K., Electrochemical preparation of vertically aligned, hollow CdSe nanotubes and their p-n junction hybrids with electrodeposited Cu2O, Nanoscale, vol. 6, no. 15, pp. 9148-9156, 2014.
D. B. Shinde and Pillai, V. K., Electrochemical resolution of multiple redox events for graphene quantum dots, Angewandte Chemie-International Edition, vol. 52, no. 9, pp. 2482-2485, 2013.
B. R. Sathe, Risbud, M. S., Mulla, I. S., and Pillai, V. K., Electrochemical sensing of sulphur dioxide: a comparison using dodecanethiol and citrate capped gold nanoclusters, Journal of Nanoscience and Nanotechnology, vol. 8, no. 6, pp. 3184-3190, 2008.
V. A. Murugan, Gopinath, C. S., and Vijayamohanan, K., Electrochemical studies of poly (3,4-ethylenedioxythiophene) PEDOT/VS2 nanocomposite as a cathode material for rechargeable lithium batteries, Electrochemistry Communications, vol. 7, no. 2, pp. 213-218, 2005.
V. Shinde, Sainkar, S. R., and Patil, P. P., Electrochemical synthesis and corrosion protection properties of poly(o-toluidine) coatings on low carbon steel, Journal of Applied Polymer Science, vol. 96, no. 3, pp. 685-695, 2005.
S. Sahoo, Naik, K. Kumar, Late, D. J., and Rout, C. Sekhar, Electrochemical synthesis of a ternary transition metal sulfide nanosheets on nickel foam and energy storage application, Journal of Alloys and Compounds, vol. 695, pp. 154-161, 2017.
P. Pawar, Gaikwad, A. B., and Patil, P. P., Electrochemical synthesis of corrosion protective polyaniline coatings on mild steel from aqueous salicylate medium, Science and Technology of Advanced Materials, vol. 7, no. 7, pp. 732-744, 2006.
D. B. Shinde, Debgupta, J., Kushwaha, A., Aslam, M., and Pillai, V. K., Electrochemical unzipping of multi-walled carbon nanotubes for facile synthesis of high-quality graphene nanoribbons, Journal of the American Chemical Society, vol. 133, no. 12, pp. 4168-4171, 2011.
S. Bose, Debgupta, J., Ramsundar, R. M., and Das, S. K., Electrochemical water oxidation catalyzed by an in situ generated alpha-Co(OH)(2) film on zeolite-Y surface, Chemistry-A European Journal, vol. 23, no. 33, pp. 8051-8057, 2017.
M. B. Erande, Suryawanshi, S. R., More, M. A., and Late, D. J., Electrochemically exfoliated black phosphorus nanosheets - prospective field emitters, European Journal of Inorganic Chemistry, no. 19, pp. 3102-3107, 2015.
B. Anothumakkool and Kurungot, S., Electrochemically grown nanoporous MnO2 nanowalls on a porous carbon substrate with enhanced capacitance through faster ionic and electrical mobility, Chemical Communications, vol. 50, no. 54, pp. 7188-7190, 2014.
M. G. Lakhe, Joshi, P., Choudhary, R. J., Ganesan, V., Joag, D. S., and Chaure, N. B., Electrochemically synthesized faceted CuInTe2 nanorods as an electron source for field emission applications, New Journal of Chemistry, vol. 42, no. 7, pp. 5284-5294, 2018.
Z. Manappadan and Selvaraj, K., Electrochemically tuned synergistic nano-interface of a tertiary Ni(OH)(2)-NiO(OH)/NixP heterojunction material for enhanced and durable alkaline water splitting, ChemistrySelect, vol. 7, no. 30, p. e202201171, 2022.
R. Sivakumar, Gopinath, C. S., Jayachandran, M., and Sanjeeviraja, C., Electrochromic device (ECD) cell characterization on electron beam evaporated MoO3 films by intercalating/deintercalating the H+ ions, Current Applied Physics, vol. 7, no. 1, pp. 76-86, 2007.
M. Kurian, Vijayakumar, V., Manna, N., Kanheerampockil, F., Bhat, S., and Kurungot, S., Electrode|electrolyte interface enhancement in quasi-solid-state zinc-air batteries through an anion conducting polymer electrolyte interlayer by in situ polymerization, Journal of Materials Chemistry A, vol. 11, no. 27, pp. 14776-14787, 2023.
S. Dilwale, Ghosh, M., Vijayakumar, V., and Kurungot, S., Electrodeposited layered sodium vanadyl phosphate (NaxVOPO4 center dot nH(2)O) as cathode material for aqueous rechargeable zinc metal batteries, Energy & Fuels, vol. 36, no. 12, pp. 6520-6531, 2022.
S. Sahoo, Mondal, R., Late, D. J., and Rout, C. S., Electrodeposited nickel cobalt manganese based mixed sulfide nanosheets for high performance supercapacitor application, Microporous and Mesoporous Materials, vol. 244, pp. 101-108, 2017.
B. Anothumakkool, Torris, A. A. T., Bhange, S. N., Badiger, M. V., and Kurungot, S., Electrodeposited polyethylenedioxythiophene with infiltrated gel electrolyte interface: a close contest of an all-solid-state supercapacitor with its liquid-state counterpart, Nanoscale, vol. 6, no. 11, pp. 5944-5952, 2014.
S. V. Bhosale, Mhaske, P., Kanhe, N., Navale, A. B., Bhoraskar, S. V., Mathe, V. L., and Bhatt, S. K., Electrokinetic properties of PMAA functionalized NiFe2O4 nanoparticles synthesized by thermal plasma route, in Solid State Physics: Proceedings of the 58th Dae Solid State Physics Symposium 2013, PTS A & B, 2 HUNTINGTON QUADRANGLE, STE 1NO1, MELVILLE, NY 11747-4501 USA, 2014.
A. Kumar Dutta, Sengupta, T., Vaval, N., and Pal, S., Electron attachment to DNA and RNA nucleobases: an EOMCC investigation, International Journal of Quantum Chemistry, vol. 115, no. 12, pp. 753-764, 2015.
S. K. Mahapatra, Bodas, D. S., Mandale, A. B., Gangal, S. A., and Bhoraskar, V. N., Electron beam induced surface cross-linking of functional monomers coated on silicon substrate, Materials Letters, vol. 60, no. 11, pp. 1360-1365, 2006.
A. J. Blake, de Boissieu, M., and Nangia, A., Electron crystallography, IUCRJ, vol. 6, no. 5, pp. 786-787, 2019.
S. Das, Sengupta, T., Dutta, A. Kumar, and Pal, S., Electron detachment and subsequent structural changes of water clusters, Journal of Physical Chemistry A, vol. 120, no. 7, pp. 1065-1073, 2016.
B. Gole, Bar, A. Kumar, Mallick, A., Banerjee, R., and Mukherjee, P. Sarathi, Electron rich porous extended framework as a heterogeneous catalyst for Diels-Alder reactions, Chemical Communications, vol. 49, no. 67, pp. 7439-7441, 2013.
J. Sharma, Vivek, J. P., and Vijayamohanan, K. P., Electron transfer behavior of monolayer protected nanoclusters and nanowires of silver and gold, Journal of Nanoscience and Nanotechnology, vol. 6, no. 11, pp. 3464-3469, 2006.
O. Schlesinger, Pasi, M., Dandela, R., Meijler, M. M., and Alfonta, L., Electron transfer rate analysis of a site-specifically wired copper oxidase, Physical Chemistry Chemical Physics, vol. 20, no. 9, pp. 6159-6166, 2018.
M. Faizan, Bhamu, K. C., Murtaza, G., He, X., Kulhari, N., AL-Anazy, M. Mana, and Khan, S. Haidar, Electronic and optical properties of vacancy ordered double perovskites A(2)BX(6) (A=Rb, Cs; B=Sn, Pd, Pt; and X=Cl, Br, I): a first principles study, Scientific Reports , vol. 11, no. 1, p. 6965, 2021.
K. Srinivas, Dangat, Y., Kommagalla, Y., Vanka, K., and Ramana, C. V., Electronic control on linear versus branched alkylation of 2-/3-aroylbenzofurans with acrylates: combined DFT and synthetic studies, Chemistry-A European Journal, vol. 23, no. 31, pp. 7570-7581, 2017.
G. S. Chinnakonda, Electronic decoupling of surface layers and its influence in oxidation catalysis: More wine in old bottle, 241st National Meeting and Exposition of the American-Chemical-Society (ACS), vol. 241. American-Chemical-Society, 1155 16th ST, NW, Washington, DC 20036 USA, 2011.
K. Thirunavukkarasu, Nagarajan, S., and Gopinath, C. S., Electronic decoupling of surface layers from bulk and its influence in oxidation catalysis: a molecular beam study, Applied Surface Science, vol. 256, no. 2, pp. 443-448, 2009.
S. Mehta and Joshi, K., Electronic fingerprints for diverse interactions of methanol with various Zn-based systems, Surface Science, vol. 736, p. 122350, 2023.
B. Tudu, Nalajala, N., Reddy, K. P., Saikia, P., and Gopinath, C. S., Electronic integration and thin film aspects of Au-Pd/rGO/TiO2 for improved solar hydrogen generation, ACS Applied Materials & Interfaces, vol. 11, no. 36, pp. 32869-32878, 2019.
S. Zhang, Ogale, S. B., Yu, W., Gao, X., Liu, T., Ghosh, S., Das, G. P., Wee, A. T. S., Greene, R. L., and Venkatesan, T., Electronic manifestation of cation-vacancy-induced magnetic moments in a transparent oxide semiconductor: anatase Nb:TiO2, Advanced Materials, vol. 21, no. 22, p. 2282+, 2009.
N. Vaval, Manohar, P. Uday, and Pal, S., Electronic spectra and ionization potentials of halogen oxides using the fock space coupled-cluster method, Collection of Czechoslovac Chemical Communications, vol. 70, no. 7, pp. 851-863, 2005.
M. Mapa, Thushara, K. S., Saha, B., Chakraborty, P., Janet, C. M., Viswanath, R. P., C. Nair, M., Murty, K. V. G. K., and Gopinath, C. S., Electronic structure and catalytic study of solid solution of GaN in ZnO, Chemistry of Materials, vol. 21, no. 13, pp. 2973-2979, 2009.
S. Deka and Joy, P. Alias, Electronic structure and ferromagnetism of polycrystalline Zn1-xCoxO (0 <= x <= 0.15), Solid State Communications, vol. 134, no. 10, pp. 665-669, 2005.
S. U. Shenoy, Gupta, U., Narang, D. S., Late, D. J., Waghmare, U. V., and Rao, C. N. R., Electronic structure and properties of layered gallium telluride, Chemical Physics Letters, vol. 651, pp. 148-154, 2016.
R. Ranjan, Mhamane, N. B., Kolekar, S. K., and Gopinath, C. S., Electronic structure evolution from metallic vanadium to metallic VxOy: a nappes study for o2+v gas-solid interaction, Journal of Physical Chemistry C, vol. 126, no. 45, pp. 19136-19146, 2022.
R. Jain and Gopinath, C. S., Electronic structure evolution of Pd@Co nanocatalysts under oxidation and reduction conditions and preferential CO oxidation, ChemCatChem, vol. 12, no. 16, pp. 4176-4184, 2020.
J. Sahariya, Kumar, P., Bhamu, K. C., and Soni, A., Electronic structure of Gd based transition metal antimonides GdTSb (T = Ni, Pt), in 2nd International Conference on Condensed Matter and Applied Physics (ICC-2017), 2 Huntington Quadrangles, STE 1NO1, Melville, NY 11747-4501 USA, 2018.
I. Heidari, Pal, S., Pujari, B. S., and Kanhere, D. G., Electronic structure of spherical quantum dots using coupled cluster method, Journal of Chemical Physics, vol. 127, no. 11, p. 114708, 2007.
K. Talukdar, Nayak, M. K., Vaval, N., and Pal, S., Electronic structure parameter of nuclear magnetic quadrupole moment interaction in metal monofluorides, Journal of Chemical Physics, vol. 153, no. 18, p. 184306, 2020.
S. Rajaambal, Yadav, A. K., Jha, S. Nath, Bhattacharyya, D., and Gopinath, C. S., Electronic structure-sunlight driven water splitting activity correlation of (Zn1-yGay)(O1-zNz), Physical Chemistry Chemical Physics, vol. 16, no. 43, pp. 23654-23662, 2014.
D. Bhattacharya, Vaval, N., and Pal, S., Electronic transition dipole moment: a semi-biorthogonal approach within valence universal coupled cluster framework, International Journal of Quantum Chemistry, vol. 114, no. 18, pp. 1212-1219, 2014.
D. Bhattacharya, Vaval, N., and Pal, S., Electronic transition dipole moments and dipole oscillator strengths within fock-space multi-reference coupled cluster framework: an efficient and novel approach, Journal of Chemical Physics, vol. 138, no. 9, p. 094108, 2013.
M. Tathavadekar, Biswal, M., Agarkar, S. A., Giribabu, L., and Ogale, S., Electronically and catalytically functional carbon cloth as a permeable and flexible counter electrode for dye sensitized solar cell, Electrochimica Acta, vol. 123, pp. 248-253, 2014.
S. S. Mani, Rajendran, S., Nalajala, N., Mathew, T., and Gopinath, C. S., Electronically integrated mesoporous Ag-TiO2 nanocomposite thin films for efficient solar hydrogen production in direct sunlight, Energy Technology, vol. 10, no. 1, p. 2100356, 2021.
J. Zhang, Balaraman, E., Leitus, G., and Milstein, D., Electron-rich PNP- and PNN-type Ru(II) hydrido-borohydride complexes. synthesis, structure and catalytic activity towards dehydrogenation of alcohols and hydrogenation of esters, Organometallics, vol. 30, no. 21, pp. 5716–5724, 2011.
S. Sasmal, Talukdar, K., Nayak, M. K., Vaval, N., and Pal, S., Electron–nucleus scalar–pseudoscalar interaction in PbF: Z-vector study in the relativistic coupled-cluster framework, Molecular Physics, 2017.
N. T. Patil, Konala, A., Sravanti, S., Singh, A., Ummanni, R., and Sridhar, B., Electrophile induced branching cascade: a powerful approach to access various molecular scaffolds and their exploration as novel anti-mycobacterial agents, Chemical Communications, vol. 49, no. 86, pp. 10109-10111, 2013.
A. Wali, Zhang, Y., Sengupta, P., Higaki, Y., Takahara, A., and Badiger, M. V., Electrospinning of non-ionic cellulose ethers/polyvinyl alcohol nanofibers: characterization and applications, Carbohydrate Polymers, vol. 181, pp. 175-182, 2018.
R. Naphade and Jog, J. Prakash, Electrospinning of PHBV/ZnO membranes: structure and properties, Fibers and Polymers, vol. 13, no. 6, pp. 692-697, 2012.
A. Saul Alvarez-Suarez, Dastager, S. G., Bogdanchikova, N., Grande, D., Pestryakov, A., Garcia-Ramos, J. Carlos, Perez-Gonzalez, G. Lizeth, Juarez-Moreno, K., Toledano-Magana, Y., Smolentseva, E., Paz-Gonzalez, J. Antonio, Popova, T., Rachkovskaya, L., Nimaev, V., Kotlyarova, A., Korolev, M., Letyagin, A., and Villarreal-Gomez, L. Jesus, Electrospun fibers and sorbents as a possible basis for effective composite wound dressings, Micromachines, vol. 11, no. 4, p. 441, 2020.
P. Yadav, Malik, W., Dwivedi, P. Kumari, Jones, L. A., and Shelke, M. V., Electrospun nanofibers of Tin phosphide (SnP0.94) nanoparticles encapsulated in a carbon matrix: a tunable conversion-cum-alloying lithium storage anode, Energy & Fuels, vol. 34, no. 6, pp. 7648-7657, 2020.
P. P. Mahamuni-Badiger, Patil, P. M., Patel, P. R., Dhanavade, M. J., V. Badiger, M., Marathe, Y. N., and Bohara, R. A., Electrospun poly(3-hydroxybutyrate-co-3-hydroxyvalerate)/polyethylene oxide (PEO) microfibers reinforced with ZnO nanocrystals for antibacterial and antibiofilm wound dressing applications, New Journal of Chemistry, vol. 44, no. 23, pp. 9754-9766, 2020.
A. A. Shitole, Raut, P. W., Sharma, N., Giram, P., Khandwekar, A. P., and Garnaik, B., Electrospun polycaprolactone/hydroxyapatite/ZnO nanofibers as potential biomaterials for bone tissue regeneration, Journal of Materials Science-Materials In Medicine, vol. 30, no. 5, p. 51, 2019.
B. Joshi, Samuel, E., Kim, Y., Kim, T., El-Newehy, M., Aldalbahi, A., and Yoon, S. S., Electrospun zinc-manganese bimetallic oxide carbon nanofibers as freestanding supercapacitor electrodes, International Journal of Energy Research, vol. 46, no. 15, pp. 22100-22112, 2022.
L. Wang, Dehe, D., Philippi, T., Seifert, A., Ernst, S., Zhou, Z., Hartmann, M., Taylor, R. N. Klupp, Singh, A. Pal, Jia, M., and Thiel, W. R., Electrostatic grafting of a triphenylphosphine sulfonate on SBA-15: application in palladium catalyzed hydrogenation, Catalysis Science & Technology, vol. 2, no. 6, pp. 1188-1195, 2012.
T. Haldar and Bagchi, S., Electrostatic interactions are key to C=O n-pi* shifts: an experimental proof, Journal of Physical Chemistry Letters, vol. 7, no. 12, pp. 2270-2275, 2016.
S. Chatterjee, Haldar, T., Ghosh, D., and Bagchi, S., Electrostatic manifestation of micro-heterogeneous solvation structures in deep-eutectic solvents: a spectroscopic approach, Journal of Physical Chemistry B, vol. 124, no. 18, pp. 3709-3715, 2020.
M. Pillai, Das, A., and Jha, S. Kumar, Electrostatic modulation of intramolecular and intermolecular interactions during the formation of an amyloid-like assembly, Biochemistry, vol. 62, no. 12, pp. 1890-1905, 2023.
S. Bose, Chakrabarty, S., and Ghosh, D., Electrostatic origin of the red solvatochromic shift of DFHBDI in RNA spinach, Journal of Physical Chemistry B, vol. 121, no. 18, pp. 4790-4798, 2017.
A. Dey, Mondal, S. Islam, Sen, S., Ghosh, D., and G. Patwari, N., Electrostatics determine vibrational frequency shifts in hydrogen bonded complexes, Physical Chemistry Chemical Physics, vol. 16, no. 46, pp. 25247-25250, 2014.
C. U. Saraf, Elements of managing transfer of technology from laboratory to industry: technology transfer management (TTM), Journal of Scientific & Industrial Research, vol. 73, no. 11, pp. 704-710, 2014.
A. H. Chaurasiya, Jaiswal, M. R., Bayatigeri, S., Kahar, S., Tiwari, S., Unnikrishnan, A. G., and Kulkarni, M. J., Elevated level of glycated KQTALVELVK peptide of albumin is associated with the risk of diabetic nephropathy, ACS Omega, vol. 8, no. 23, pp. 20654-20660, 2023.
S. Singh, Bhardwaj, S., Verma, C., Chhajed, M., Balayan, K., Ghosh, K., and Maji, P. K., Elliptically birefringent chemically tuned liquid crystalline nanocellulose composites for photonic applications, Journal of Molecular Liquids, vol. 366, p. 120326, 2022.
S. Kirti, Bhandari, V. M., Jena, J., and Bhattacharyya, A. S., Elucidating efficacy of biomass derived nanocomposites in water and wastewater treatment, Journal of environmental management , vol. 226, pp. 95-105, 2018.
S. Prasad, Ganisetti, S., Jana, A., Kant, S., Sinha, P. K., Tripathy, S., Illath, K., Ajithkumar, T. G., Annapurna, K., Allu, A. R., and Biswas, K., Elucidating the effect of CaF 2 on structure, biocompatibility and antibacterial properties of S53P4 glass, Journal of Alloys and Compounds, vol. 831, p. 154704, 2020.
S. Prasad, Ganisetti, S., Jana, A., Kant, S., Sinha, P. K., Tripathy, S., Illath, K., Ajithkumar, T. G., Annapurna, K., Allu, A. R., and Biswas, K., Elucidating the effect of CaF2 on structure, biocompatibility and antibacterial properties of S53P4 glass (vol 831, 154704, 2020), Journal of Alloys and Compounds, vol. 883, p. 161253, 2021.
A. P. Tathod and Dhepe, P. L., Elucidating the effect of solid base on the hydrogenation of C5 and C6 sugars over Pt–Sn bimetallic catalyst at room temperature, Carbohydrate Research, vol. 505, p. 108341, 2021.
S. R. Keshri, Mandal, I., Ganisetti, S., Kasimuthumaniyan, S., Kumar, R., Gaddam, A., Shelke, A., Ajithkumar, T. G., Gosvami, N. Nand, Krishnan, N. M. Anoop, and Allu, A. R., Elucidating the influence of structure and Ag+ -Na+ ion-exchange on crack-resistance and ionic conductivity of Na3Al1.8Si1.65 P-1.8 O-12 glass electrolyte, Acta Materialia, vol. 227, p. 117745, 2022.

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