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Journal Article
U. P. Ojha, Ramesh, C., and Kumar, A., Design, syntheses, and characterization of new thermoplastic polyureas based on 3,4-ethylenedioxythiophene, Journal of Polymer Science Part A-Polymer Chemistry, vol. 43, no. 23, pp. 5823-5830, 2005.
S. Gholap, Tambe, M., Nawale, L., Sarkar, D., Sangshetti, J., and Damale, M., Design, synthesis, and pharmacological evaluation of fluorinated azoles as anti-tubercular agents, Archiv Der Pharmazie, vol. 351, no. 2, p. e1700294, 2018.
A. M. A. Shumaila, Puranik, V. G., and Kusurkar, R. S., Diastereoselective synthesis of 1,1,4-trisubstituted-2,3,4,9-tetrahydrospiro-beta-carbolines via glacial acetic acid catalyzed pictet - spengler reaction, Arkivoc, pp. 41-56, 2011.
M. Y. Pathan, Chavan, S. S., Shaikh, T. M. Y., Thorat, S. H., Gonnade, R. G., and Mulla, S. A. R., Facile one-pot multi-component synthesis of spirooxindoles and 3, 3 `-disubstituted oxindoles via sp(3) C-H activation/functionalization of azaarenes, Chemistryselect, vol. 2, no. 28, pp. 9147-9152, 2017.
D. K. Mohapatra, Mondal, D., Chorghade, M. S., and Gurjar, M. K., General strategy for a short and efficient synthesis of 3-hydroxy-4-methylprolines (HMP), Tetrahedron Letters, vol. 47, no. 52, pp. 9215-9219, 2006.
A. S. More, Menon, S. K., and Wadgaonkar, P. P., New poly(1,3,4-oxadiazole)s bearing pentadecyl side chains: synthesis and characterization, Journal of Applied Polymer Science, vol. 124, no. 2, pp. 1281-1289, 2012.
P. Prabhakaran and Sanjayan, G. J., N,N `,N `'-Tri-Boc-guanidine (TBG): a common starting material for both N-alkyl guanidines and amidinoureas, Tetrahedron Letter, vol. 48, no. 10, pp. 1725-1727, 2007.
H. Joshi, Shah, N., Sakar, D., Desai, N. C., and Jadeja, K. A., One pot synthesis and biological evaluation of some new pyridine-3,5-dicarbonitrile derivatives, ChemistrySelect , vol. 3, no. 12, pp. 3374-3378, 2018.
K. K. Arora, PrakashaReddy, J., and Pedireddi, V. R., Pyridine mediated supramolecular assemblies of 3,5-dinitro substituted benzoic acid, benzamide and benzonitrile, Tetrahedron, vol. 61, no. 45, pp. 10793-10800, 2005.
L. Emmanuvel and Sudalai, A., Short enantioselective synthesis of (+)-L-733,060 via Shi epoxidation of a homoallylic carboxylate, Tetrahedron Letters, vol. 49, no. 40, pp. 5736-5738, 2008.
S. T. Dhumal, Deshmukh, A. R., Bhosle, M. R., Khedkar, V. M., Nawale, L. U., Sarkar, D., and Mane, R. A., Synthesis and antitubercular activity of new 1,3,4-oxadiazoles bearing pyridyl and thiazolyl scaffolds, Bioorganic & Medicinal Chemistry Letters, vol. 26, no. 15, pp. 3646-3651, 2016.
P. S. Mahajan, Nikam, M., Chate, A., Nimbalkar, U., Patil, V., Bobade, A., Chaudhari, A., Deolankar, D., Javale, B., and Gill, C. H., Synthesis, antioxidant, anti-inflammatory, and antimicrobial screening of newer thiophene-fused arylpyrazolyl 1,3,4-oxadiazoles, Phosphorus Sulfur and Silicon and the Related Elements, vol. 190, no. 11, pp. 1803-1813, 2015.
N. C. Desai, Somani, H., Trivedi, A., Bhatt, K., Nawale, L., Khedkar, V. M., Jha, P. C., and Sarkar, D., Synthesis, biological evaluation and molecular docking study of some novel indole and pyridine based 1,3,4-oxadiazole derivatives as potential antitubercular agents, Bioorganic & Medicinal Chemistry Letters, vol. 26, no. 7, pp. 1776-1783, 2016.
N. C. Desai, Kotadiya, G. M., Trivedi, A. R., Khedkar, V. M., and Jha, P. C., Synthesis, biological valuation, and QSAR studies of novel pyrazole bearing pyridyl oxadiazole analogues as potential antimicrobial agents, Medicinal Chemistry Research, vol. 25, no. 4, pp. 712-727, 2016.
S. K. Singh, Srivastava, A. Kumar, Srivastava, K., Banerjee, R., and Prasad, J., Synthesis, characterization and electrochemical investigations of mixed-ligand copper(II)-organic supramolecular frameworks, Journal of Molecular Structure, vol. 1147, pp. 549-557, 2017.
M. Pirimova, Torambetov, B., Kadirova, S., Ziyaev, A., Gonnade, R. G., and Ashurov, J., Synthesis, crystal structure and Hirshfeld surface analysis of a zinc(II) coordination polymer of 5-phenyl-1,3,4-oxa­diazole-2-thiol­ate, Acta Crystallographica Section E Crystallographic Communications, vol. 87, no. Part 8, pp. 794-797, 2022.
A. P. Chavan, Deshpande, R. R., Borade, N. A., Shinde, A., Mhaske, P. C., Sarkar, D., and Bobade, V. D., Synthesis of new 1,3,4-oxadiazole and benzothiazolylthioether derivatives of 4-arylmethylidene-3-substituted-isoxazol-5(4H)-one as potential antimycobacterial agents, Medicinal Chemistry Research, vol. 28, no. 11, pp. 1873-1884, 2019.
B. B. Kashid, Salunkhe, P. H., Dongare, B. B., More, K. R., Khedkar, V. M., and Ghanwat, A. A., Synthesis of novel of 2, 5-disubstituted 1, 3, 4-oxadiazole derivatives and their in vitro anti-inflammatory, anti-oxidant evaluation, and molecular docking study, Bioorganic & Medicinal Chemistry Letters, vol. 30, no. 12, p. 127136, 2020.
P. R. Sharma and Varma, A., Thermal stability of cellulose and their nanoparticles: Effect of incremental increases in carboxyl and aldehyde groups, Carbohydrate Polymers, vol. 114, pp. 339-343, 2014.
R. M. Patel and Argade, N. P., Total synthesis of (+/-)-1,3,4,5-tetragalloylapiitol, Synthesis-Stuttgart, no. 3, pp. 372-374, 2009.
B. Sai Allaka, Basavoju, S., and Gamidi, R. Krishna, Transition metal- and oxidant-free regioselective synthesis of 3,4,5-trisubstituted pyrazoles by means of [3+2] cycloaddition reactions, ChemistrySelect, vol. 7, no. 11, p. e202200605, 2022.
U. D. Nimbalkar, Tupe, S. G., Vazquez, J. A. Seijas, Khan, F. A. Kalam, Sangshetti, J. N., and Nikalje, A. Pratima G., Ultrasound- and molecular sieves-assisted synthesis, molecular docking and antifungal evaluation of 5-(4-(benzyloxy)-substituted phenyl)-3-((phenylamino)methyl)-1,3,4-oxadiazole-2(3H)-thiones, Molecules, vol. 21, no. 5, p. 484, 2016.
R. S. Kusurkar, Alkobati, N. A. H., Gokule, A. S., and Puranik, V. G., Use of the pictet-spengler reaction for the synthesis of 1,4-disubstituted-1,2,3,4-tetrahydro-beta-carbolines and 1,4-disubstituted-beta-carbolines: formation of gamma-carbolines, Tetrahedron, vol. 64, no. 8, pp. 1654-1662, 2008.
A. H. Bansode and Suryavanshi, G., Visible-light-induced controlled oxidation of N-substituted 1,2,3,4-tetrahydroisoquinolines for the synthesis of 3,4-dihydroisoquinolin-1(2h)-ones and isoquinolin-1(2H)-ones, Advanced Synthesis & Catalysis, vol. 363, no. 5, pp. 1390-1400, 2021.