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T. Roy, Jacob, A., Bhattacharjee, S., and Biju, A. T., [8+3]-cycloaddition of tropones with azaoxyallyl cations, Chemistry-An Asian Journal, vol. 14, no. 24, pp. 4748-4753, 2019.
P. Kumar, Kale, S. B., Gonnade, R. G., and Das, U., Acid mediated sulfonylation of para-quinone methides with tosylmethyl isocyanides for the synthesis of diarylmethyl sulfones, ChemistrySelect, vol. 6, no. 28, pp. 7158-7161, 2021.
R. Gnaneshwar and Sivaram, S., Addition of a silyl ketene acetal to alpha,beta-unsaturated cyclic anhydrides, Synthetic Communications, vol. 40, no. 16, p. PII 924771265, 2010.
S. Bhowmik and Darbha, S., Advances in solid catalysts for selective hydrogenolysis of glycerol to 1,3-propanediol, Catalysis Reviews-Science and Engineering, 2021.
S. G. Agalave, Pharande, S. G., Gade, S. M., and Pore, V. S., Alumina-supported copper iodide: an efficient and recyclable catalyst for microwave-assisted synthesis of 1,4-disubstituted 1,2,3-triazoles via three-component reaction in water, Asian Journal of Organic Chemistry, vol. 4, no. 9, pp. 943-951, 2015.
M. Sajid Khan, Siddiqui, S. Ahmad, Siddiqui, M. Shaik Rafi, Goswami, U., Srinivasan, K. Venkatrama, and Khan, M. Islam, Antibacterial activity of synthesized 2,4,5-trisubstituted imidazole derivatives, Chemical Biology & Drug Design, vol. 72, no. 3, pp. 197-204, 2008.
R. Divate, Menon, V., and Rao, M., Approach towards biocatalytic valorisation of barley beta-glucan for bioethanol production using 1,3-1,4 beta-glucanase and thermotolerant yeast, International Biodeterioration & Biodegradation, vol. 82, pp. 81-86, 2013.
V. Mullapudi and , Attempted synthesis of central furopyran core of diocollettines A via a gold-catalyzed cascade 1,6-diyne cycloisomerization process, Tetrahedron Letters, vol. 61, no. 40, p. 152367, 2020.
, Charate, S. P., ,, ,, and Wadgaonkar, P. P., Bentonite - Clay - supported cuprous iodide nanoparticles (BENT- CuI NPs): a new heterogeneous catalyst in diversity - oriented synthesis of 1, 2, 3-triazoles in aqueous medium, Chemistryselect, vol. 4, no. 24, pp. 7144-7150, 2019.
R. S. Jagtap and Joshi, N. N., Bidentate ligand-catalyzed enantioselective addition of RZnX to benzaldehyde, Tetrahedron Letters, vol. 52, no. 48, pp. 6501-6503, 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.
S. Jagtap and Rao, M., Conformation and microenvironment of the active site of a low molecular weight 1,4-beta-D-glucan glucanohydrolase from an alkalothermophilic thermomonospora sp.: involvement of lysine and cysteine residues, Biochemical and Biophysical Research Communications, vol. 347, no. 2, pp. 428-432, 2006.
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.
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.
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.
L. Goswami, Gupta, L., Paul, S., Vijayaraghavan, P., and Bhattacharya, A. K., Design and synthesis of 1,3-diynes as potent antifungal agents against aspergillus fumigatus, ChemMedChem, vol. 18, no. 9, 2023.
V. S. Pore, Aher, N. G., Kumar, M., and Shukla, P. K., Design and synthesis of fluconazole/bile acid conjugate using click reaction, Tetrahedron, vol. 62, no. 48, pp. 11178-11186, 2006.
A. Atmaram Upare, Gadekar, P. K., Sivaramakrishnan, H., Naik, N., Khedkar, V. M., Sarkar, D., Choudhari, A., and S. Roopan, M., Design, synthesis and biological evaluation of (E)-5-styryl-1,2,4-oxadiazoles as anti-tubercular agents, Bioorganic Chemistry, vol. 86, pp. 507-512, 2019.
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.
S. Sarkar, Swami, S., Soni, S. Kumar, Holien, J. K., Khan, A., Korwar, A. M., Likhite, A. P., Joshi, R. A., Joshi, R. R., and Sarkar, D., Detection of a target protein (GroEl2) in Mycobacterium tuberculosis using a derivative of 1,2,4-triazolethiols, Molecular Diversity, vol. 26, no. 5, pp. 2535-2548, 2022.
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.
A. K. Bhattacharya, Dange, S. S., Polanki, I. K., and Chand, H. R., Efficient synthesis of 1,5-benzodiazepines catalyzed by bismuth nitrate, Indian Journal of Chemistry Section B-Organic Chemistry including Medicinal Chemistry, vol. 53, no. 12, pp. 1561-1567, 2014.
T. M. Potewar, Ingale, S. A., and Srinivasan, K. V., Efficient synthesis of quinoxalines in the ionic liquid 1-n-butylimidazolium tetrafluoroborate ([Hbim]BF4) at ambient temperature, Synthetic Communications, vol. 38, no. 21, pp. 3601-3612, 2008.
J. K. Laha, Excellent exo/endo-selectivity in the 1,3-dipolar cycloaddition of cyclic azomethine ylide: exploring the facile investigation of cocaine antagonists, Letters in Organic Chemistry, vol. 4, no. 8, pp. 550-552, 2007.
V. Beniwal, Kumar, A., and Pal, H., Excited state intramolecular proton transfer in 1,8-Dihydroxy-9,10-anthraquinone dye: Revealing microstructures in [C(n)mIm][NTf2] and [C(n)mIm][BF4] series of ionic liquid solvents, Journal of Photochemistry and Photobiology A-Chemistry, vol. 350, pp. 111-121, 2018.
P. M. Chaudhary, Chavan, S. R., Shirazi, F., Razdan, M., Nimkar, P., Maybhate, S. P., Likhite, A. P., Gonnade, R. G., Hazra, B. G., Deshpande, M. V., and Deshpande, S. R., Exploration of click reaction for the synthesis of modified nucleosides as chitin synthase inhibitors, Bioorganic & Medicinal Chemistry, vol. 17, no. 6, pp. 2433-2440, 2009.
N. Mohanta, Samal, P. P., Krishnamurty, S., and Gnanaprakasam, B., FeCl2-catalyzed rearrangement of aryl peroxyoxindole into 1,3-benzooxazin-4-One, Advanced Synthesis & Catalysis, vol. 365, pp. 515-521, 2023.
U. D. Phalgune, Vanka, K., and Rajamohanan, P. R., GIAO/DFT studies on 1,2,4-triazole-5-thiones and their propargyl derivatives, Magnetic Resonance in Chemistry, vol. 51, no. 12, pp. 767-774, 2013.
D. C. Agrawal, Topfer, R., and Zyprian, E., Grapevine DNA polymorphisms revealed by microsatellite-derived markers from soybean and rice, Vitis, vol. 45, no. 2, pp. 81-84, 2006.
O. P. Bande, Jadhav, V. H., Puranik, V. G., and Dhavale, D. D., Highly diastereoselective 1,3-dipolar cycloaddition of a D-galactose-derived nitrone with dimethyl maleate: synthesis of polyhydroxylated perhydroazaazulenes, Synlett, no. 12, pp. 1959-1963, 2009.
L. Giribabu, Singh, S. P., Patil, N. M., M. Kantam, L., Gupte, S. P., and Chaudhari, R. V., Highly efficient sulfimidation of 1,3-dithianes by Cu(I) complexes, Synthetic Communications, vol. 38, no. 4, pp. 619-625, 2008.
P. Kalita and Kumar, R., Immobilization of 1,5,7-triazabicyclo [4.4.0] dec-5-ene over mesoporous materials: an efficient catalyst for michael-addition reactions under solvent-free condition, Applied Catalysis A-General, vol. 397, no. 1-2, pp. 250-258, 2011.
R. Varma, Kasture, S. M., Nene, S., and Kalkote, U. R., Lipases catalyzed enantioselective hydrolysis of (R,S)-methyl 1,4-benzodioxan-2-carboxylate intermediate for (S)-doxazosin mesylate, World Journal of Microbiology & Biotechnology, vol. 24, no. 4, pp. 577-579, 2008.
S. A. Galave, Kadam, K. S., Sonawane, A. D., Pansare, V. R., and Garud, D. R., Metal-free isoamyl nitrite mediated efficient synthesis of 1,2,4-oxadiazoles, Tetrahedron Letters, vol. 125, p. 154616, 2023.
N. S. Khonde, Said, M. S., Sabane, J. K., Gajbhiye, J. M., and Kumar, P., Metal-free, Tf2NH-catalyzed 1, 6-conjugate addition of imidazopyridine to para-quinone methides: easy access to C3-functionalized triarylmethane imidazopyridine, Tetrahedron, vol. 101, p. 132510, 2021.
R. Parate, Mane, R., Dharne, M., and Rode, C., Mixed bacterial culture mediated direct conversion of bio-glycerol to diols, Bioresource Technology, vol. 250, pp. 86-93, 2018.
Y. M. Harshe, Utikar, R. P., Ranade, V. V., and Pahwa, D., Modeling of rotary desiccant wheels, Chemical Engineering & Technology, vol. 28, no. 12, pp. 1473-1479, 2005.
A. P. Amrute, Sahoo, S., Bordoloi, A., Hwang, Y. Kyu, Hwang, J. - S., and Halligudi, S. B., MoO3/SiO2: an efficient and selective catalyst for the synthesis 1,3-dioxolane and 1,3-dioxane, Catalysis Communications, vol. 10, no. 10, pp. 1404-1409, 2009.
U. R. Kalkote, Panchgalle, S. R., Mahakal, K. K., Choudhary, S. M., and Chavan, S. R., New method for the preparation of 1,2-benzisoxazole-3-carboxaldehyde, Journal of Chemical Research, no. 2, pp. 99-100, 2005.
S. M. Bhosale, Momin, A. A., Gawade, R. L., Puranik, V. G., and Kusurkar, R. S., New synthetic route for 1,2-diketo compounds using unexpected C-C bond cleavage by PCC, Tetrahedron Letters, vol. 53, no. 39, pp. 5327-5330, 2012.
S. M. Kasture, Varma, R., Kalkote, U. R., Nene, S., and Kulkarni, B. D., Novel enzymatic route for kinetic resolution of (+/-)1,4-benzodioxan-2-carboxylic acid, Biochemical Engineering Journal, vol. 27, no. 1, pp. 66-71, 2005.
B. Sai Allaka, Basavoju, S., and Krishna, G. Rama, Photoinduced multicomponent regioselective synthesis of 1,4,5-trisubstituted-1,2,3-triazoles: transition metal-, azide- and oxidant-free protocol, Advanced Synthesis & Catalysis, vol. 363, no. 14, pp. 3560-3565, 2021.
K. Venkatesan, Pujari, S. S., and Srinivasan, K. V., Proline-catalyzed simple and efficient synthesis of 1,8-dioxo-decahydroacridines in aqueous ethanol medium, Synthetic Communications, vol. 39, no. 2, p. PII 907127919, 2009.
D. K. Mohapatra, Ramesh, D. K., Giardello, M. A., Chorghade, M. S., Gurjar, M. K., and Grubbs, R. H., Protecting group directed ring-closing metathesis (RCM): the first total synthesis of an anti-malarial nonenolide, Tetrahedron Letters, vol. 48, no. 14, pp. 2621-2625, 2007.
R. B. Mane, Ghalwadkar, A. A., Hengne, A. M., Suryawanshi, Y. R., and Rode, C. V., Role of promoters in copper chromite catalysts for hydrogenolysis of glycerol, Catalysis Today, vol. 164, no. 1, pp. 447-450, 2011.
S. A. Siddiqui, Narkhede, U. C., Palimkar, S. S., Daniel, T., Lahoti, R. J., and Srinivasan, K. V., Room temperature ionic liquid promoted improved and rapid synthesis of 2,4,5-triaryl imidazoles from aryl aldehydes and 1,2-diketones or alpha-hydroxyketone, Tetrahedron, vol. 61, no. 4, pp. 3539-3546, 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.
P. G. Bangar, Jawalkar, P. R., Dumbre, S., Patil, D., and Iyer, S., Silver sequestration of halides for the activation of Pd(OAc) 2 catalyzed Mizoroki-Heck reaction of 1,1 and 1,2 - Disubstituted alkenes: Ag Sequestration for Pd catalyzed Heck reaction- disubstituted alkenes, Applied Organometallic Chemistry, vol. 32, no. 3, p. e4159, 2017.
M. N. Patil, Bhowmick, K. C., and Joshi, N. N., Stereocontrolled route to the synthesis of (+/-)-3-amino-2,2-dimethyl-1,3-diphenylpropan-1-ol, Tetrahedron Letters, vol. 51, no. 45, pp. 5927-5929, 2010.
B. B. Shingate, Hazra, B. G., Pore, V. S., Gonnade, R. G., and Bhadbhade, M. M., Stereoselective syntheses of unnatural steroidal C(20R) aldehydes by ionic hydrogenation of C-20 tertiary alcohols, Tetrahedron Letters, vol. 47, no. 52, pp. 9343-9347, 2006.
P. M. Chaudhary, Chavan, S. R., Kavitha, M., Maybhate, S. P., Deshpande, S. R., Likhite, A. P., and Rajamohanan, P. R., Structural elucidation of propargylated products of 3-substituted-1,2,4-triazole-5-thiols by NMR techniques, Magnetic Resonance in Chemistry, vol. 46, no. 12, pp. 1168-1174, 2008.
D. K. Mohapatra, Maity, P. K., Chorghade, M. S., and Gurjar, M. K., Syntheis of unusual tricyclic ring systems of biological interest, Heterocycles, vol. 73, no. 1, p. 269+, 2007.
N. G. Aher, Pore, V. S., Mishra, N. N., Kumar, A., Shukla, P. K., Sharma, A., and Bhat, M. K., Synthesis and antifungal activity of 1,2,3-triazole containing fluconazole analogues, Bioorganic & Medicinal Chemistry Letters, vol. 19, no. 3, pp. 759-763, 2009.
P. M. Chaudhary, Tupe, S. G., Jorwekar, S. U., Sant, D. G., Deshpande, S. R., Maybhate, S. P., Likhite, A. P., and Deshpande, M. V., Synthesis and antifungal potential of 1,2,3-triazole and 1,2,4-triazole thiol substituted strobilurin derivatives, Indian Journal of Chemistry Section B-Organic Chemistry Including Medicinal Chemistry, vol. 54, no. 7, pp. 908-917, 2015.
V. Shinde, Mahulikar, P., Mhaske, P. C., Chakraborty, S., Choudhari, A., Phalle, S., Choudhari, P., and Sarkar, D., Synthesis and antimycobacterial evaluation of new 5-(1-benzyl-1H-1,2,3-triazol-4-yl)-4-methyl-2-arylthiazole derivatives, Medicinal Chemistry Research, vol. 28, no. 6, pp. 805-819, 2019.
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.
M. H. Shaikh, Subhedar, D. D., Arkile, M. A., Khedkar, V. M., Jadhav, N. J., Sarkar, D., and Shingate, B. B., Synthesis and bioactivity of novel triazole incorporated benzothiazinone derivatives as antitubercular and antioxidant agent, Bioorganic & Medicinal Chemistry Letters, vol. 26, no. 2, pp. 561-569, 2016.
V. Shinde, Mahulikar, P., Mhaske, P. C., Nawale, L., and Sarkar, D., Synthesis and biological evaluation of new 2-aryl-4-((4-aryl-1H-1,2,3-triazol-1-yl)methyl)thiazole derivatives, Research on Chemical Intermediates, vol. 44, no. 2, pp. 1247-1260, 2018.
A. H. Kategaonkar, Shinde, P. V., Kategaonkar, A. H., Pasale, S. K., Shingate, B. B., and Shingare, M. S., Synthesis and biological evaluation of new 2-chloro-3-((4-phenyl-1H-1,2,3-triazol-1-yl)methyl)quinoline derivatives via click chemistry approach, European Journal of Medicinal Chemistry, vol. 45, no. 7, pp. 3142-3146, 2010.
A. B. Danne, Synthesis and biological evaluation of novel triazole-biscoumarin conjugates as potential antitubercular and anti-oxidant agents, Research on Chemical Intermediates, vol. 44, no. 10, pp. 1-28, 2018.
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.
M. H. Shaikh, Subhedar, D. D., Shingate, B. B., Khan, F. A. Kalam, Sangshetti, J. N., Khedkar, V. M., Nawale, L., Sarkar, D., Navale, G. R., and Shinde, S. S., Synthesis, biological evaluation and molecular docking of novel coumarin incorporated triazoles as antitubercular, antioxidant and antimicrobial agents, Medicinal Chemistry Research, vol. 25, no. 4, pp. 790-804, 2016.
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.
N. G. Aher and Pore, V. S., Synthesis of bile acid dimers linked with 1,2,3-triazole ring at C-3, C-11, and C-24 positions, Synlett, no. 14, pp. 2155-2158, 2005.
A. Dubey, Kauloorkar, S. Vandana, and Kumar, P., Synthesis of (-)-galantinic acid via iterative hydrolytic kinetic resolution and tethered aminohydroxylation, Tetrahedron, vol. 66, no. 17, pp. 3159-3164, 2010.
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.
A. K. Bhattacharya, Kaur, T., and Ganesh, K. N., Synthesis of the antibacterial benzoquinone primin and its water-soluble analogue, primin acid, Synthesis-Stuttgart, no. 7, pp. 1141-1144, 2010.
M. N. Patil, Gonnade, R. G., and Joshi, N. N., Synthesis, resolution, and applications of 3-amino-2,2-dimethy1-1,3-diphenylpropan-1-ol, a conformationally restricted 1,3-aminoalcohol, Tetrahedron, vol. 66, no. 27-28, pp. 5036-5041, 2010.
M. H. Shaikh, Subhedar, D. D., Akolkar, S. V., Nagargoje, A. A., Khedkar, V. M., Sarkar, D., and Shingate, B. B., Tetrazoloquinoline-1,2,3-triazole derivatives as antimicrobial agents: synthesis, biological evaluation and molecular docking study, Polycyclic Aromatic Compounds, vol. 42, no. 4, pp. 1920-1941, 2022.
S. Satbhaiya, Khonde, N. S., Rathod, J., Gonnade, R., and Kumar, P., Tf2NH catalyzed 1,6-conjugate addition of 2-hydroxy-p-quinone methides with -functionalized ketones: access to 2,3,4,9-Tetrahydro-1H-xanthenones and 4H-Chromene Derivatives, European Journal of Organic Chemistry, no. 20, pp. 3127-3133, 2019.
J. K. Laha, Total synthesis of tropinone using 1,3-dipolar cycloaddition of cyclic azomethine ylide and phenyl vinyl sulfone as the key step, Chemistry of Natural Compounds, vol. 46, no. 2, pp. 254-256, 2010.
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.
A. Padmanabhan, Joseph, K. C., Puranik, V. G., Huang, X., and Li, J., Unprecedented two-dimensional polymeric [Zn(OOC-C6H4-COO)(2)](2_)(n)[+H3N-(CH2)(3)-NH(3])(+)n system bearing one-dimensional chain of zinc(II) bis(phthalate) dianions held by propane-1,3-diammonium cations: crystal structure, thermal and fluorescent pr, Solid State Sciences, vol. 9, no. 6, pp. 491-495, 2007.
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. T. Venugopalan, Kandasamy, P., Gogoi, P., Ratneshkumar, J., and Thirumalaiswamy, R., Utilizing the oxygen carrier property of cerium iron oxide for the low-temperature synthesis of 1,3-butadiene from 1-butene, Catalysis Letters, vol. 151, no. 10, pp. 3057-3066, 2021.