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P. Ramya, Chaubal, A., Kulkarni, K., Gupta, L., Kadoo, N. Y., Dhaliwal, H. Singh, Chhuneja, P., Lagu, M. D., and Gupta, V., QTL mapping of 1000-kernel weight, kernel length, and kernel width in bread wheat (Triticum aestivum L.), Journal of Applied Genetics, vol. 51, no. 4, pp. 421-429, 2010.
R. S. Zwart, Thompson, J. P., Milgate, A. W., Bansal, U. K., Williamson, P. M., Raman, H., and Bariana, H. S., QTL mapping of multiple foliar disease and root-lesion nematode resistances in wheat, Molecular Breeding, vol. 26, no. 1, pp. 107-124, 2010.
A. Mishra and Sarkar, D., Qualitative and quantitative proteomic analysis of vitamin C induced changes in mycobacterium smegmatis, Frontiers in Microbiology, vol. 6, p. Article Number: 451, 2015.
V. Bhavana, Chavan, R. B., Mannava, M. K. Chaitan, Nangia, A., and Shastri, N. R., Quantification of niclosamide polymorphic forms - a comparative study by Raman, NIR and MIR using chemometric techniques, Talanta, vol. 199, pp. 679-688, 2019.
N. V. Plotnikoy, B. Prasad, R., Chakrabarty, S., Chu, Z. T., and Warshel, A., Quantifying the mechanism of phosphate monoester hydrolysis in aqueous solution by evaluating the relevant Ab initio QM/MM free-energy surfaces, Journal of Physical Chemistry B, vol. 117, no. 42, pp. 12807-12819, 2013.
L. Nawale and Sarkar, D., Quantitative, automated, high content screening assay approach to anti-angiogenicdrug discovery, in National Science Day, At CSIR-NCL, Combi Chem-Bio Resource Center, OCD, National Chemical Laboratory, Pune - 411 008, 2015.
S. Pal and Kulkarni, A. A., Quantitative comparison of strategies to delay clogging in straight capillaries, Chemical Engineering Science, vol. 199, pp. 88-99, 2019.
A. Kumar, Rani, A., Venkatesu, P., and Kumar, A., Quantitative evaluation of the ability of ionic liquids to offset the cold-induced unfolding of proteins, Physical Chemistry Chemical Physics, vol. 16, no. 30, pp. 15806-15810, 2014.
D. H. Dandekar, Kumar, M., Ladha, J. S., Ganesh, K. N., and Mitra, D., Quantitative method for normalization of transfection efficiency using enhanced green fluorescent protein, Analytical Biochemistry, vol. 342, no. 2, pp. 341-344, 2005.
R. Rajappan, Shingade, P. D., Natarajan, R., and Jayaraman, V. K., Quantitative structure-property relationship (QSPR) prediction of liquid viscosities of pure organic compounds employing random forest regression, Industrial & Engineering Chemistry Research, vol. 48, no. 21, pp. 9708-9712, 2009.
S. Patil, Kate, P. R., Deshpande, J. B., and Kulkarni, A. A., Quantitative understanding of nucleation and growth kinetics of silver nanowires, Chemical Engineering Journal, vol. 414, p. 128711, 2021.
S. K. Apte, Garaje, S. N., Naik, S. D., Waichal, R. P., Baeg, J. - O., and Kale, B. B., Quantum confinement controlled solar hydrogen production from hydrogen sulfide using a highly stable CdS0.5Se0.5/CdSe quantum dot-glass nanosystem, Nanoscale, vol. 6, no. 2, pp. 908-915, 2014.
A. H. H. Maneri, Varode, S. Suhas, Maibam, A., Ranjan, P., Krishnamurty, S., and Joshi, K., Quantum dot (Aun/Agn, n=3-8) capped single lipids: interactions and physicochemical properties, Physical Chemistry Chemical Physics, vol. 25, no. 33, pp. 22294-22303, 2023.
A. Morarka, Agrawal, S., Kale, S., Kale, A., Ogale, S. B., Paknikar, K., and Bodas, D. S., Quantum dot based immunosensor using 3D circular microchannels fabricated in PDMS, Biosensors & Bioelectronics, vol. 26, no. 6, pp. 3050-3053, 2011.
S. Kale, Kale, A., Gholap, H., Rana, A., Desai, R., Banpurkar, A. G., Ogale, S., and Shastry, P., Quantum dot bio-conjugate: as a western blot probe for highly sensitive detection of cellular proteins, Journal of Nanoparticle Research, vol. 14, no. 3, p. 732, 2012.
R. Reddy Devarapalli, Kamaja, C. Krishna, and Shelke, M. V., Quantum dot-decorated silicon nanowires as efficient photoelectrodes for photoelectrochemical hydrogen generation, Journal of Materials Chemistry A, vol. 2, no. 33, pp. 13352-13358, 2014.
D. Mandal and Rath, A. K., Quantum dots coupled to an oriented two-dimensional crystalline matrix for solar cell application, ACS Applied Materials & Interfaces, vol. 10, no. 45, pp. 39074-39082, 2018.
P. Khadilkar, Samudre, N. S., and Krishnamurty, S., Quasi-molecular hydrogen storage capacity of graphene quantum dots: A dispersion corrected DFT study, Journal of Energy Storage, vol. 84, 2024.
N. M. Gupta, Kelkar, S. A., and Korake, P. V., Quenching effect of uranyl species in the photoluminescence emission and visible-light-driven water dissociation activity of CdS and TiO2 photocatalysts, Photochemical & Photobiological Sciences, vol. 15, no. 6, pp. 758-766, 2016.
R. Ramesh and D. Reddy, S., Quest for novel chemical entities through incorporation of silicon in drug scaffolds, Journal of Medicinal Chemistry, vol. 61, no. 9, pp. 3779-3798, 2018.
S. Subhash Pandit, Mitra, S. Sribas, Giri, A. P., and Gupta, V. Shrikant, Quick method for isolating RNA from raw and ripe fleshy fruits as well as for co-isolating DNA and RNA from polysaccharide- and polyphenol-rich leaf tissues, Journal of Plant Biology, vol. 50, no. 1, pp. 60-64, 2007.
D. D. Subhedar, Shaikh, M. H., Nawale, L. U., Sarkar, D., Khedkar, V. M., and Shingate, B. B., Quinolidene based monocarbonyl curcumin analogues as promising antimycobacterial agents: synthesis and molecular docking study, Bioorganic & medicinal chemistry letters, vol. 27, no. 4, pp. 922-928, 2017.
D. D. Subhedar, Shaikh, M. H., Shingate, B. B., Nawale, L., Sarkar, D., Khedkar, V. M., Khan, F. A. Kalam, and Sangshetti, J. N., Quinolidene-rhodanine conjugates: facile synthesis and biological evaluation, European Journal of Medicinal Chemistry, vol. 125, pp. 385–399, 2017.
R
S. Mane, Racemic drug resolution: a comprehensive guide, Analytical Methods, vol. 8, no. 42, pp. 7567-7586, 2016.
A. A. Athawale, Chandwadkar, A. J., Karandikar, P. R., Pasricha, R., and Bapat, M. S., Radiation assisted synthesis of nanosized barium zirconate, Radiation Physics and Chemistry, vol. 75, no. 7, pp. 755-759, 2006.
T. Sengupta and Pal, S., Radical attached aluminum nanoclusters: an alternative way of cluster stabilization, Physical Chemistry Chemical Physics, vol. 18, no. 31, pp. 21746-21759, 2016.
P. S. Mahajan, Humne, V. T., Tanpure, S. D., and Mhaske, S. B., Radical beckmann rearrangement and its application in the formal total synthesis of antimalarial natural product isocryptolepine via C-H activation, Organic Letters, vol. 18, no. 14, pp. 3450-3453, 2016.
P. Kumar, Rai, A., Kumar, M., Krishna, G. Rama, and Das, U., Radical cascade cyclization of unactivated alkene-tethered indoles with aryldiazonium salt and sodium metabisulfite to access Azo- and Sulfonylated-2,3-Dihyro-1H-pyrrolo[1,2-a]indoles, Journal of Organic Chemistry, vol. 88, no. 13, pp. 9123-9129, 2023.
B. P. Gurale, Vanka, K., and Shashidhar, M. S., Radical mediated deoxygenation of inositol benzylidene acetals: conformational analysis, DFT calculations, and mechanism, Carbohydrate Research, vol. 351, pp. 26-34, 2012.
S. P. Bhoite, Bansodes, A. H., and Suryavanshi, G., Radical rearrangement of aryl/alkylidene malononitriles via aza michael addition/decynoformylation/addition sequence: an access to alpha-aminonitriles and alpha-aminoamides, Journal of Organic Chemistry, vol. 85, no. 23, pp. 14858-14865, 2020.
D. N. Garad, Tanpure, S. D., and Mhaske, S. B., Radical-mediated dehydrative preparation of cyclic imides using (NH4)(2)S2O8-DMSO: application to the synthesis of vernakalant, Beilstein Journal of Organic Chemistry, vol. 11, pp. 1008-1016, 2015.
V. M. Kulkarni, Bodas, D., Dhoble, D., Ghormade, V., and Paknikar, K., Radio-frequency triggered heating and drug release using doxorubicin-loaded LSMO nanoparticles for bimodal treatment of breast cancer, Colloids and Surfaces B-Biointerfaces, vol. 145, pp. 878-890, 2016.
K. Anjali, Ajithkumar, T. G., and Joy, P. A., Raman and Na-23 solid-state NMR studies on the lead-free ferroelectrics Bi-0.5(Na1-xKx)(0.5)TiO3 in the morphotropic phase boundary region, Materials Research Bulletin, vol. 118, 2019.
M. Sen Bishwas, Malik, M., and Poddar, P., Raman spectroscopy-based sensitive, fast and reversible vapour phase detection of explosives adsorbed on metal-organic frameworks UiO-67, New Journal of Chemistry, vol. 45, no. 16, pp. 7145-7153, 2021.
V. D. Deepak and Asha, S. K., Random and AB diblock copolymers of tricyclodecanemethanol urethane methacrylate with styrene: synthesis and morphology characterization, Journal of Polymer Science Part A: Polymer Chemistry, vol. 46, no. 4, pp. 1278–1288, 2008.
K. S. Nisha and Asha, S. K., Random copolyesters containing perylene bisimide: flexible films and fluorescent fibers, ACS Applied Materials & Interfaces, vol. 6, no. 15, pp. 12457-12466, 2014.
S. A. Gokhale and Gadgil, C. J., Ranking of reactions based on sensitivity of protein noise depends on the choice of noise measure, Plos One, vol. 10, no. 12, p. Article Number: e0143867, 2015.
A. Bhunia, Roy, T., Gonnade, R. G., and Biju, A. T., Rapid access to benzoxaphospholes and their spiro analogues by a three-component coupling involving arynes, phosphines, and activated ketones, Organic Letters, vol. 16, pp. 5132-5135, 2014.
M. Azhar, Phutela, R., Kumar, M., Ansari, A. Hussain, Rauthan, R., Gulati, S., Sharma, N., Sinha, D., Sharma, S., Singh, S., Acharya, S., Sarkar, S., Paul, D., Kathpalia, P., Aich, M., Sehgal, P., Ranjan, G., Bhoyar, R. C., Singhal, K., Lad, H., Patra, P. Kumar, Makharia, G., Chandak, G. Ratan, Pesala, B., Chakraborty, D., Maiti, S., and Epide, I. CoV. 2 Genom, Rapid and accurate nucleobase detection using FnCas9 and its application in COVID-19 diagnosis, Biosensors & Bioelectronics, vol. 183, p. 113207, 2021.
A. Bagade, Nandre, V., Ghosh, S., Battu, S., Haram, S., Giri, A., and Kodam, K., Rapid and efficient sequestration of arsenic from contaminated water using hypertolerant Bacillus L-148 sp.: a two-step process, Green Chemistry, vol. 21, no. 9, pp. 2245-2251, 2019.
G. R. Navale, Gohil, K. N., Puppala, K. R., Shinde, S. S., Umbarkar, S., and Dharne, M. S., Rapid and greener method for utilization of plaster of paris (POP) waste generated from biomedical samples, International Journal of Environmental Science and Technology, vol. 16, no. 5, pp. 2475-2480, 2019.
R. J. Varma and Gaikwad, B. G., Rapid and high biodegradation of phenols catalyzed by Candida tropicalis NCIM 3556 cells, Enzyme and Microbial Technology, vol. 43, no. 6, pp. 431-435, 2008.
S. P. Chavan, Kalbhor, D. B., and Gonnade, R. G., Rapid bioinspired N-acyliminium ion strategy for the ABC core of the stemona alkaloids, Asian Journal of Organic Chemistry, vol. 12, no. 9, 2023.
P. S. More, Shelke, A. V., and Late, D. J., Rapid characterization of oxidative deterioration in edible oil by optical photospectrometry, Journal of Food and Dairy Technology, vol. 3, no. 2, 2015.
A. Paul, Perween, M., Saha, S., Srivastava, D. N., and Das, A., Rapid conductometric sensor for the analysis of cyanide using imidazole based receptor, Physical Chemistry Chemical Physics, vol. 17, no. 40, pp. 26790-26796, 2015.
G. R. Salunke, Ghosh, S., Kumar, R. J. Santosh, Khade, S., Vashisth, P., Kale, T. S., Chopade, S., Pruthi, V., Kundu, G., Bellare, J. R., and Chopade, B. Ananda, Rapid efficient synthesis and characterization of silver, gold, and bimetallic nanoparticles from the medicinal plant plumbago zeylanica and their application in biofilm control, International Journal of Nanomedicine, vol. 9, pp. 2635-2653, 2014.
T. N. Shilmkar, Kolekar, S. S., Wadgaonkar, P. P., and Anuse, M. A., Rapid extraction and separation of indium(III) with a high molecular weight amine, Indian Journal of Chemical Technology, vol. 15, no. 3, pp. 291-297, 2008.
M. D. Shinde, Pawar, A. U., Sreeja, V., Rane, S., Potdar, H. S., and Amalnerkar, D. P., Rapid generation of hierarchical nanoarchitectures of CdS via facile microwave assisted hydrothermal/semi-solvothermal route, International Journal of Nanotechnology, vol. 7, no. 9-12, pp. 1120-1130, 2010.
A. A. Athawale, Chandwadkar, A. J., Karandikar, P. R., and Bapat, M. S., Rapid hydrothermal synthesis route for nanocrystalline SrZrO3 using reactive precursors, Materials Science and Engineering B-Solid State Materials for Advanced Technology, vol. 119, no. 1, pp. 87-93, 2005.
D. Chakraborty, Agrawal, A., and Maiti, S., Rapid identification and tracking of SARS-CoV-2 variants of concern, Lancet, vol. 397, no. 10282, pp. 1346-1347, 2021.
S. V. Mahamuni, Wadgaonkar, P. P., and Anuse, M. A., Rapid liquid-liquid extraction of thallium(III) from succinate media with 2-octylaminopyirdine in chloroform as the extractant, Journal of the Serbian Chemical Society, vol. 73, no. 4, pp. 435-451, 2008.
H. Prakash Veluswamy, Wong, A. Jia Hui, Babu, P., Kumar, R., Kulprathipanja, S., Rangsunvigit, P., and Linga, P., Rapid methane hydrate formation to develop a cost effective large scale energy storage system, Chemical Engineering Journal, vol. 290, pp. 161-173, 2016.
S. Mitra, Chandra, S., Kundu, T., Banerjee, R., Pramanik, P., and Goswami, A., Rapid microwave synthesis of fluorescent hydrophobic carbon dots, RSC Advances, vol. 2, no. 32, pp. 12129-12131, 2012.
C. C. Ng, Chang, C. C., Wu, I. C., Kotwal, S., and Shyu, Y. T., Rapid molecular identification of freshly squeezed and reconstituted orange juice, International Journal of Food Science and Technology, vol. 41, no. 6, pp. 646-651, 2006.
S. D. Naik, Jagadale, T. C., Apte, S. K., Sonawane, S., Kulkarni, M. V., Patil, S. I., Ogale, S. B., and Kale, B. B., Rapid phase-controlled microwave synthesis of nanostructured hierarchical tetragonal and cubic beta-In2S3 dandelion flowers, Chemical Physics Letters, vol. 452, no. 4-6, pp. 301-305, 2008.
A. Phadke, Zhang, C., Arman, B., Hsu, C. - C., Mashelkar, R. Anant, Lele, A. K., Tauber, M. J., Arya, G., and Varghese, S., Rapid self-healing hydrogels, Proceedings of the National Academy of Sciences of the United States of America, vol. 109, no. 12, pp. 4383-4388, 2012.
M. R. Shadab Khan, Salunkhe, P., Satpute, S., Kendurkar, S., Prabhune, A., Deval, A., and Chaudhari, B. P., Rapid synthesis of highly monodispersed silver nanoparticles from the leaves of Salvadora persica, Materials Letters, vol. 205, pp. 226-229, 2017.
S. P. Chavan, Kalbhor, D. B., and Gonnade, R. G., Rapid synthesis of the epi-biotin sulfone via tandem S,N-carbonyl migration/aza-michael/spirocyclization and haller-bauer reaction, ACS Omega, vol. 7, no. 20, pp. 17215-17222, 2022.
S. Bhattacharjee, Raju, A., Gaykar, R. N., Gonnade, R. G., Roy, T., and Biju, A. T., Rapid synthesis of zwitterionic phosphonium benzoates by a three-component coupling involving phosphines, arynes and CO2, Chemistry-An Asian Journal, vol. 15, no. 14, pp. 2203-2207, 2020.
D. Sarma and Kumar, A., Rare earth metal triflates promoted diels-alder reactions in ionic liquids, Applied Catalysis A-General, vol. 335, no. 1, pp. 1-6, 2008.
P. Mahato, Saha, S., and Das, A., Rare example of TICT based optical responses for the specific recognition of Cr3+ by a 2,2?:6?,2?-terpyridine derivative and demonstration of multiple logic operations, Journal of Physical Chemistry C, vol. 116, no. 33, pp. 17448–17457, 2012.
A. Sud, Deshpande, R. Madhukar, and Chaudhari, R. V., Rate enhancement in palladium catalyzed Heck reactions by Lewis acid promoters, Catalysis Communications, vol. 8, no. 2, pp. 183-186, 2007.
P. Mahato, Saha, S., Suresh, E., Di Liddo, R., Parnigotto, P. Paolo, Conconi, M. Teresa, Kesharwani, M. K., Ganguly, B., and Das, A., Ratiometric detection of Cr3+ and Hg2+ by a naphthalimide-rhodamine based fluorescent probe, Inorganic Chemistry, vol. 51, no. 3, pp. 1769–1777, 2012.
M. G. Walker, Ramu, V., Meijer, A. J. H. M., Das, A., and Thomas, J. A., Ratiometric sensor for DNA based on a dual emission Ru(dppz) light-switch complex, Dalton Transactions, vol. 46, no. 18, pp. 6079-6086, 2017.
P. A. Bharad, Sivaranjani, K., and Gopinath, C. S., Rational approach towards enhancing solar water splitting: a case study of Au-RGO/N-RGO-TiO2, Nanoscale, vol. 7, no. 25, pp. 11206-11215, 2015.
H. M. Mali, Sabale, S. S., Degani, M. S., Borkute, R., Choudhari, A. S., Sarkar, D., Krishna, V. Siva, and Sriram, D., Rational design of coumarin derivatives as antituberculosis agents, Future Medicinal Chemistry, vol. 10, no. 20, pp. 2431-2444, 2018.
A. J. Nawara-Hultzsch, Hackenberg, J. D., Punji, B., Supplee, C., Emge, T. J., Bailey, B. C., Schrock, R. R., Brookhart, M., and Goldman, A. S., Rational design of highly active “hybrid” phosphine-phosphinite pincer iridium catalysts for alkane metathesis, ACS Catalysis, vol. 3, no. 11, pp. 2505–2514, 2013.
N. R. Tawari, Bag, S., Raju, A., Lele, A. C., Bairwa, R., Ray, M. Kanta, Rajan, M. G. R., Nawale, L. U., Sarkar, D., and Degani, M. S., Rational drug design, synthesis and biological evaluation of dihydrofolate reductase inhibitors as antituberculosis agents, Future Medicinal Chemistry, vol. 7, no. 8, pp. 979-988, 2015.
P. M. More, Nguyen, D. L., Dongare, M. K., Umbarkar, S. B., Nuns, N., Girardon, J. S., Dujardin, C., Lancelot, C., Mamede, A. - S., and Granger, P., Rational preparation of Ag and Au bimetallic catalysts for the hydrocarbon-SCR of NOx: sequential deposition vs. coprecipitation method, Applied Catalysis B-Environmental, vol. 162, pp. 11-20, 2015.
S. P. S. Shaikh and , Rational synthesis of 10GDC electrolyte through a microwave irradiation GNP facile route for SOFC applications, RSC Advances, vol. 10, no. 5, pp. 3020-3028, 2020.
A. Susan and Joshi, K., Rationalizing the role of structural motif and underlying electronic structure in the finite temperature behavior of atomic clusters, Journal of Chemical Physics, vol. 140, no. 15, p. 154307, 2014.
V. Subramanian, Gnanakumar, E. S., Jeong, D. - W., Han, W. - B., Gopinath, C. S., and Roh, H. - S., Rationally designed CuFe2O4-mesoporous Al2O3 composite towards stable performance of high temperature water-gas shift reaction, Chemical Communications, vol. 49, no. 96, pp. 11257-11259, 2013.
B. Tudu, Nalajala, N., Reddy, K. Prabhakar, Saikia, P., and Gopinath, C. S., Rationally designed, efficient, and earth-abundant Ni-Fe cocatalysts for solar hydrogen generation, ACS Sustainable Chemistry & Engineering, vol. 9, no. 41, pp. 13915-13925, 2021.
M. Ghosh, Vijayakumar, V., Soni, R., and Kurungot, S., Rationally designed self-standing V2O5 electrode for high voltage non-aqueous all-solid-state symmetric (2.0 V) and asymmetric (2.8 V) supercapacitors, Nanoscale, vol. 10, no. 18, pp. 8741-8751, 2018.
B. Bowonder, Racherla, J. K., Mastakar, N. V., and Krishnan, S., R&D spending patterns of global firms, Research-Technology Management, vol. 48, no. 5, pp. 51-59, 2005.
L. Kathawate, Joshi, P. V., Dash, T. Kumar, Pal, S., Nikalje, M., Weyhermueller, T., Puranik, V. G., V. Konkimalla, B., and Salunke-Gawali, S., Reaction between lawsone and aminophenol derivatives: synthesis, characterization, molecular structures and antiproliferative activity, Journal of Molecular Structure, vol. 1075, pp. 397-405, 2014.
J. B. Deshpande and Kulkarni, A. A., Reaction engineering for continuous production of silver nanoparticles, Chemical Engineering & Technology, vol. 41, no. 1, pp. 157-167, 2018.
D. R. Mote and Ranade, V. V., Reaction engineering of urea alcoholysis: alkyl carbamates, Indian Journal of Chemical Technology, vol. 24, no. 1, pp. 9-19, 2017.
R. Harikrishna, Ponrathnam, S., and Tambe, S. S., Reaction kinetics and modeling of photoinitiated cationic polymerization of an alicyclic based diglycidyl ether, Nuclear Instruments & Methods in Physics Research Section B-Beam Interactions with Materials and Atoms, vol. 318, pp. 263-268, 2014.
V. S. Kshirsagar, Nadgeri, J. M., Tayade, P. R., and Rode, C. V., Reaction kinetics of liquid phase air oxidation of p-cresol to p-hydroxybenzaldehyde, Applied Catalysis A-General, vol. 339, no. 1, pp. 28-35, 2008.
V. Nair, Biju, A. T., Abhilash, K. G., Menon, R. S., and Eringathodi, S., Reaction of diaryl-1,2-diones with triphenylphosphine and diethyl azodicarboxylate leading to N, N-dicarboethoxy monohydrazones via a novel rearrangement, Organic Letters, vol. 7, no. 11, pp. 2121–2123, 2005.
V. Nair, Biju, A. T., Vinod, A. V., and Eringathodi, S., Reaction of huisgen zwitterion with 1,2-benzoquinones and isatins: expeditious synthesis of dihydro-1,2,3-benzoxadiazoles and spirooxadiazolines, Organic Letters, vol. 7, no. 23, pp. 5139–5142, 2005.
V. Nair, Mathew, S. C., Biju, A. T., and Eringathodi, S., Reaction of huisgen zwitterion with diaryl ketones leading to the facile synthesis of mono- and bis(alkoxycarbonyl)hydrazones, Synthesis-Stuttgart, no. 7, pp. 1078-1084, 2008.
V. Nair, Biju, A. T., and Mathew, S. C., Reaction of huisgen zwitterion with diaryl-1,2-diones and ketones: an efficient protocol for carbon-nitrogen bond formation, Synthesis-Stuttgart, no. 5, pp. 697-704, 2007.
A. Bhunia, Thorat, S. H., Gonnade, R. G., and Biju, A. T., Reaction of N-heterocyclic carbenes with chalcones leading to the synthesis of deoxy-breslow intermediates in their oxidized form, Chemical Communications, vol. 51, no. 71, pp. 13690-13693, 2015.
V. Nair, Mathew, S. C., Biju, A. T., and Eringathodi, S., Reaction of tpp-azodicarboxylate zwitterions and aldehydes: unprecedented synthesis of acyl carbamates, Tetrahedron Letters, vol. 48, no. 51, pp. 9018–9020, 2007.
S. P. P. Kulkarni, Joshi, S. S. S., and Kulkarni, A. A. A., Reaction pathways and kinetics of N-acetyl-d-glucosamine hydrolysis in sub- and supercritical water, New Journal of Chemistry, vol. 8, no. 5, pp. 1097-1108, 2023.
S. Mayadevi, Reactions in supercritical carbon dioxide, Indian Journal of Chemistry Section A-Inorganic Bio-Inorganic Physical Theoretical & Analytical Chemistry, vol. 51, pp. 1298-1305, 2012.
G. Aggrwal, Salunke-Gawali, S., Gejji, S. P., Nikalje, M., Chakravarty, D., Verma, P. L., Gosavi-Mirkute, P., Harihar, S., Jadhav, M., and Puranik, V. G., Reactions of 2,3-dibromonaphthalene-1,4-dione and pyridyl amines: X-ray structures, DFT investigations, and selective detection of the Hg2+ and Ni2+ ions, Engineered Science, vol. 14, pp. 78-93, 2021.
A. Jose, Paul, R. Rajan, Mohan, R., Mathew, S. C., Biju, A. T., Eringathodi, S., and Nair, V., Reactions of morita-baylis-hillman acetates with huisgen zwitterions: a novel strategy for the synthesis of ?-amino acid derivatives, Synthesis, no. 11, pp. 1829–1833, 2009.
M. Merajuddin Baag, Sahoo, M. Kumar, Puranik, V. G., and Argade, N. P., Reactions of o-aminothiophenol and o-aminophenyl disulfide with itaconic anhydride and (-)-dimenthyl itaconate: access to enantiomerically pure 1,5-benzothiazepines and benzothiazolyl-2-methylacrylic acid, Synthesis-Stuttgart, no. 3, pp. 457-463, 2007.
S. Gadekar-Shinde, Reddy, B., Khan, M., Chavan, S., Saini, D., and Mahajani, S., Reactive distillation for the production of methoxy propyl acetate: experiments and simulation, Industrial & Engineering Chemistry Research, vol. 56, no. 4, pp. 832-843, 2017.
S. Kakku, Gaikwad, S. M., Gaikwad, S., Taralkar, S. V., Billa, S. Babu, Chakinala, A. Gupta, and Chakinala, N., Reactive extraction of gluconic acid using trioctylamine in different diluents, Chemical Engineering & Technology, vol. 45, no. 3, pp. 417-424, 2022.
E. Deenadayalan, Lele, A. K., and Balasubramanian, M., Reactive extrusion of poly(L-Lactic Acid) with glycidol, Journal of Applied Polymer Science, vol. 112, no. 3, pp. 1391-1398, 2009.
M. Y. Mohan, Raghunadh, V., Sivaram, S., and Baskaran, D., Reactive polymers bearing styrene pendants through selective anionic polymerization of 4-vinylbenzyl methacrylate, Macromolecules, vol. 45, no. 8, pp. 3387-3393, 2012.
M. Kumar Bisai, Sharma, V., Gonnade, R. G., and Sen, S. S., Reactivities of silaimines with boranes: from cooperative B-H bond activation to donor stabilized silyl cation, Organometallics, vol. 40, no. 13, pp. 2133-2138, 2021.

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