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A. A. Kulkarni, Kalyani, V. S., Joshi, R. A., and Joshi, R. R., Continuous flow nitration of benzaldehyde, Organic Process Research & Development, vol. 13, no. 5, pp. 999-1002, 2009.
A. A. Kulkarni, Nivangune, N. T., Kalyani, V. S., Joshi, R. A., and Joshi, R. R., Continuous flow nitration of salicylic acid, Organic Process Research & Development, vol. 12, no. 5, pp. 995-1000, 2008.
B. M. Sharma, Atapalkar, R. S., and Kulkarni, A. A., Continuous flow solvent free organic synthesis involving solids (reactants/products) using a screw reactor, Green Chemistry, vol. 21, no. 20, pp. 5639-5646, 2019.
D. V. Ravi Kumar, Kasture, M., Prabhune, A., Ramana, C. V., Prasad, B. L. V., and Kulkarni, A. A., Continuous flow synthesis of functionalized silver nanoparticles using bifunctional biosurfactants, Green Chemistry, vol. 12, no. 4, pp. 609-615, 2010.
R. B. Jundale, Prasad, B. L. V., R. Devi, N., and Kulkarni, A. A., Continuous flow synthesis of mesoporous silica particles with tunable size and structure, Industrial and Engineering Chemistry Research, vol. 63, pp. 1843-1852, 2024.
R. Jundale, Bari, A., Thara, C., and Kulkarni, A., Continuous flow synthesis of micron size silica nanoparticles: parametric study and effect of dosing strategy, Journal of Flow Chemistry, vol. 8, no. 2, pp. 59-67, 2018.
Y. Sharma, Moolya, S., Joshi, R. A., and Kulkarni, A. A., Continuous flow telescopic oxidation of alcohols via generation of chlorine and hypochlorite, Reaction Chemistry & Engineering, 2017.
M. Y. Khan, Joshi, S. S., and Ranade, V. V., Continuous hydrogenation of cinnamaldehyde: gas-liquid-liquid-solid helical coil reactor, Industrial & Engineering Chemistry Research, vol. 62, no. 45, pp. 19250-19261, 2023.
A. C. Garade, Hengne, A. M., Deshpande, T. N., Shaligram, S. V., Shirai, M., and Rode, C. V., Continuous hydroxyalkylation of p-Cresol to 2,2 `-methylenebis(4-Methylphenol) in a fixed bed reactor, Journal of Chemical Engineering of Japan, vol. 42, no. 10, pp. 782-787, 2009.
J. B. Deshpande, Navale, G. R., Dharne, M. S., and Kulkarni, A. A., Continuous interfacial centrifugal separation and recovery of silver nanoparticles, Chemical Engineering & Technology, vol. 43, no. 3, pp. 582-592, 2020.
R. J. Varma and Gaikwad, B. G., Continuous phenol biodegradation in a simple packed bed bioreactor of calcium alginate-immobilized Candida tropicalis (NCIM 3556), World Journal of Microbiology & Biotechnology, vol. 26, no. 5, pp. 805-809, 2010.
S. R. Shirsath, Sonawane, S. H., Saini, D. R., and Pandit, A. B., Continuous precipitation of calcium carbonate using sonochemical reactor, Ultrasonics Sonochemistry, vol. 24, pp. 132-139, 2015.
M. Kumar Nandi and Bhattacharyya, S. Maitra, Continuous time random walk concepts applied to extended mode coupling theory: a study of the Stokes? Einstein breakdown, Journal of Physics-Condensed Matter, vol. 32, no. 6, p. 064001, 2020.
V. G. Bhaya, Joshi, R. A., and Kulkarni, A. A., Continuous-flow meerwein arylation, Journal of Flow Chemistry, vol. 4, no. 4, pp. 211-216, 2014.
Y. Sharma, Joshi, R. A., and Kulkarni, A. A., Continuous-flow nitration of o-xylene: effect of nitrating agent and feasibility of tubular reactors for scale-up, Organic Process Research & Development, vol. 19, no. 9, pp. 1138-1147, 2015.
F. Guo, Cheung, E. Y., Harris, K. D. M., and Pedireddi, V. R., Contrasting solid-state structures of trithiocyanuric acid and cyanuric acid, Crystal Growth & Design, vol. 6, no. 4, pp. 846-848, 2006.
N. D. Khupse and Kumar, A., Contrasting thermosolvatochromic trends in pyridinium-, pyrrolidinium-, and phosphonium-based ionic liquids, Journal of Physical Chemistry B, vol. 114, no. 1, pp. 376-381, 2010.
D. Manzoor, Krishnamurty, S., and Pal, S., Contriving a catalytically active structure from an inert conformation: a density functionalinvestigation of Al, Hf, and Ge doping of Au-20 tetrahedral clusters, Journal of Physical Chemistry C, vol. 120, no. 35, pp. 19636-19641, 2016.
J. M. Nadgeri, Biradar, N. S., Patil, P. B., Jadkar, S. T., Garade, A. C., and Rode, C. V., Control of competing hydrogenation of phenylhydroxylamine to aniline in a single-step hydrogenation of nitrobenzene to p-aminophenol , Industrial & Engineering Chemistry Research, vol. 50, no. 9, pp. 5478-5484, 2011.
R. Resmi, Amrutha, S. R., and Jayakannan, M., Control of molecular aggregation in symmetrically substituted pi-conjugated bulky poly(p-phenylenevinylene)s and their copolymers, Journal of Polymer Science Part A-Polymer Chemistry, vol. 47, no. 10, pp. 2631-2646, 2009.
B. Jancy and Asha, S. K., Control of molecular structure in the generation of highly luminescent liquid crystalline perylenebisimide derivatives: synthesis, liquid crystalline and photophysical properties, Journal of Physical Chemistry B, vol. 110, no. 42, pp. 20937–20947, 2006.
P. Pachfule, Biswal, B. P., and Banerjee, R., Control of porosity by using isoreticular zeolitic imidazolate frameworks (IRZIFs) as a template for porous carbon synthesis, Chemistry-A European Journal, vol. 18, no. 36, pp. 11399-11408, 2012.
N. Hiyoshi, Mine, E., Rode, C. V., Sato, O., Ebina, T., and Shirai, M., Control of stereoselectivity in 4-tert-butylphenol hydrogenation over a carbon-supported rhodium catalyst by carbon dioxide solvent, Chemistry Letters, vol. 35, no. 9, pp. 1060-1061, 2006.
K. Prakash, P. Kumar, S., Pandiaraj, S., Saravanakumar, K., and Karuthapandian, S., Controllable synthesis of SnO2 photocatalyst with superior photocatalytic activity for the degradation of methylene blue dye solution, Journal of Experimental Nanoscience, vol. 11, no. 14, pp. 1138-1155, 2016.
S. Tamang, Hotha, S., and Prasad, B. L. V., Controlled aggregation of gold nanoparticle networks induced by alkali metal ions, Journal of Nanoscience and Nanotechnology, vol. 7, no. 8, pp. 2683-2689, 2007.
G. Sakellariou, Ji, H., Mays, J. W., Hadjichristidis, N., and Baskaran, D., Controlled covalent functionalization of multiwalled carbon nanotubes using [4+2] cycloaddition of benzocyclobutenes, Chemistry of Materials, vol. 19, no. 26, pp. 6370-6372, 2007.
N. R. Mote, Gaikwad, S. R., ,, Gonnade, R. G., and Chikkali, S. H., Controlled di-lithiation enabled synthesis of phosphine-sulfonamide ligands and implications in ethylene oligomerization, Dalton Transactions, vol. 50, no. 10, pp. 3717-3723, 2021.
G. Tiwari, C. Vinod, P., and Jagirdar, B. R., Controlled exchange bias behavior of manganese nanoparticles, Journal of Magnetism and Magnetic Materials, vol. 559, p. 169504, 2022.
P. S. Chaudhari, Bhave, T. M., Pasricha, R., Singh, F., Kanjilal, D., and Bhoraskar, S. V., Controlled growth of silicon nanocrystallites in silicon oxide matrix using 150 MeV Ag ion irradiation, Nuclear Instruments & Methods in Physics Research Section B-Beam Interactions with Materials and Atoms, vol. 239, no. 3, pp. 185-190, 2005.
N. Kalva, Parekh, N., and Ambade, A. V., Controlled micellar disassembly of photo- and pH-cleavable linear-dendritic block copolymers, Polymer Chemistry, vol. 6, no. 38, pp. 6826-6835, 2015.
D. Kumar Das, Bakthavatsalam, R., Anilkumar, V., Mali, B. P., Ahmed, M. Soif, Raavi, S. Santosh Ku, Pallepogu, R., and Kundu, J., Controlled modulation of the structure and luminescence properties of zero-dimensional manganese halide hybrids through structure-directing metal-ion (Cd2+ and Zn2+) centers, Inorganic Chemistry, vol. 61, no. 13, pp. 5363-5372, 2022.
R. Kumar, Sharma, V., Banerjee, S., Vanka, K., and Sen, S. S., Controlled reduction of isocyanates to formamides using monomeric magnesium, Chemical Communications, vol. 59, no. 16, pp. 2255-2258, 2023.
B. V. Bhaskar Rao, Mukherji, R., Shitre, G., Alam, F., Prabhune, A., and Kale, S. N., Controlled release of antimicrobial Cephalexin drug from silica microparticles, Materials Science & Engineering C-Materials for Biological Applications, vol. 34, pp. 9-14, 2014.
S. Hegde, Pant, T., Pradhan, K., Badiger, M. V., and Gadgil, M., Controlled release of nutrients to mammalian cells cultured in shake flasks, Biotechnology Progress, vol. 28, no. 1, pp. 188-195, 2012.
S. M. Ansari, Sinha, B. B., Pai, K. R., Bhat, S. K., Ma, Y. - R., Sen, D., Kolekar, Y. D., and , Controlled surface/interface structure and spin enabled superior properties and biocompatibility of cobalt ferrite nanoparticles, Allied Surface Science , vol. 459, pp. 788-801, 2018.
C. Dey and Banerjee, R., Controlled synthesis of a catalytically active hybrid metal-oxide incorporated zeolitic imidazolate framework (MOZIF), Chemical Communications, vol. 49, no. 59, pp. 6617-6619, 2013.
S. S. Warule, Chaudhari, N. S., Kale, B. B., Pandiraj, S., Khare, R. T., and More, M. A., Controlled synthesis of aligned Bi2S3 nanowires, sharp apex nanowires and nanobelts with its morphology dependent field emission investigations, Crystengcomm, vol. 15, no. 5, pp. 890-896, 2013.
S. Das, Parekh, N., Mondal, B., and Gupta, S. Sen, Controlled synthesis of end-functionalized mannose-6-phosphate glycopolypeptides for lysosome targeting, ACS Macro Letters, vol. 5, no. 7, pp. 809-813, 2016.
P. S. Umare, Rao, K., Tembe, G. L., Dhoble, D. Arun, and Trivedi, B., Controlled synthesis of low-molecular-weight polyethylene waxes by titanium-biphenolate-ethylaluminum sesquichloride based catalyst systems, Journal of Applied Polymer Science, vol. 104, no. 3, pp. 1531-1539, 2007.
D. Pati, Shaikh, A. Y., Das, S., Nareddy, P. Kumar, Swamy, M. J., Hotha, S., and Gupta, S. Sen, Controlled synthesis of O-glycopolypeptide polymers and their molecular recognition by lectins, Biomacromolecules, vol. 13, no. 5, pp. 1287-1295, 2012.
C. Amgoth, Patra, S., Wasnik, K., Maity, P., and Paik, P., Controlled synthesis of thermosensitive tunable porous film of (pNIPAM)-b-(PCL) copolymer for sustain drug delivery, Journal of Applied Polymer Science, vol. 140, no. 20, p. e53854, 2023.
K. Bin Masood, Kumar, P., Giri, R., and Singh, J., Controlled synthesis of two-dimensional (2-D) ultra-thin bismuth selenide (Bi2Se3) nanosheets by bottom-up solution-phase chemistry and its electrical transport properties for thermoelectric application, FlatChem, vol. 21, p. 100165, 2020.
S. C. Navale, Gosavi, S. W., and Mulla, I. S., Controlled synthesis of ZnO from nanospheres to micro-rods and its gas sensing studies, Talanta, vol. 75, no. 5, pp. 1315-1319, 2008.
P. Gogoi, Kanna, N., Begum, P., Deka, R. C., Satyanarayana, C. V. V., and Raja, T., Controlling and stabilization of Ru nanoparticles by tuning the nitrogen content of the support for enhanced H-2 production through aqueous-phase reforming of glycerol, ACS Catalysis, vol. 10, no. 4, pp. 2489-2507, 2020.
D. Rokade, Chougale, S., Patil, P., Bhattacharjee, T., Gawande, D., Pol, H., and Dhadwal, R., Controlling draw resonance during extrusion film casting of nanoclay filled linear low-density polyethylene: an experimental study and numerical linear stability analysis, Journal of Plastic Film & Sheeting, vol. 37, no. 3, p. 8756087920978443, 2021.
D. Rokade, Azad, L. B., Poddar, S., Mishra, S., Pol, H. V., and Shukla, R., Controlling necking in extrusion film casting using polymer nanocomposites, Journal of Macromolecular Science Part B-Physics, vol. 56, no. 4, pp. 213-233, 2017.
A. Azarifar, Yadav, P. A., Chawla, A. K., Jog, J. Prakash, Patil, S. I., Chandra, R., and Ogale, S. B., Controlling stoichiometry in low temperature synthesis of La0.7Sr0.3MnO3 nanoparticles, Advanced Science Letters, vol. 4, no. 2, pp. 424-430, 2011.
V. Dhyani and Singh, N., Controlling the cell adhesion property of silk films by graft polymerization, ACS Applied Materials & Interfaces, vol. 6, no. 7, pp. 5005-5011, 2014.
S. S. Shankar, Rai, A., Ahmad, A., and Sastry, M., Controlling the optical properties of lemongrass extract synthesized gold nanotriangles and potential application in infrared-absorbing optical coatings, Chemistry of Materials, vol. 17, no. 3, pp. 566-572, 2005.
S. N. Rai, Kalluraya, B., Lingappa, B., Shenoy, S., and Puranik, V. G., Convenient access to 1, 3,4-trisubstituted pyrazoles carrying 5-nitrothiophene moiety via 1,3-dipolar cycloaddition of sydnones with acetylenic ketones and their antimicrobial evaluation, European Journal of Medicinal Chemistry, vol. 43, no. 8, pp. 1715-1720, 2008.
S. P. Borikar and Daniel, T., Convenient and efficient protocol for the synthesis of acylals catalyzed by bronsted acidic ionic liquids under ultrasonic irradiation, Ultrasonics Sonochemistry, vol. 18, no. 5, pp. 928-931, 2011.
S. Mitragotri, Kulkarni, M., Desai, U., and Wadagaonkar, P., Convenient and mild protocol for preparation of α –trimethylsilyloxyphosphonates using sulfamic acid and their oxidation to α – ketophosphonates in the presence of N-bromosuccinimide, Arkivoc, vol. 2021, 2021.
K. Pradhan, Selvaraj, K., and Nanda, A. K., Convenient approach to the synthesis of different types of schiff's bases and their metal complexes, Chemistry Letters, vol. 39, no. 10, pp. 1078-1079, 2010.
U. R. Kalkote, Purude, A. N., Puranik, V. G., and Gurjar, M. K., Convenient chemoenzymatic synthesis of (1S,7aS)-1-hydroxy-5-oxo-4-(2 `-carboxyethyl)-7a-methyltetrahydro-indane - a key intermediate of steroids, Journal of Molecular Catalysis B-Enzymatic, vol. 40, no. 1-2, pp. 38-43, 2006.
E. Balaraman and Swamy, K. C. Kumara, Convenient chromatography-free access to enantio-pure 6,6’-di-tert-butyl-1,1’- binaphthalene-2,2’-diol- its 3,3’-dibromo, di-tert-butyl and phosphorus derivatives: utility in asymmetric synthesis, Tetrahedron-Asymmetry, vol. 18, no. 17, pp. 2037–2048, 2007.
S. P. Chavan, Harale, K. R., Dumare, N. B., and Kalkote, U. R., Convenient formal synthesis of (2S,3S)-3-hydroxy pipecolic acid, Tetrahedron-Asymmetry, vol. 22, no. 5, pp. 587-590, 2011.
S. P. Chavan, Khobragade, D. A., Pathak, A. B., and Kalkote, U. R., Convenient formal synthesis of (+/-)-paroxetine, Synthetic Communications, vol. 37, no. 18, pp. 3143-3149, 2007.
G. Suresh, Nadh, R. Venkata, Srinivasu, N., and Yennity, D., Convenient new and efficient commercial synthetic route for dasatinib (sprycel®), Synthetic Communications, vol. 47, no. 17, pp. 1610-1621, 2017.
Y. Soni, Kumar, A. Erumpukuth, Nayak, C., Deepak, F. Leonard, and Vinod, C. P., Convenient route for Au@Ti-SiO2 nanocatalyst synthesis and its application for room temperature CO oxidation, Journal of Physical Chemistry C, vol. 121, no. 9, pp. 4946-4957, 2017.
M. K. Sahoo, Sivakumar, G., Jadhav, S., Shaikh, S., and Balaraman, E., Convenient semihydrogenation of azoarenes to hydrazoarenes using H-2, Organic & Biomolecular Chemistry, vol. 19, no. 24, 2021.
L. Muthusubramanian and Mitra, R. B., Convenient synthesis of 1-acetyl-2,2-dimethyl-3-arylcyclopropanes, Organic Preparations and Procedures International, vol. 40, no. 3, pp. 311-315, 2008.
V. A. Mahajan, Shinde, P. D., Borate, H. B., and Wakharkar, R. D., Convenient synthesis of 5-methylene-4-substituted-2(5H)-furanones, Tetrahedron Letters, vol. 46, no. 6, pp. 1009-1012, 2005.
S. S. Patil, Tawade, B. V., and Wadgaonkar, P. P., Convenient synthesis of alpha,alpha `- homo- and alpha,alpha `-hetero-bifunctionalized poly(epsilon-caprolactone)s by ring opening polymerization: the potentially valuable precursors for miktoarm star copolymers, Journal of Polymer Science Part A-Polymer Chemistry, vol. 54, no. 6, pp. 844-860, 2016.
M. Sasikumar, Nikalje, M. D., and Muthukrishnan, M., Convenient synthesis of enantiomerically pure (R)-mexiletine using hydrolytic kinetic resolution method, Tetrahedron-Asymmetry, vol. 20, no. 24, pp. 2814-2817, 2009.
R. A. Joshi, Garud, D. R., Muthukrishnan, M., Joshi, R. R., and Gurjar, M. K., Convenient synthesis of the enantiomerically pure beta-blocker (S)-betaxolol using hydrolytic kinetic resolution, Tetrahedron-Asymmetry, vol. 16, no. 23, pp. 3802-3806, 2005.
N. A. More, Jadhao, N. L., Garud, D. R., and Gajbhiye, J. M., Convenient synthesis of the enantiomerically pure (S)-2,4-dihydroxybutyl-4-hydroxybenzoate using hydrolytic kinetic resolution, Synthetic Communications, vol. 48, no. 16, pp. 2093-2098, 2018.
N. C. Desai, Bhatt, K., Jadeja, D. J., Mehta, H. K., Khedkar, V. M., and Sarkar, D., Conventional and microwave-assisted organic synthesis of novel antimycobacterial agents bearing furan and pyridine hybrids, Drug Development Research, vol. 83, no. 2, pp. 416-431, 2022.
G. Pandey, Dumbre, S. G., Khan, M. Islam, and Shabab, M., Convergent approach toward the synthesis of the stereoisomers of C-6 homologues of 1-deoxynojirimycin and their analogues: evaluation as specific glycosidase inhibitors, Journal of Organic Chemistry, vol. 71, no. 22, pp. 8481-8488, 2006.
A. M. Khayum, Vijayakumar, V., Karak, S., Kandambeth, S., Bhadra, M., Suresh, K., Acharambath, N., Kurungot, S., and Banerjee, R., Convergent covalent organic framework thin sheets as flexible supercapacitor electrodes, ACS Applied Material & Interfaces, vol. 10, no. 33, pp. 28139-28146, 2018.
K. Taniguchi, Kusumawati, E. N., Nanao, H., Rode, C. V., Sato, O., Yamaguchi, A., and Shirai, M., Conversion of benzyl phenyl ether to monoaromatics in high-temperature aqueous ethanol solution under high-pressure carbon dioxide conditions, New Journal of Chemistry, vol. 47, no. 27, pp. 12561-12569, 2023.
A. Shrotri, Tanksale, A., Beltramini, J. Norberto, Gurav, H., and Chilukuri, S. V., Conversion of cellulose to polyols over promoted nickel catalysts, Catalysis Science & Technology, vol. 2, no. 9, pp. 1852-1858, 2012.
B. M. Matsagar, Munshi, M. K., Kelkar, A. A., and Dhepe, P. Laxmikant, Conversion of concentrated sugar solutions into 5-hydroxymethyl furfural and furfural using Bronsted acidic ionic liquids, Catalysis Science & Technology, vol. 5, no. 12, pp. 5086-5090, 2015.
G. Deshmukh and Krishnamoorthy, K., Conversion of curved assemblies into two dimensional sheets, Nanoscale, vol. 11, no. 12, pp. 5732-5736, 2019.
H. Kakkad, Khot, M., Zinjarde, S. S., RaviKumar, A., V. Kumar, R., and Kulkarni, B. D., Conversion of dried aspergillus candidus mycelia grown on waste whey to biodiesel by in situ acid transesterification, Bioresource Technology, vol. 197, pp. 502-507, 2015.
M. W. Kasture, Bokade, V. V., and Joshi, P. N., Conversion of fly ash - an environmentally detrimental waste to zeolite beta (BEA) for commercial catalytic applications, Journal of the American Ceramic Society, vol. 88, no. 11, pp. 3260-3263, 2005.
A. Bhattacharya, Converting ab initio energies to enthalpies of formation of free radicals. I. new atom equivalents for alkyl radicals, Aiche Journal, vol. 58, no. 2, pp. 600-609, 2012.
S. S. Shaikh, Patil, C. R., Kondawar, S. E., and Rode, C. V., Cooperative acid-base sites of solid Ba-Zr mixed oxide catalyst for efficient isomerization of glucose to fructose in aqueous medium, ChemistrySelect, vol. 5, no. 40, pp. 12505-12513, 2020.
H. Dev Singh, Nandi, S., Chakraborty, D., Singh, K., Vinod, C. P., and Vaidhyanathan, R., Coordination flexibility aided CO2-specific gating in an iron isonicotinate MOF, Chemistry-an Asian Journal, vol. 17, no. 4, p. e202101305, 2022.
B. Dhara, Sappati, S., Singh, S. K., Kurungot, S., Ghosh, P., and Ballav, N., Coordination polymers of Fe(III) and Al(III) ions with TCA ligand: distinctive fluorescence, CO2 uptake, redox-activity and oxygen evolution reaction, Dalton Transactions, vol. 45, no. 16, pp. 6901-6908, 2016.
R. A. Kalgaonkar and Jog, J. Prakash, Copolyester nanocomposites based on carbon nanotubes: reinforcement effect of carbon nanotubes on viscoelastic and dielectric properties of nanocomposites, Polymer International, vol. 57, no. 1, pp. 114-123, 2008.
T. E. Sandhya, Ramesh, C., and Sivaram, S., Copolyesters based on poly(butylene terephthalate)s containing cyclohexyl and cyclopentyl ring: Effect of molecular structure on thermal and crystallization behavior, Macromolecules, vol. 40, no. 19, pp. 6906-6915, 2007.
A. K. Pandey and Garnaik, B., Copolymerization of aleuritic acid with l-lactic acid and study the aggregation behavior in different solvents, International Journal of Research in Pharmacy and Chemistry, vol. 3, no. 2, 2013.
I. Matos, Fernandes, S. N., Liu, H. - R., Tevtia, A. K., Singh, R. P., Manda, L., Lemos, F., and Marques, M. M., Copolymerization of ethylene with unsaturated alcohols and methylmethacrylate using a silylated alpha-diimine nickel catalyst: molecular modeling and photodegradation studies, Journal of Applied Polymer Science, vol. 129, no. 4, pp. 1820-1832, 2013.
S. Singh, Chithiravel, S., and Krishnamoorthy, K., Copolymers comprising monomers with various dipole and quadrupole as active material in organic field effect transistors, Journal of Physical Chemistry C, vol. 120, no. 46, pp. 26199-26205, 2016.
S. Kochrekar, Kalekar, A., Mehta, S., Damlin, P., Salomaki, M., Granroth, S., Meltola, N., Joshi, K., and Kvarnstrom, C., Copolymers of bipyridinium and metal (Zn & Ni) porphyrin derivatives; theoretical insights and electrochemical activity towards CO2, RSC Advances, vol. 11, no. 32, pp. 19844-19855, 2021.
A. K. Pandey, Copolymerzation of L,L-lactide with epsilon-caprolactone by using novel zinc L-proline organometallic catalyst, E-Polymers, p. 139, 2010.
A. R. Gholap, Venkatesan, K., Pasricha, R., Daniel, T., Lahoti, R. J., and Srinivasan, K. V., Copper- and ligand-free sonogashira reaction catalyzed by Pd(0) nanoparticles at ambient conditions under ultrasound irradiation, Journal of Organic Chemistry, vol. 70, no. 12, pp. 4869-4872, 2005.
U. N. Patel and Punji, B., Copper- and phosphine-free nickel(II)-catalyzed method for C-H bond alkynylation of benzothiazoles and related azoles, Asian Journal of Organic Chemistry, vol. 7, no. 7, pp. 1390-1395, 2018.
N. G. Patil, Basutkar, N. B., and Ambade, A. V., Copper and silver nanoparticles stabilized by bistriazole-based dendritic amphiphile micelles for 4-nitrophenol reduction, New Journal of Chemistry, vol. 41, no. 11, pp. 4546-4554, 2017.
M. Chauhan, Reddy, K. Prabhakar, Gopinath, C. S., and Deka, S., Copper Cobalt Sulfide Nanosheets Realizing a Promising Electrocatalytic Oxygen Evolution Reaction, ACS Catalysis, vol. 7, no. 9, 2017.
B. Punji, Mague, J. T., Mobin, S. M., and Balakrishna, M. S., Copper (I) complexes of a thioether-functionalized short-bite aminobis(phosphonite), Polyhedron, vol. 28, no. 1, pp. 101–106, 2009.
S. S. Palimkar, P. Kumar, H., Jogdand, N. R., Daniel, T., Lahoti, R. J., and Srinivasan, K. V., Copper-, ligand- and solvent-free synthesis of ynones by coupling acid chlorides with terminal alkynes, Tetrahedron Letters, vol. 47, no. 31, pp. 5527-5530, 2006.
C. V. Rode, Mane, R. B., Potdar, A. S., Patil, P. B., Niphadkar, P. S., and Joshi, P. N., Copper modified waste fly ash as a promising catalyst for glycerol hydrogenolysis, Catalysis Today, vol. 190, no. 1, pp. 31-37, 2012.
H. Maaoui, Singh, S. K., Teodorescu, F., Coffinier, Y., Barras, A., Chtourou, R., Kurungot, S., Szunerits, S., and Boukherroub, R., Copper oxide supported on three-dimensional ammonia-doped porous reduced graphene oxide prepared through electrophoretic deposition for non-enzymatic glucose sensing, Electrochimica Acta, vol. 224, pp. 346-354, 2017.
K. R. Patil, Sathaye, S. D., Hawaldar, R. R., Sathe, B. R., Mandale, A. B., and Mitra, A., Copper phthalocyanine films deposited by liquid-liquid interface recrystallization technique (LLIRCT), Journal of Colloid and Interface Science, vol. 315, no. 2, pp. 747-752, 2007.
S. Pradhan, A. Reddy, S., Devi, R. N., and Chilukuri, S. V., Copper-based catalysts for water gas shift reaction: influence of support on their catalytic activity, Catalysis Today, vol. 141, no. 1-2, pp. 72-76, 2009.
D. K. Pandey, Shabade, A. B., and Punji, B., Copper-catalyzed direct arylation of indoles and related (hetero)arenes: a ligandless and solvent-free approach, Advanced Synthesis & Catalysis, vol. 362, no. 12, pp. 2534-2540, 2020.
U. A. Kshirsagar and Argade, N. P., Copper-catalyzed intramolecular N-arylation of quinazolinones: facile convergent approach to (-)-circumdatins H and J, Organic Letters, vol. 12, no. 16, pp. 3716-3719, 2010.
S. K. Verma and Punji, B., Copper-catalyzed regioselective C-H alkylation of phenol derivatives with unactivated alkyl chlorides: manifesting a Cu(I)/Cu(III) pathway, Journal of Catalysis , vol. 430, 2024.
K. Hirano, Biju, A. T., and Glorius, F., Copper-catalyzed synthesis of 2-unsubstituted, n-substituted benzimidazoles, Journal of Organic Chemistry, vol. 74, no. 24, pp. 9570–9572, 2009.

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