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, Gadgil, C., Mote, R. D., Rajan, R., and Subramanyam, D., Clathrin-mediated endocytosis regulates a balance between opposing signals to maintain the pluripotent state of embryonic stem cells, Stem Cell Reports, vol. 12, no. 1, pp. 152-164, 2019.
B. Ahmad Dar, Singh, S., Pandey, N., Singh, A. P., Sharma, P., Lazar, A., Sharma, M., Vishwakarma, R. A., and Singh, B., Clay encapsulated Cu(OH)(x) promoted homocoupling of arylboronic acids: an efficient and eco-friendly protocol, Applied Catalysis A-General, vol. 470, pp. 232-238, 2014.
B. Ahmad Dar, Bhatti, P., Singh, A. P., Lazar, A., Sharma, P. R., Sharma, M., and Singh, B., Clay entrapped Cu(OH)(x) as an efficient heterogeneous catalyst for ipso-hydroxylation of arylboronic acids, Applied Catalysis A-General, vol. 466, pp. 60-67, 2013.
M. K. Gurjar, Mondal, D., Ravindranadh, S. V., and Chorghade, M. S., Clay-mediated selective hydrolysis of 5 `-O-acetyl-2 `,3 `-isopropylidene/cyclohexylidene nucleosides, Synthetic Communications, vol. 36, no. 16, pp. 2321-2327, 2006.
E. Begari, Singh, C., Nookaraju, U., and Kumar, P., Clay-supported copper nitrate (Claycop): a mild reagent for the selective nitration of aromatic olefins, Synlett, vol. 25, no. 14, pp. 1997-2000, 2014.
A. Arulkashmir, Bhosale, M. E., and Krishnamoorthy, K., Cleavable and removable polymer thermosets for organic field effect transistor packaging, RSC Advances, vol. 3, no. 44, pp. 22591-22596, 2013.
A. K. Bhattacharya, Chand, H. R., John, J., and Deshpande, M. V., Clerodane type diterpene as a novel antifungal agent from polyalthia longifolia var. pendula, European Journal of Medicinal Chemistry, vol. 94, pp. 1–7, 2015.
S. G. Agalave, Maujan, S. R., and Pore, V. S., Click chemistry: 1,2,3-triazoles as pharmacophores, Chemistry-an Asian Journal, vol. 6, no. 10, pp. 2696-2718, 2011.
, ,, Wadgaonkar, P. P., Tapase, S. R., Kodam, K. M., Choudhari, A., and Sarkar, D., Click chemistry based multicomponent approach in the synthesis of spirochromenocarbazole tethered 1,2,3-triazoles as potential anticancer agents, Bioorganic Chemistry, vol. 85, pp. 475-486, 2019.
D. K. Mohapatra, Maity, P. K., Shabab, M., and Khan, M. Islam, Click chemistry based rapid one-pot synthesis and evaluation for protease inhibition of new tetracyclic triazole fused benzodiazepine derivatives, Bioorganic & Medicinal Chemistry Letters, vol. 19, no. 17, pp. 5241-5245, 2009.
M. Krishnamurthy, Krishnamoorthy, K., Arulkashmir, A., Raghavendra, V., Murali, A., Jaisankar, S. N., Murugan, P., Gurusamy-Thangavelu, S. A., A. Nasar, S., Mandal, A. Baran, and Samanta, D., "Click" polymerization: a convenient strategy to prepare designer fullerene materials, Materials & Design, vol. 108, pp. 34-41, 2016.
C. V. Ramana, Chatterjee, S., Durugkar, K. A., and Gonnade, R. G., Click synthesis of isomeric compounds for assessing the efficiency of the bifurcated Br center dot center dot center dot NO2 synthon, Crystengcomm, vol. 11, no. 1, pp. 143-150, 2009.
K. Garg, Chatterjee, D., and Wadgaonkar, P., Clickable polyurethanes based on s- triazine ring containing aromatic diisocyanate bearing pendent alkyne group: synthesis and postmodification, Journal of Polymer Science Part A Polymer Chemistry, vol. 55, no. 6, pp. 1008-1020, 2017.
B. Malvi, Sarkar, B. R., Pati, D., Mathew, R., Ajithkumar, T. G., and Gupta, S. Sen, Clickable SBA-15 mesoporous materials: synthesis, characterization and their reaction with alkynes, Journal of Materials Chemistry, vol. 19, no. 10, pp. 1409-1416, 2009.
P. V. Chavan, Pandit, K. S., Desai, U. V., Wadgaonkar, P. P., Nawale, L., Bhansali, S., and Sarkar, D., Click-chemistry-based multicomponent condensation approach for design and synthesis of spirochromene-tethered 1,2,3-triazoles as potential antitubercular agents, Research on Chemical Intermediates, vol. 43, no. 10, pp. 5675-5690, 2017.
A. Kumar Ganai, Bhardwaj, R., Hotha, S., Gupta, S. Sen, and Prasad, B. L. V., Clicking molecular hooks on silica nanoparticles to immobilize catalytically important metal complexes: the case of gold catalyst immobilization, New Journal of Chemistry, vol. 34, no. 11, pp. 2662-2670, 2010.
E. Shukla, Thorat, L., Bendre, A. D., Jadhav, S., Pal, J. K., Nath, B. B., and Gaikwad, S. M., Cloning and characterization of trehalase: a conserved glycosidase from oriental midge, Chironomus ramosus, 3 Biotech, vol. 8, no. 8, p. 352, 2018.
D. Mehta, Chirmade, T., Tungekar, A. A., Gani, K., and Bhambure, R., Cloning and expression of antibody fragment (Fab) I: effect of expression construct and induction strategies on light and heavy chain gene expression, Biochemical Engineering Journal, vol. 176, p. 108189, 2021.
D. Mehta, Chirmade, T., Nainwal, N., and Bhambure, R., Cloning and expression of antibody fragment (Fab) II: Effect of expression hosts on light and heavy chain gene expression, Biochemical Engineering Journal , vol. 200, 2023.
P. Sharma, Rele, M. V., and Kumar, L. Sunil, Cloning and sequence analysis of three variants of the gene encoding alkaline xylanase C from the alkaliphilic bacillus sp (NCL 87-6-10), Biochemical Genetics, vol. 51, no. 9-10, pp. 737-749, 2013.
V. L. Sirisha, Prashant, S., D. Kumar, R., Pramod, S., Jalaja, N., P. Kumari, H., P. Rao, M., S. Rao, N., Mishra, P., S. Karumanchi, R., Khan, B. Mohammad, and Kishor, P. B. Kavi, Cloning, characterization and impact of up- and down-regulating subabul cinnamyl alcohol dehydrogenase (CAD) gene on plant growth and lignin profiles in transgenic tobacco, Plant Growth Regulation, vol. 66, no. 3, pp. 239-253, 2012.
S. Rohamare, Gaikwad, S. M., Jones, D., Bhavnani, V., Pal, J., Sharma, R., and Chatterjee, P., Cloning, expression and in silico studies of a serine protease from a marine actinomycete (Nocardiopsis sp NCIM 5124), Process Biochemistry, vol. 50, no. 3, pp. 378-387, 2015.
N. Kumar Varshney, Ramasamy, S., Brannigan, J. A., Wilkinson, A. J., and Suresh, C. G., Cloning, overexpression, crystallization and preliminary X-ray crystallographic analysis of a slow-processing mutant of penicillin G acylase from Kluyvera citrophila, Acta Crystallographica Section F-Structural Biology and Crystallization Communications, vol. 69, no. 8, pp. 925-929, 2013.
P. M. Chandra, Brannigan, J. A., Prabhune, A., Pundle, A., Turkenburg, J. P., Dodson, G. G., and Suresh, C. G., Cloning, preparation and preliminary crystallographic studies of penicillin V acylase autoproteolytic processing mutants, Acta Crystallographica Section F-Structural Biology and Crystallization Communications, vol. 61, no. Part 1, pp. 124-127, 2005.
P. Rathinaswamy, Pundle, A. V., Prabhune, A., SivaRaman, H., Brannigan, J. A., Dodson, G. G., and Suresh, C. G., Cloning, purification, crystallization and preliminary structural studies of penicillin V acylase from Bacillus subtilis, Acta Crystallographica Section F-Structural Biology Communications, vol. 61, no. Part 7, pp. 680-683, 2005.
A. A. Shitole, Giram, P. S., Raut, P. W., Rade, P. P., Khandwekar, A. P., Sharma, N., and Garnaik, B., Clopidogrel eluting electrospun polyurethane/polyethylene glycol thromboresistant, hemocompatible nanofibrous scaffolds, Journal of Biomaterials Applications, vol. 33, no. 10, pp. 1327-1347, 2019.
D. Dutta, Kumari, A., Panda, R., Jha, S., Gupta, D., Goel, S., and Jha, M. Kumar, Close loop separation process for the recovery of Co, Cu, Mn, Fe and Li from spent lithium-ion batteries, Separation and Purification Technology, vol. 200, pp. 327-334, 2018.
N. T. Patil, Shashidhar, M. S., Tamboli, M. I., and Gonnade, R. G., Clues from crystal structures pave the way to access chiral myo-inositol derived versatile synthons: resolution of racemic 4-o-allyl-myo-inositol-1,3,5-orthoesters via corresponding dicamphanates by crystallization, Crystal Growth & Design, vol. 17, no. 10, pp. 5432-5440, 2017.
U. G. Reddy, Das, P., Saha, S., Baidya, M., Ghosh, S. K., and Das, A., CN? specific turn-on phosphorescent probe with probable application for enzymatic assay and as an imaging reagent, Chemical Communications, vol. 49, no. 3, pp. 255-257, 2013.
S. R. Reddy, Kiran, I. N. Chaitha, and Sudalai, A., CN-assisted oxidative cyclization of cyano cinnamates and styrene derivatives: a facile entry to 3-substituted chiral phthalides, Organic & Biomolecular Chemistry, vol. 10, no. 18, pp. 3655-3661, 2012.
S. R. Katade, Misar, A. V., Mujumdar, A. M., Phalgune, U. D., Wakharkar, R. D., and Deshpande, N. R., CNS Depressant activity of ethanol extract of sterculia guttata seeds in mice, Indian Journal of Pharmaceutical Sciences, vol. 71, no. 4, pp. 445-U167, 2009.
R. Illathvalappil and Kurungot, S., Co (9) S (8) nanoparticle-supported nitrogen-doped carbon as a robust catalyst for oxygen reduction reaction in both acidic and alkaline conditions, ChemElectroChem, vol. 7, no. 14, pp. 3123-3134, 2020.
A. Lodagekar, Chavan, R. B., Mannava, M. K. Chaitan, Yadav, B., Chella, N., Nangia, A. K., and Shastri, N. R., Co amorphous valsartan nifedipine system: Preparation, characterization, in vitro and in vivo evaluation, European Journal of Pharmaceutical Sciences, vol. 139, 2019.
K. A. Bogle, Ghosh, S., Dhole, S. D., Bhoraskar, V. N., Fu, L. -feng, Chi, M. - F., Browning, N. D., Kundaliya, D., Das, G. P., and Ogale, S. B., Co : CdS diluted magnetic semiconductor nanoparticles: radiation synthesis, dopant-defect complex formation, and unexpected magnetism, Chemistry of Materials, vol. 20, no. 2, pp. 440-446, 2008.
S. Bhowmik, Enjamuri, N., Marimuthu, B., and Darbha, S., C-O hydrogenolysis of C3-C4 polyols selectively to terminal diols over Pt/W/SBA-15 catalysts, Catalysts, vol. 12, no. 9, p. 1070, 2022.
S. Sreedhala, Sudheeshkumar, V., and Vinod, C. P., CO oxidation on large high-index faceted Pd nanostructures, Journal of Catalysis, vol. 337, pp. 138-144, 2016.
S. Paul, Amalraj, F., and Radhakrishnan, S., CO sensor based on polypyrrole functionalized with iron porphyrin, Synthetic Metals, vol. 159, no. 11, pp. 1019-1023, 2009.
R. Srivastava, Srinivas, D., and Ratnasamy, P., CO2 activation and synthesis of cyclic carbonates and alkyl/aryl carbamates over adenine-modified Ti-SBA-15 solid catalysts, Journal of Catalysis, vol. 233, no. 1, pp. 1-15, 2005.
K. Kumar Patra and Gopinath, C. S., CO2 electrolysis towards large scale operation: rational catalyst and electrolyte design for efficient flow-cell, Chemical Communications, vol. 59, no. 45, pp. 6774-6795, 2023.
K. J. Betsy, Lazar, A., Pavithran, A., and Vinod, C. P., CO2 hydrogenation to formate by palladium nanoparticles supported on N-incorporated periodic mesoporous organosilica, ACS Sustainable Chemistry & Engineering, vol. 8, no. 39, pp. 14765-14774, 2020.
A. Basu, Roy, K., Sharma, N., Nandi, S., Vaidhyanathan, R., Rane, S., Rode, C. V., and Ogale, S. B., CO2 Laser direct written MOF-based metal-decorated and heteroatom-doped porous graphene for flexible all-solid-state microsupercapacitor with extremely high cycling stability, ACS Applied Materials & Interfaces, vol. 8, no. 46, pp. 31841-31848, 2016.
V. R. Choudhary and Mondal, K. C., CO2 reforming of methane combined with steam reforming or partial oxidation of methane to syngas over NdCoO3 perovskite-type mixed metal-oxide catalyst, Applied Energy, vol. 83, no. 9, pp. 1024-1032, 2006.
V. R. Choudhary, Mondal, K. C., and Choudhary, T. V., CO2 reforming of methane to syngas over CoOx/MgO supported on low surface area macroporous catalyst carrier: Influence of Co loading and process conditions, Industrial & Engineering Chemistry Research, vol. 45, no. 13, pp. 4597-4602, 2006.
K. C. Mondal, Choudhary, V. R., and Joshi, U. A., CO2 reforming of methane to syngas over highly active and stable supported CoOx (accompanied with MgO, ZrO2 or CeO2) catalysts, Applied Catalysis A-General, vol. 316, no. 1, pp. 47-52, 2007.
R. Ranjan, Tekawadia, J., Jain, R., Mhamane, N. B., Raja, T., and Gopinath, C. S., Co3O4 for sustainable CO2 reduction and possible fine-tuning towards selective CO production, Chemical Engineering Journal, vol. 471, p. 144459, 2023.
R. M. Ramsundar, Debgupta, J., Pillai, V. K., and Joy, P. Alias, Co3O4 nanorods-efficient non-noble metal electrocatalyst for oxygen evolution at neutral pH, Electrocatalysis, vol. 6, no. 4, pp. 331-340, 2015.
P. Kumar and Hu, L. - H., Co9Se8 nanoparticles as high capacity anode material for lithium-ion batteries, Materials Research Express, vol. 5, no. 7, p. 075510, 2018.
T. Bala, Sankar, C. R., Baidakova, M., Osipov, V., Enoki, T., Joy, P. Alias, Prasad, B. L. V., and Sastry, M., Cobalt and magnesium ferrite nanoparticles: preparation using liquid foams as templates and their magnetic characteristics, Langmuir, vol. 21, no. 23, pp. 10638-10643, 2005.
V. Kashyap, Singh, S. K., and Kurungot, S., Cobalt ferrite bearing nitrogen-doped reduced graphene oxide layers spatially separated with microporous carbon as efficient oxygen reduction electrocatalyst, ACS Applied Materials and Interfaces, vol. 8, no. 32, pp. 20730-20740, 2016.
A. M. Kulkarni, Pandit, K. S., Chavan, P. V., Desai, U. V., and Wadgaonkar, P. P., Cobalt ferrite nanoparticles: a magnetically separable and reusable catalyst for Petasis-Borono-Mannich reaction, RSC Advances, vol. 5, no. 86, pp. 70586-70594, 2015.
S. Hatamie, Kulkarni, M. V., Kulkarni, S. D., Ningthoujam, R. S., Vatsa, R. K., and Kale, S. N., Cobalt nanoparticles doped emaraldine salt of polyaniline: a promising room temperature magnetic semiconductor, Journal of Magnetism and Magnetic Materials, vol. 322, no. 24, pp. 3926-3931, 2010.
G. Santhosh and Nayaka, G. P., Cobalt recovery from spent Li-ion batteries using lactic acid as dissolution agent, Cleaner Engineering and Technology, vol. 3, p. 100122, 2021.
N. V. Gorantla, Balaraman, E., and Chinnathambi, S., Cobalt-based metal complexes prevent repeat tau aggregation and nontoxic to neuronal cells, International Journal of Biological Macromolecules, vol. 152, pp. 171-179, 2020.
S. P. Midya, Landge, V. G., Sahoo, M. K., Rana, J., and Balaraman, E., Cobalt-catalyzed acceptorless dehydrogenative coupling of aminoalcohols with alcohols: direct access to pyrrole, pyridine and pyrazine derivatives, Chemical Communications, vol. 54, no. 1, pp. 90-93, 2018.
V. Gokulkrish Landge, Jaiswal, G., and Balaraman, E., Cobalt-catalyzed bis-alkynylation of amides via double C–H bond activation, Organic Letters, vol. 18, no. 4, pp. 812–815, 2016.
B. Punji, Song, W., Shevchenko, G. A., and Ackermann, L., Cobalt-catalyzed C–H bond functionalizations with aryl and alkyl chlorides, Chemistry - A European Journal, vol. 19, no. 32, pp. 10605–10610, 2013.
S. S. Bhoware, Shylesh, S., Kamble, K. R., and Singh, A. P., Cobalt-containing hexagonal mesoporous molecular sieves (Co-HMS): Synthesis, characterization and catalytic activity in the oxidation reaction of ethylbenzene, Journal of Molecular Catalysis A-Chemical, vol. 255, no. 1-2, pp. 123-130, 2006.
C. P. Jijil, Patil, I. M., Kakade, B., and R. Devi, N., Cobalt-doped Ba2In2O5 brownmillerites: an efficient electrocatalyst for oxygen reduction in alkaline medium, ACS omega , vol. 3, no. 2, pp. 1710–1717, 2018.
A. R. Jagdale, Paraskar, A. S., and Sudalai, A., Cobalt(II) chloride hexahydrate-diisopropylamine catalyzed mild and chemoselective reduction of carboxylic esters with sodium borohydride, Synthesis-Stuttgart, no. 4, pp. 660-664, 2009.
S. R. Bankar, Kirdant, S. P., and Jadhav, V. H., Cobalt-immobilized carbon-based nano-catalyst for Csingle bondN cross coupling reaction, Results in Chemistry, vol. 4, p. 100682, 2022.
G. Pandurang Kharabe, Illathvalappil, R., Barik, S., Kanheerampockil, F., Walko, P. S., Bhat, S. K., R. Devi, N., and Kurungot, S., Cobalt-manganese modified theophrastite phase of nickel hydroxide nanoflower arrays on nickel foam as a self-standing bifunctional electrode for overall water electrolysis, Sustainable Energy & Fuels, vol. 7, no. 10, pp. 2428-2440, 2023.
H. Barike Aiyappa, Thote, J., Shinde, D. Balaji, Banerjee, R., and Kurungot, S., Cobalt-modified covalent organic framework as a robust wateroxidation electrocatalyst, Chemistry of Materials, vol. 28, no. 12, pp. 4375-4379, 2016.
C. V. Rode, Kshirsagar, V. S., Nadgeri, J. M., and Patil, K. R., Cobalt-salen intercalated montmorillonite catalyst for air oxidation of p-cresol under mild conditions, Industrial & Engineering Chemistry Research, vol. 46, no. 25, pp. 8413-8419, 2007.
R. Reddy Devarapalli, Kamaja, C. Krishna, and Shelke, M. V., Co-catalytic metal oxide nanoparticles decorated silicon/hematite core shell nanowire arrays as efficient photo electrodes for water splitting, ChemistrySelect, vol. 2, no. 8, pp. 2544-2551, 2017.
A. R. Jagdale and Sudalai, A., Co-catalyzed mild and chemoselective reduction of phenyl esters with NaBH(4): a practical synthesis of (R)-tolterodine, Tetrahedron Letters, vol. 49, no. 23, pp. 3790-3793, 2008.
A. S. Paraskar and Sudalai, A., Co-catalyzed reductive cyclization of azido and cyano substituted alpha,beta-unsaturated esters with NaBH4: enantioselective synthesis of (R)-baclofen and (R)-rolipram, Tetrahedron, vol. 62, no. 20, pp. 4907-4916, 2006.
S. K. Gadakh and Sudalai, A., Co-catalyzed two-stereocentered hydrolytic kinetic resolution: application to the synthesis of yashabushidiols A and B and the lactone unit of compactin and mevinolin, Tetrahedron-Asymmetry, vol. 26, no. 2-3, pp. 118-123, 2015.
A. Nadeema, Kharabe, G. Pandurang, Biswal, D. Prakash, and Kurungot, S., Co@CoAl-layered double hydroxide/nitrogen-doped graphene composite catalyst for Al-H2O-based batteries: simultaneous hydrogen production and electricity generation, ChemElectroChem, vol. 7, no. 12, pp. 2582-2591, 2020.
B. P. Mali, Dash, S. Ranjan, Annadhasan, M., Biswas, A., Manoj, K., Vanka, K., and Gonnade, R. G., Cocrystal approach to modulate the photoluminescent properties of a GFP chromophore analogue: role of halogen/hydrogen bonding in achieving a wide range of solid-state fluorescence emissions, Crystal Growth & Design, vol. 23, no. 7, pp. 5052-5065, 2023.
M. I. Tamboli, Bahadur, V., Gonnade, R. G., and Shashidhar, M. S., Cocrystallization of 2,3-dihydroxynaphthalene with its para-, meta-, and ortho-ditoluates: insight into cocrystal formation and clues for the construction of supramolecular assemblies capable of intermolecular acyl group transfer reactivity, Crystal Growth & Design, vol. 15, no. 3, pp. 1226-1232, 2015.
M. I. Tamboli, Bahadur, V., Gonnade, R. G., and Shashidhar, M. S., Cocrystallization of 2,3-dihydroxynaphthalene with its para-, meta-, and ortho-ditoluates: insight into cocrystal formation and clues for the construction of supramolecular assemblies capable of intermolecular acyl group transfer reactivity (vol 15, pg 12, Crystal Growth & Design, vol. 19, no. 10, p. 5998, 2019.
S. K. Rai, Gunnam, A., Roy, D., Rajput, R., Kulkarni, K., and Nangia, A. K., Cocrystallization of multi-kinase inhibitor pazopanib with fenamic acids: improving dissolution and inhibiting cell migration, CrystEngComm, vol. 25, no. 39, pp. 5565-5574, 2023.
S. Mittapalli, Mannava, M. K. Chaitan, Sahoo, R., and Nangia, A., Cocrystals, salts, and supramolecular gels of nonsteroidal anti inflammatory drug niflumic acid, Crystal Growth & Design, vol. 19, no. 1, pp. 219-230, 2019.
E. Sangtani, Jha, K., Munshi, P., and Gonnade, R., Cocrystals/salts of Furosemide : Interesting case of colour cocrystal polymorphism, Acta Crystallographica A‐Foundation and Advances, vol. 70, p. C724, 2014.
P. Bhol, Swain, S., Jena, S., Bhatte, K., Rout, C. Sekhar, Saxena, M., Jadhav, A. H., and Samal, A. K., Co-decorated tellurium nanotubes for energy storage applications, ACS Applied Nano Materials, vol. 4, no. 9, pp. 9008-9021, 2021.
S. Prakash, Krishna, A., and Sengupta, D., Cofilin-membrane interactions: electrostatic effects in phosphoinositide lipid binding, ChemPhysChem, vol. 24, no. 3, 2023.
P. Shekhar, Devulapalli, V. Swaroopa D., Reji, R., Singh, H. Dev, Jose, A., Singh, P., Torris, A., Vinod, C. P., III, J. A. Tokarz, Mahle, J. J., Peterson, G. W., Borguet, E., and Vaidhyanathan, R., COF-supported zirconium oxyhydroxide as a versatile heterogeneous catalyst for Knoevenagel condensation and nerve agent hydrolysis, iScience, vol. 26, no. 11, p. 108088, 2023.
S. Tiwary, Ghugare, S. B., Chavan, P. D., Saha, S., Datta, S., Sahu, G., and Tambe, S. S., Co-gasification of high ash coal–biomass blends in a fluidized bed gasifier: experimental study and computational intelligence-based modeling, Waste and Biomass Valorization, vol. 11, no. 1, pp. 1-19, 2018.
S. Tiwary, Ghugare, S. B., Chavan, P. D., Saha, S., Datta, S., Sahu, G., and Tambe, S. S., Co-gasification of high ash coal–biomass blends in a fluidized bed gasifier: , Waste and Biomass Valorization , vol. 11, no. 9, pp. 323–341, 2020.
B. Manna, Anothumakkool, B., Desai, A. V., Samanta, P., Kurungot, S., and Ghosh, S. K., Coherent fusion of water array and protonated amine in a metal-sulfate-based coordination polymer for proton conduction, Inorganic Chemistry, vol. 54, no. 11, pp. 5366-5371, 2015.
S. R. Reddy, Chouthaiwale, P. V., Suryavanshi, G., Chavan, V. B., and Sudalai, A., Co(III)(salen)-catalyzed HKR of two stereocentered alkoxy- and azido epoxides: a concise enantioselective synthesis of (S,S)-reboxetine and (+)-epi-cytoxazone, Chemical Communications, vol. 46, no. 27, pp. 5012-5014, 2010.
P. U. Karabal, Kamble, D. A., and Sudalai, A., Co(III)(salen)-catalyzed phenolic kinetic resolution of two stereocentered benzyloxy and azido epoxides: its application in the synthesis of ICI-118,551, an anti-hypertensive agent, Organic & Biomolecular Chemistry, vol. 12, no. 15, pp. 2349-2355, 2014.
L. Swarnalath Jasti, Dola, S. Rani, Fadnavis, N. W., Addepally, U., Daniels, S., and Ponrathnam, S., Co-immobilized glucose oxidase and beta-galactosidase on bovine serum albumin coated allyl glycidyl ether (AGE)-ethylene glycol dimethacrylate (EGDM) copolymer as a biosensor for lactose determination in milk, Enzyme and Microbial Technology, vol. 64-65, pp. 67-73, 2014.
V. K. Priya, Kharabe, G. Pandurang, Barik, S., A. Mohamed, P., Kurungot, S., and Hareesh, U. Nair Saras, Co-incorporated N-doped micro-meso porous carbon as an electrocatalyst for oxygen reduction reaction and Zn-air battery, Energy and Fuels, vol. 38, no. 8, pp. 7196-7207, 2024.
B. P. Bhusare, John, C. K., Bhatt, V. P., and Nikam, T. D., Colchicine induces tetraploids in in vitro cultures of digitalis lanata Ehrh.: enhanced production of biomass and cardiac glycosides, Industrial Crops and Products, vol. 174, p. 114167, 2021.
N. Mhetras, Mapare, V., and Gokhale, D., Cold active lipases: biocatalytic tools for greener technology, Applied Biochemistry and Biotechnology, vol. 193, no. 7, pp. 2245-2266, 2021.
S. Menon and Sengupta, N., Cold thermal response of an amyloid oligomer differs from typical globular protein cold denaturation, Journal of Physical Chemistry Letters, vol. 10, no. 10, pp. 2453-2457, 2019.
S. A. Momin, Prabhune, A., Sonchal, B. P., Shah, S., and Kothekar, S. C., COLL 41-studies in biosurfactants: sophorolipids, in 235th American-Chemical-Society National Meeting, 1155 16th ST, NW, Washington, DC 20036 USA, 2008, vol. 235, p. Meeting Abstract : 41 - Coll.
D. Kumar, Bhattacharyya, K., Tripathi, A., Varma, S., and Gupta, N. M., COLL 613-Studies on the vapor-phase photo-oxidation of methanol over nano-size titania clusters dispersed in MCM-41 mesoporous silica, Abstracts of Papers of the American Chemical Society, vol. 232, p. 613-COLL, 2006.
A. Kumar Dasmahapatra, Kumaraswamy, G., and Nanavati, H., Collapse transition in random copolymer solutions, Macromolecules, vol. 39, no. 26, pp. 9621-9629, 2006.
B. Biswas, Misra, M., Bisht, A. Singh, Kumar, S. K., and Kumaraswamy, G., Colloidal assembly by directional ice templating, Soft Matter , vol. 17, no. 15, pp. 4098-4108, 2021.
G. Kumaraswamy, Biswas, B., and Choudhury, C. Kumar, Colloidal assembly by ice templating, Faraday Discussions, vol. 186, pp. 61-76, 2016.
M. Haris, Bakthavatsalam, R., and Kundu, J., Colloidal Mn2+ doped 2D (n =1) lead bromide perovskites: efficient energy transfer and role of anion in doping mechanism, ChemistrySelect, vol. 3, no. 23, pp. 6585-6595, 2018.
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S. G. Shanker, Markad, G. B., Jagadeeswararao, M., Bansode, U., and Nag, A., Colloidal nanocomposite of TiN and N-doped few-layer graphene for plasmonics and electrocatalysis, ACS Energy Letters, vol. 2, no. 10, pp. 2251-2256, 2017.
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