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M. Pait, Kundu, G., Tothadi, S., Karak, S., Jain, S., Vanka, K., and Sen, S. S., C‐F bond activation by saturated NHC: mesoionic compound formation and its unprecedented adduct with B(C6F5)3, Angewandte Chemie - International Edition, vol. 58, no. 9, pp. 2804-2808, 2019.
S. Dhar, E. Reddy, M., Prabhune, A., Pokharkar, V., Shiras, A., and Prasad, B. L. V., Cytotoxicity of sophorolipid-gellan gum-gold nanoparticle conjugates and their doxorubicin loaded derivatives towards human glioma and human glioma stem cell lines, Nanoscale, vol. 3, no. 2, pp. 575-580, 2011.
S. Singh, D'Britto, V., Prabhune, A., Ramana, C. V., Dhawan, A., and Prasad, B. L. V., Cytotoxic and genotoxic assessment of glycolipid-reduced and -capped gold and silver nanoparticles, New Journal of Chemistry, vol. 34, no. 2, pp. 294-301, 2010.
V. Shriram, Kumar, V., Kishor, P. B. Kavi, Suryawanshi, S. B., Upadhyay, A. K., and Bhat, M. K., Cytotoxic activity of 9,10-dihydro-2,5-dimethoxyphenanthrene-1,7-diol from Eulophia nuda against human cancer cells, Journal of Ethnopharmacology, vol. 128, no. 1, pp. 251-253, 2010.
V. Ramu, Gill, M. R., Jarman, P. J., Turton, D., Thomas, J. A., Das, A., and Smythe, C., Cytostatic ruthenium(II)-platinum(II) bis(terpyridyl) anticancer complex that blocks entry into sphase by up-regulating p27(KIP1), Chemistry-A European Journal, vol. 21, no. 25, pp. 9185-9197, 2015.
H. A. Anila, Ali, F., Kushwaha, S., Taye, N., Chattopadhyay, S., and Das, A., Cysteine-specific fluorescent switch for monitoring oxidative stress and quantification of aminoacylase-1 in blood serum, Analytical Chemistry, vol. 88, no. 24, pp. 12161-12168, 2016.
I. Shivakumar, Salunke, G. B., and Kumar, S., Cyclopropyl methyl bromide-mediated gem-diallylation: total synthesis of (+/-)-alpha-cuparenone, Synthetic Communications, vol. 41, no. 13, p. PII 937139047, 2011.
K. Bakthavachalam, Dutta, S., Arivazhagan, C., Raghavendra, B., Haridas, A., Sen, S. S., Koley, D., and Ghosh, S., Cyclometallation of a germylene ligand by concerted metalation-deprotonation of a methyl group , Dalton Transactions , vol. 47, no. 44, pp. 15835-15844, 2018.
V. V. Balasubramanian, Devassay, B. M., Halligudi, S. B., Deepika, R., Umbarakar, S. B., and Vinu, A., Cyclohexylation of resorcinol with cyclohexanol catalyzed by tungstophosphoric acid supported zirconia catalysts, Journal of Nanoscience and Nanotechnology, vol. 18, no. 4, pp. 2986-2992, 2018.
K. C. Kumara Swamy, Gangadhararao, G., Srinivas, V., Kumar, N. N. Bhuvan, Balaraman, E., and Chakravarty, M., Cyclodiphosph(III)azane chemistry – ylides from the reaction of [(RNH)P-N(t-Bu)]2 [R = t-Bu, i-Pr] with dimethyl maleate and chiral ansa-type derivatives from reaction of [ClP-N(t-Bu)]2 with a substituted BINOL, Inorganica Chimica Acta, vol. 372, no. 1, pp. 374–382, 2011.
S. S. Shinde, Minami, A., Chen, Z., Tokiwano, T., Toyomasu, T., Kato, N., Sassa, T., and Oikawa, H., Cyclization mechanism of phomopsene synthase: mass spectrometry based analysis of various site-specifically labeled terpenes, Journal of Antibiotics, vol. 70, no. 5, pp. 632-638, 2017.
S. S. Dixit, Shashidhar, M. S., and Devaraj, S., Cyclitol based metal complexing agents. preference for the extraction of lithium by myo-inositol based crown-4-ethers depends on the relative orientation of crown ether oxygen atoms, Tetrahedron, vol. 62, no. 18, pp. 4360-4363, 2006.
V. A. Murugan, Reddy, M. V., Campet, G., and Vijayamohanan, K., Cyclic voltammetry, electrochemical impedance and ex situ X-ray diffraction studies of electrochemical insertion and deinsertion of lithium ion into nanostructured organic-inorganic poly(3,4-ethylenedioxythiophene) based hybrids, Journal of Electroanalytical Chemistry, vol. 603, no. 2, pp. 287-296, 2007.
V. Sarojini, Cameron, A. J., Varnava, K. G., Denny, W. A., and Sanjayan, G., Cyclic tetrapeptides from nature and design: a review of synthetic methodologies, structure, and function, Chemical Reviews, vol. 119, no. 17, pp. 10318-10359, 2019.
M. Mishra, Singh, V., Tellis, M. B., Joshi, R. S., Pandey, K. C., and Singh, S., Cyclic peptide engineered from phytocystatin inhibitory hairpin loop as an effective modulator of falcipains and potent antimalarial, Journal of Biomolecular Structure & Dynamics, vol. 40, no. 8, pp. 3642-3654, 2022.
S. Nahar, Bose, D., Pal, S., Chakraborty, T. Kanti, and Maiti, S., Cyclic cationic peptides containing sugar amino acids selectively distinguishes and inhibits maturation of pre-mirnas of the same family, Nucleic Acid Therapeutics, vol. 25, no. 6, pp. 323-329, 2015.
R. Vysabhattar and Ganesh, K. N., Cyanuryl peptide nucleic acid: synthesis and DNA complexation properties, Tetrahedron Letters, vol. 49, no. 8, pp. 1314-1318, 2008.
R. M. Jagtap, Shaikh, S. R., Gonnade, R. G., Raheem, S., Rizvi, M. A., and Pardeshi, S. K., Cyanuric-chloride-mediated synthesis of 2-Aryl-3-tert-butoxycarbonyl-thiazolidine-4-carboxylic acid anilides: mechanistic, X-ray crystal structures and cytotoxicity studies, ChemistrySelect, vol. 4, no. 43, pp. 12534-12546, 2019.
K. P. Haval, Cyanuric chloride: Trichloro-1,3,5-triazine, Synlett, no. 13, pp. 2156-2157, 2006.
S. Pahar, Kundu, G., and Sen, S. S., Cyanosilylation by compounds with main-group elements: an odyssey, ACS Omega, vol. 5, no. 40, pp. 25477-25484, 2020.
A. D. Kulkarni, Tawade, B. V., and Wadgaonkar, P. P., Cyanate ester resins containing pentadecyl-substituted cyclohexyl moiety: synthesis, curing and structure-property relationship, High Performance Polymers, vol. 25, no. 3, pp. 278-286, 2013.
G. Patil, Sarode, C., Patil, R., and Gokhale, S., CVD synthesis of highly graphitized single-walled carbon nanotubes using nitrogen-pretreated Fe-Mo/MgO catalyst, Chemistry Letters, vol. 41, no. 9, pp. 871-873, 2012.
R. M. Jugade, Sharma, S., and Gokhale, S., CVD synthesis of graphene nanoplates on MgO support, Materials Science-Poland, vol. 32, no. 2, pp. 243-246, 2014.
A. M. Hengne and Rode, C. V., Cu-ZrO2 nanocomposite catalyst for selective hydrogenation of levulinic acid and its ester to gamma-valerolactone, Green Chemistry, vol. 14, no. 4, pp. 1064-1072, 2012.
R. Kumar Gupta, Kumar, S., Gupta, K., Sharma, A., Roy, R., Verma, A. Kumar, Chaudhari, B. P., Das, M., Ansari, I. Ahmad, and Dwivedi, P. D., Cutaneous exposure to clinically-relevant pigeon pea (Cajanus cajan) proteins promote T(H)2-dependent sensitization and IgE-mediated anaphylaxis in Balb/c mice, Journal of Immunotoxicology, vol. 13, no. 6, pp. 827-841, 2016.
K. P. Bhavsar and Khire, J. Malhar, Current research and future perspectives of phytase bioprocessing, RSC Advances, vol. 4, no. 51, pp. 26677-26691, 2014.
S. S. Sakpal, Ghosh, D., Manae, M. A., Hazra, A., and Bagchi, S., Curious case of aqueous warfarin: structural isomers or distinct excited states?, Journal of Physical Chemistry B, vol. 125, pp. 2871-2878, 2021.
M. A. Soloman, Kurian, P., Anantharaman, M. R., and Joy, P. Alias, Cure characteristics and dielectric properties of magnetic composites containing strontium ferrite, Journal of Elastomers and Plastics, vol. 37, no. 2, pp. 109-121, 2005.
M. K. Chaitan Mannava, Suresh, K., Bommaka, M. Kumar, Konga, D. Bhavani, and Nangia, A., Curcumin-artemisinin coamorphous solid: Xenograft model preclinical study, Pharmaceutics, vol. 10, no. 1, p. Article Number: 7, 2018.
K. Suresh and Nangia, A., Curcumin: pharmaceutical solids as a platform to improve solubility and bioavailability, Crystengcomm, vol. 20, no. 24, pp. 3277-3296, 2018.
V. M. Dhavale and Kurungot, S., Cu-Pt nanocage with 3-D electrocatalytic surface as an efficient oxygen reduction electrocatalyst for a primary Zn-air battery, ACS Catalysis, vol. 5, no. 3, pp. 1445-1452, 2015.
P. A. Bharad, ,, Thomas, F., and Gopinath, C. S., CuOx-TiO2 composites: electronically integrated nanocomposites for solar hydrogen generation, ChemistrySelect , vol. 3, no. 43, pp. 12022-12030, 2018.
A. R. Jagdale, Chouthaiwale, P. V., and Sudalai, A., Cu(OTf)(2)-catalyzed alpha-halogenation of ketones with 1,3-dichloro-5,5 `-dimethylhydantoin and N-bromosuccinimide, Indian Journal of Chemistry Section B-Organic Chemistry including Medicinal Chemistry, vol. 48, no. 10, pp. 1424-1430, 2009.
A. S. Paraskar and Sudalai, A., Cu(OTf)(2) or Et3N-catalyzed three-component condensation of aldehydes, amines and cyanides: a high yielding synthesis of alpha-aminonitriles, Tetrahedron Letters, vol. 47, no. 32, pp. 5759-5762, 2006.
A. S. Paraskar and Sudalai, A., Cu(OTf)(2) catalyzed high yield synthesis of hantzsch 1,4-dihydropyridines, Indian Journal of Chemistry Section B-Organic Chemistry including Medicinal Chemistry, vol. 46, no. 2, pp. 331-335, 2007.
A. R. Jagdale, Paraskar, A. S., and Sudalai, A., Cu(OTf)(2) catalyzed Biginelli type condensation of aldehydes, beta-keto esters and carbamates: synthesis of 3,4-dihydro[1,3]oxazin-2-ones, Indian Journal of Chemistry Section B-Organic Chemistry including Medicinal Chemistry, vol. 47, no. 7, pp. 1091-1095, 2008.
S. M. Inamdar, More, V. K., and Mandal, S. K., CuO nanoparticles supported on silica: a simple, efficient, and recyclable catalyst for hydroacylation reactions of aldehydes with azodicarboxylate, Chemistry Letters, vol. 41, no. 11, pp. 1484-1486, 2012.
K. Rajendran, Pandurangan, N., Vinod, C. P., Khan, T. S., Gupta, S., M. Haider, A., and Jagadeesan, D., CuO as a reactive and reusable reagent for the hydrogenation of nitroarenes, Applied Catalysis B-Environmental, vol. 297, p. 120417, 2021.
S. Patil, Rajmane, A., Jadhav, S., Rode, C., and Kumbhar, A., CuNPs@Al2O3-cellulose composite for the ligand-free Suzuki cross-coupling reactions in batch and continuous flow process, Journal of Organometallic Chemistry , vol. 1004, 2024.
B. Tudu, Nalajala, N., Saikia, P., and Gopinath, C. S., Cu-Ni bimetal integrated TiO2 thin film for enhanced solar hydrogen generation, Solar RRL, vol. 4, no. 5, p. 1900557, 2020.
B. Sreelatha, Vankudoth, K. Rao, R. Kumar, R., Girisham, S., and Reddy, S. M., Culture conditions for the production of thermostable lipase by thermomyces lanuginosus, Journal of Basic and Applied Sciences, 2016.
R. Rajasabapathy, Mohandass, C., Colaco, A., Dastager, S. Gulam, Santos, R. Serrao, and Meena, R. Murti, Culturable bacterial phylogeny from a shallow water hydrothermal vent of espalamaca (Faial, Azores) reveals a variety of novel taxa, Current Science, vol. 106, no. 1, pp. 58-69, 2014.
S. S. Pandit, Chidley, H. G., Kulkarni, R. S., Pujari, K. H., Giri, A. P., and Gupta, V. S., Cultivar relationships in mango based on fruit volatile profiles, Food Chemistry, vol. 114, no. 1, pp. 363-372, 2009.
K. A. Durugkar, Gonnade, R. G., and Ramana, C. V., Cu(I)-promoted one-pot `SNAr-click reaction' of fluoronitrobenzenes, Tetrahedron, vol. 65, no. 20, pp. 3974-3979, 2009.
R. D. Aher, Gade, M. H., R. Reddy, S., and Sudalai, A., Cu-II-exchanged montmorillonite K10 clay-catalyzed direct carboxylation of terminal alkynes with carbon dioxide, Indian Journal of Chemistry Section A-Inorganic Bio-Inorganic Physical Theoretical & Analytical Chemistry, vol. 51, no. 9-10, pp. 1325-1329, 2012.
K. D. Badave, Patil, S. S., Khan, A. A., Srinivas, D., Butcher, R. J., Gonnade, R. G., Puranik, V. G., Pinjari, R. V., Gejji, S. P., and Rane, S. Y., Cu(II) conjugation along the transformation of a vitamin K-3 derivative to a dinaphthoquinone methide radical, New Journal of Chemistry, vol. 38, no. 1, pp. 277-284, 2014.
A. Ray, Manoj, K., Bhadbhade, M. M., Mukhopadhyay, R., and Bhattacharjya, A., Cu(I)-catalyzed cycloaddition of constrained azido-alkynes: access to 12- to 17-membered monomeric triazolophanes incorporating furanoside rings, Tetrahedron Letters, vol. 47, no. 16, pp. 2775-2778, 2006.
S. Kushwaha, Maity, A., Gangopadhyay, M., Ravindranathan, S., Rajamohanan, P. R., and Das, A., Cucurbit[7]uril induced formation of fret-enabled unilamellar lipid vesicles, Langmuir, vol. 33, no. 41, pp. 10989-10999, 2017.
D. Chakraborty, Nandi, S., Mullangi, D., Haldar, S., Vinod, C. P., and Vaidhyanathan, R., Cu/Cu2O nanoparticles supported on a phenol-pyridyl COF as a heterogeneous catalyst for the synthesis of unsymmetrical diynes via glaser-hay coupling, ACS Applied Materials & Interfaces, vol. 11, no. 17, pp. 15670-15679, 2019.
M. Bhardwaj, Suryawanshi, A., Fernandes, R., Tonda, S., Banerjee, A., Kothari, D., and Ogale, S., CuCo2O4 nanowall morphology as Li-ion battery anode: Enhancing electrochemical performance through stoichiometry control, Materials Research Bulletin, vol. 90, pp. 303-310, 2017.
S. R. Reddy, Prasad, P. K., Ahuja, B. Bhushan, and Sudalai, A., CuCN-Mediated cascade cyclization of 4-(2-bromophenyl)-2-butenoates: a high-yield synthesis of substituted naphthalene amino esters, Journal of Organic Chemistry, vol. 78, no. 10, pp. 5045-5050, 2013.
V. Ramaswamy, Malwadkar, S. S., and Chilukuri, S. V., Cu-Ce mixed oxides supported on Al-pillared clay: effect of method of preparation on catalytic activity in the preferential oxidation of carbon monoxide, Applied Catalysis B-Environmental, vol. 84, no. 1-2, pp. 21-29, 2008.
Y. Goriya and Ramana, C. V., [Cu]-Catalyzed S(N)AR reactions: direct amination of electron deficient aryl halides with sodium azide and the synthesis of arylthioethers under Cu(II)-ascorbate redox system, Tetrahedron, vol. 66, no. 38, pp. 7642-7650, 2010.
A. M. Kulkarni, Srinivas, K., Deshpande, M. V., and Ramana, C. V., Cu-catalyzed sequential C-N bond formations: expeditious synthesis of tetracyclic indoloindol-3-ones, Organic Chemistry Frontiers, vol. 3, pp. 43-46, 2016.
R. Kumar, Thorat, S. H., and Reddy, M. Sridhar, Cu-Catalyzed iminative hydroolefination of unactivated alkynes en route to 4-imino-tetrahydropyridines and 4-aminopyridines, Chemical Communications, vol. 52, no. 92, pp. 13475-13478, 2016.
B. Bhushan Ahuja and Sudalai, A., Cu-catalyzed debrominative cyanation of gem-dibromoolefins: a facile access to alpha,beta-unsaturated nitriles, Organic & Biomolecular Chemistry, vol. 13, no. 21, pp. 5918-5923, 2015.
P. Singh, Sonika,, Gangadharan, P. K., Khan, Z., Kurungot, S., and Jaiswal, A., Cubic palladium nanorattles with solid octahedron gold core for catalysis and alkaline membrane fuel cell applications, ChemCatChem, vol. 11, no. 17, pp. 4383-4392, 2019.
R. B. Mane, Hengne, A. M., Ghalwadkar, A. A., Vijayanand, S., Mohite, P. H., Potdar, H. S., and Rode, C. V., Cu:Al Nano catalyst for selective hydrogenolysis of glycerol to 1,2-propanediol, Catalysis Letters, vol. 135, no. 1-2, pp. 141-147, 2010.
P. Kour and Mukherjee, S. Porel, CsPbBr3/Cs4PbBr6 perovskite@COF nanocomposites for visible-light-driven photocatalytic applications in water, Journal of Materials Chemistry A, vol. 9, no. 11, pp. 6819-6826, 2021.
V. S. V. S. N. Swamy, Parvin, N., K. Raj, V., and Sen, S. S., C(sp(3))-F, C(sp(2))-F and C(sp(3))-H bond activation at silicon(II) centers, Chemical Communication, vol. 53, no. 71, 2017.
R. Reddy Devarapalli, Debgupta, J., Pillai, V. K., and Shelke, M. V., C@SiNW/TiO2 core-shell nanoarrays with sandwiched carbon passivation layer as high efficiency photoelectrode for water splitting, Scientific Reports, vol. 4, p. 4897, 2014.
J. D. Lykins, Filippova, E. V., Halavaty, A. S., Minasov, G., Zhou, Y., Dubrovska, I., Flores, K. J., Shuvalova, L. A., Ruan, J., Bissati, K. El, Dovgin, S., Roberts, C. W., Woods, S., Moulton, J. D., Moulton, H., Mcphillie, M. J., Muench, S. P., Fishwick, C. W. G., Sabini, E., Shanmugam, D., Roos, D. S., Mcleod, R., Anderson, W. F., and Ngo, H. M., CSGID solves structures and identifies phenotypes for five enzymes in toxoplasma gondii, Frontiers in Cellular and Infection Microbiology, vol. 8, 2018.
R. G. Gonnade, Bhadbhade, M. M., and Shashidhar, M. S., Crystal-to-crystal transformation amongst dimorphs of racemic 2,6-di-O-(p-halobenzoyl)-myo-inositol 1,3,5-orthoformates that achieves halogen bonding contacts, CrystEngComm, vol. 10, no. 3, pp. 288-296, 2008.
R. G. Gonnade, Bhadbhade, M. M., and Shashidhar, M. S., Crystal-to-crystal thermal phase transition amongst dimorphs of hexa-O-p-toluoyl-myo-inositol conserving two-dimensional isostructurality, Crystengcomm, vol. 12, no. 2, pp. 478-484, 2010.
M. I. Tamboli, Krishnaswamy, S., Gonnade, R. G., and Shashidhar, M. S., Crystal-to-crystal thermal phase transformation of polymorphs of isomeric 2,3-naphthalene diol ditoluates: mechanism and implications for molecular crystal formation and melting, Crystal Growth & Design, vol. 14, no. 10, pp. 4985-4996, 2014.
K. Hema, Gonnade, R. G., and Sureshan, K. M., Crystal-to-crystal synthesis of helically ordered polymers of trehalose by topochemical polymerization, Angewandte Chemie-International Edition, vol. 59, no. 7, pp. 2897-2903, 2020.
G. Kumaraswamy, Crystallization of polymers from stressed melts, Journal of Macromolecular Science-Polymer Reviews, vol. C45, no. 4, pp. 375-397, 2005.
P. S. Niphadkar, Tangale, N. P., Joshi, P. N., and Awate, S. V., Crystallization kinetics of Sn-MFI molecular sieve formation by dry gel cross mark conversion method, Microporous and Mesoporous Materials, vol. 182, pp. 73-80, 2013.
A. Kumar, Khatri, D., Lee, J. Dong, and Kumar, R., Crystallization kinetics for carbon dioxide gas hydrate in fixed bed and stirred tank reactor, Korean Journal of Chemical Engineering, vol. 33, no. 6, pp. 1922-1930, 2016.
S. Vedantam and Ranade, V. V., Crystallization: key thermodynamic, kinetic and hydrodynamic aspects, Sadhana-Academy Proceedings in Engineering Sciences, vol. 38, no. 6, pp. 1287-1337, 2013.
N. Kumar Varshney, R. Kumar, S., Ignatova, Z., Prabhune, A., Pundle, A., Dodson, E. J., and Suresh, C. G., Crystallization and X-ray structure analysis of a thermostable penicillin G acylase from alcaligenes faecalis, Acta Crystallographica Section F-Structural Biology and Crystallization Communications, vol. 68, pp. 273-277, 2012.
A. Merli, Manikandan, K., Graczer, E., Schuldt, L., Singh, R. Kumar, Zavodszky, P., Vas, M., and Weiss, M. S., Crystallization and preliminary X-ray diffraction analysis of various enzyme-substrate complexes of isopropylmalate dehydrogenase from thermus thermophilus, Acta Crystallographica Section F-Structural Biology and Crystallization Communications, vol. 66, pp. 738-743, 2010.
K. Manikandan, Jagtap, S., Rao, M., and Ramakumar, S., Crystallization and preliminary X-ray characterization of a thermostable low-molecular-weight 1,4-beta-D-glucan glucohydrolase from an alkalothermophilic thermomonospora sp., Acta Crystallographica Section F-Structural Biology and Crystallization Communications, vol. 62, pp. 385-387, 2006.
U. V. Katre, Gaikwad, S. M., Bhagyawant, S. S., Deshpande, U. D., Khan, M. Islam, and Suresh, C. G., Crystallization and preliminary x-ray characterization of a lectin from Cicer arietinum (chickpea), Acta Crystallographica Section F-Structural Biology and Crystallization Communications, vol. 61, pp. 141-143, 2005.
S. D. Wanjale and Jog, J. Prakash, Crystallization and phase transformation kinetics of poly(1-butene)/MWCNT nanocomposites, Polymer, vol. 47, no. 18, pp. 6414-6421, 2006.
D. B. Shinde, Salunke, J. K., Candeias, N. R., Tinti, F., Gazzano, M., Wadgaonkar, P. P., Priimagi, A., Camaioni, N., and Vivo, P., Crystallisation-enhanced bulk hole mobility in phenothiazine-based organic semiconductors, Scientific Reports, vol. 7, p. 46268, 2017.
L. Shaikh, Pandit, A., and Ranade, V., Crystallisation of ferrous sulphate heptahydrate: experiments and modelling, Canadian Journal of Chemical Engineering, vol. 91, no. 1, pp. 47-53, 2013.
J. Prakash Jog, Crystallisation in polymer nanocomposites, Materials Science and Technology, vol. 22, no. 7, pp. 797-806, 2006.
V. Ahuja, Dasgupta, D., Kshirsagar, S., Ghosh, P., More, S., Gupta, P., Behera, B., and Bhaskar, T., Crystalline xylitol production from corncob biomass with oral toxicity analysis, Industrial Crops and Products, vol. 187, no. 8, p. 115407, 2022.
R. Mukherji, Joshi-Navare, K., and Prabhune, A., Crystalline xylitol production by a novel yeast, pichia caribbica (HQ222812), and its application for quorum sensing inhibition in gram-negative marker strain chromobacterium violaceum CV026, Applied Biochemistry and Biotechnology, vol. 169, no. 6, pp. 1753-1763, 2013.
T. Kumar Pal and Banerjee, R., Crystalline porous materials for gas adsorption, Acta Crystallographica A‐Foundation and Advances, vol. 70, p. C463, 2014.
S. S. Nair, Ramesh, C., and Tashiro, K., Crystalline phases in nylon-11: studies using HTWAXS and HTFTIR, Macromolecules, vol. 39, no. 8, pp. 2841-2848, 2006.
C. Dey, Kundu, T., Biswal, B. P., Mallick, A., and Banerjee, R., Crystalline metal-organic frameworks (MOFs): synthesis, structure and function, Acta Crystallographica Section B-Structural Science, vol. 70, no. Part : 1, pp. 3-10, 2014.
D. Phadtare, Kondawar, S., Athawale, A., and Rode, C., Crystalline LaCoO3 perovskite as a novel catalyst for glycerol transesterification, Molecular Catalysis, vol. 475, 2019.
P. Gupta, Panda, T., Allu, S., Borah, S., Baishya, A., Gunnam, A., Nangia, A., Naumov, P., and Nath, N. K., Crystalline acylhydrazone photoswitches with multiple mechanical responses, Crystal Growth & Design, vol. 19, no. 5, pp. 3039-3044, 2019.
S. H. Thorat, Sahu, S. Kumar, and Gonnade, R. G., Crystal structures of the pyrazinamide-p-aminobenzoic acid (1/1) cocrystal and the transamidation reaction product 4-(pyrazine-2-carboxamido)-benzoic acid in the molten state, Acta Crystallographica Section C-Structural Chemistry, vol. 71, pp. 1010-U276, 2015.
M. S. Manu and Ramasamy, S., Crystal structure of AtGet3 Delta L, a chloroplast Get3 from Arabidopsis thaliana, Acta Crystallographica A‐Foundation and Advances, vol. 70, p. C1179, 2014.
U. Sharma, Katre, U. V., and Suresh, C. G., Crystal structure of a plant albumin from cicer arietinum (chickpea) possessing hemopexin fold and hemagglutination activity, Planta, vol. 241, no. 5, pp. 1061-1073, 2015.
C. P. George, Sangtani, E., and Gonnade, R. G., Crystal structure of a 1:1 co-crystal of the anti-cancer drug gefitinib with azelaic acid , Acta Crystallographica Section E: Crystallographic Communications, vol. 76, no. 6, pp. 884-888, 2020.
M. Ghosh, Mallick, A., and Diaz, D. Diaz, Crystal structure of (2S, 4R)-2-benzyl 1-tert-butyl 4-(tosyloxy)pyrrolidine-1,2-dicarboxylate, C24H29NO7S, Zeitschrift Fur Kristallographie-New Crystal Structures, vol. 227, no. 3, pp. 361-362, 2012.
N. Feizi, Pinjari, R. V., Gejji, S. P., Sayyed, F. B., Gonnade, R. G., and Rane, S. Y., Crystal structure, NMR and theoretical investigations on 2-(o-hydroxy-anilino)-1,4-napthoquinone, Journal of Molecular Structure, vol. 966, no. 1-3, pp. 144-151, 2010.
R. M. Jagtap, Rizvi, M. A., Dangat, Y. B., and Pardeshi, S. K., Crystal structure, computational studies, and stereoselectivity in the synthesis of 2-aryl-thiazolidine-4-carboxylic acids via insitu imine intermediate, Journal of Sulfur Chemistry, vol. 37, no. 4, pp. 401-425, 2016.
L. Satyanarayana, Gaikwad, S. M., Balkrishnan, H., and Suresh, C. G., Crystal structure and fluorescence analysis of alkaline thermostable xylanase from bacillus sp (NCL 87-6-10), Protein and Peptide Letters, vol. 20, no. 2, pp. 125-132, 2013.
K. Manoj, Takahashi, H., Iwama, S., G. Gonnade, R., Tsue, H., and Tamura, R., Crystal structure analysis of highly efficient chiral resolution of (RS)-arginine-fumaric acid cocrystal under preferential enrichment conditions, Journal of Molecular Structure, vol. 1245, p. 131073, 2021.
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R. Dandela and Nangia, A., Crystal engineering principles: fluoroquinolone salts, Acta Crystallographica A‐Foundation and Advances, vol. 70, p. C413, 2014.
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