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V. A. Prabhu, Rajput, V., Yadav, R., Gohil, K., Dharne, M. S., Unnikrishnan, M. Kesavan, and Gorthi, S. Prasad, Gut microbiota dysbiosis in patients with intracranial sino-venous thrombosis and acute ischemic stroke in the young, Annals of Indian Academy of Neurology, vol. 25, no. 5, p. 980+, 2022.
V. V. Ranade and Pareek, V., Guest editorial: computational fluid dynamics, Asia-Pacific Journal of Chemical Engineering, vol. 3, no. 2, pp. 95-96, 2008.
S. Pal, Ramu, V., Taye, N., Mogare, D. G., Yeware, A. M., Sarkar, D., D. Reddy, S., Chattopadhyay, S., and Das, A., GSH Induced controlled release of levofloxacin from a purpose-built prodrug: luminescence response for probing the drug release in escherichia coli and staphylococcus aureus, Bioconjugate Chemistry, vol. 27, no. 9, pp. 2062-2070, 2016.
R. R. Hawaldar, Mulik, U. P., Patil, K., Pasricha, R., Sathaye, S., Lewis, A., and Amalnerkar, D. P., Growth of PbS nanopyramidal particulate films for potential applications in quantum-dot photovoltaics and nanoantennas, Materials Research Bulletin , vol. 40, no. 8, pp. 1353-1360, 2005.
S. Sadhu and Poddar, P., Growth of oriented single crystalline La-doped TiO2 nanorod arrays electrode and investigation of optoelectronic properties for enhanced photoelectrochemical activity, RSC Advances, vol. 3, no. 26, pp. 10363-10369, 2013.
A. K. Kinage, Prashar, A. K., Berlier, G., and Chaturvedi, R. K., Growth of hydrothermally stable meso-porous silica structure interconnected around micro-porous zeolite crystals, Materials Characterization, vol. 62, no. 12, pp. 1166-1172, 2011.
S. Issar, Poddar, P., Mehra, N. C., and Mahapatro, A. K., Growth of flower-like patterns of TiO2 nanorods over FTO substrate, International Conference on Technologically Advanced Materials (ICTAM), vol. 184 , 1 vol. Taylor & Francis Group 2&4 Park Square Milton Park Abingdon OX14 4RN, Univ Delhi, New Delhi, India, pp. 166-171, 2017.
P. V. Dalai, Saraf, K. B., and Shah, S., Growth of barium oxalate crystals in agar-agar gel and their characterization, Crystal Research and Technology, vol. 44, no. 1, pp. 36-42, 2009.
A. Yengantiwar, Sharma, R., Game, O. S., and Banpurkar, A. G., Growth of aligned ZnO nanorods array on ITO for dye sensitized solar cell, Current Applied Physics, vol. 11, no. 1, pp. S113-S116, 2011.
S. A. Kulkarni, Mirji, S. A., Mandale, A. B., Gupta, R. P., and Vijayamohanan, K. P., Growth kinetics and thermodynamic stability of octadecyltrichlorosilane self-assembled monolayer on Si (100) substrate, Materials Letters, vol. 59, no. 29-30, pp. 3890-3895, 2005.
I. Heidari, De, S., Ghazi, S. M., Goedecker, S., and Kanhere, D. G., Growth and structural properties of Mg-N (N=10-56) clusters: density functional theory study, Journal of Physical Chemistry A, vol. 115, no. 44, pp. 12307-12314, 2011.
B. Punji, Mague, J. T., and Balakrishna, M. S., Group 11 metal complexes of mesocyclic thioether-aminophosphonites, (-OC10H6), European Journal of Inorganic Chemistry, no. 5, pp. 720–731, 2007.
A. Kumar Dutta, Manohar, P. Uday, Vaval, N., and Pal, S., Ground state of naphthyl cation: singlet or triplet?, Journal of Chemical Physics, vol. 140, no. 11, p. 114312, 2014.
D. K. Dumbre, Wakharkar, R. D., and Choudhary, V. R., Greener ullmann-type coupling of aryl halides for preparing biaryls using reusable Pd/ZrO2 catalyst, Synthetic Communications, vol. 41, no. 2, p. PII 931249796, 2011.
M. S. Singhvi, Zendo, T., Gokhale, D., and Sonomoto, K., Greener L-lactic acid production through in situ extractive fermentation by an acid-tolerant Lactobacillus strain, Applied Microbiology and Biotechnology, 2018.
R. Das, Das, K., Ray, B., Vinod, C. P., and Peter, S. C., Green transformation of CO2 to ethanol using water and sunlight by the combined effect of naturally abundant red phosphorus and Bi2MoO6, Energy & Environmental Science, vol. 15, no. 5, pp. 1967-1976, 2022.
K. Kashinath, Swaroop, P. Siva, and D. Reddy, S., Green synthetic route to antimalarial and antibacterial agent CJ-15,801 and its isomer cis-CJ-15,801, RSC Advances, vol. 2, no. 9, pp. 3596-3598, 2012.
R. Pandit Dhavale, Patil, S. Sanjay, Jadhav, S. Ujwal, Dhavale, R. Pandit, and Agawane, S. Bharat, Green synthesis-mediated iron oxide nanoparticles using sphagneticola trilobata (L.) for antibacterial and anticancer assessment, Pharmacognosy Magazine, vol. 18, no. 80, pp. 953-961, 2022.
A. S. Burange, Gadam, K. G., Tugaonkar, P. S., Thakur, S. D., Soni, R. K., Khan, R. R., Tai, M. S., and Gopinath, C. S., Green synthesis of xanthene and acridine-based heterocycles of pharmaceutical importance: a review, Environmental Chemistry Letters, 2021.
M. Hudlikar, Joglekar, S., Dhaygude, M., and Kodam, K. M., Green synthesis of TiO2 nanoparticles by using aqueous extract of Jatropha curcas L. latex, Materials Letters, vol. 75, pp. 196-199, 2012.
N. Hussain, Gogoi, P., Azhagan, M. Vedi Kuyil, Shelke, M. V., and Das, M. R., Green synthesis of stable Cu(0) nanoparticles onto reduced graphene oxide nanosheets: a reusable catalyst for the synthesis of symmetrical biaryls from arylboronic acids under base-free conditions, Catalysis Science & Technology, vol. 5, no. 2, pp. 1251-1260, 2015.
N. Hussain, Gogoi, P., Azhagan, M. Vedi Kuyil, Shelke, M. V., and Das, M. R., Green synthesis of stable Cu(0) nanoparticles onto reduced graphene oxide nanosheets: a reusable catalyst for the synthesis of symmetrical biaryls from arylboronic acids under base-free conditions (vol 5, pg 1251, 2015), Catalysis Science & Technology, vol. 6, no. 4, pp. 1234-1234, 2016.
S. Shankar, Prasad, R. G. S. V., Selvakannan, P. R., Jaiswal, L., and Laxman, R. Seeta, Green synthesis of silver nanoribbons from waste X-ray films using alkaline protease, Materials Express, vol. 5, no. 2, pp. 165-170, 2015.
G. A. Bhaduri, Little, R., Khomane, R. B., Lokhande, S. U., Kulkarni, B. D., Mendis, B. G., and Siller, L., Green synthesis of silver nanoparticles using sunlight, Journal of Photochemistry and Photobiology A-Chemistry, vol. 258, pp. 1-9, 2013.
O. Pawar, Deshpande, N., Dagade, S., Waghmode, S., and Joshi, P. Nigam, Green synthesis of silver nanoparticles from purple acid phosphatase apoenzyme isolated from a new source limonia acidissima, Journal of Experimental Nanoscience, vol. 11, no. 1, pp. 28-37, 2016.
C. K. Tagad, Rajdeo, K. S., Kulkarni, A., More, P., Aiyer, R. C., and Sabharwal, S. G., Green synthesis of polysaccharide stabilized gold nanoparticles: chemo catalytic and room temperature operable vapor sensing application, RSC Advances, vol. 4, no. 46, pp. 24014-24019, 2014.
B. D'Cruz, Samuel, J., Sreedhar, M. Kesavapill, and George, L., Green synthesis of novel polyoxoanions of tungsten containing phosphorus as a heteroatom: characterization, non-isothermal decomposition kinetics and photocatalytic activity, New Journal of Chemistry, vol. 38, no. 11, pp. 5436-5444, 2014.
S. Das and Dhar, B. Bijayi, Green synthesis of noble metal nanoparticles using cysteine-modified silk fibroin: catalysis and antibacterial activity, RSC Advances, vol. 4, no. 86, pp. 46285-46292, 2014.
P. S. Giram, Wang, J. Tzu- Wen, Walters, A. A., Rade, P. P., Akhtar, M., Han, S., Faruqu, F. N., Abdel-Bar, H. M., Garnaik, B., and Al-Jamal, K. T., Green synthesis of methoxy-poly(ethylene glycol)-block-poly(l-lactide-co-glycolide) copolymer using zinc proline as a biocompatible initiator for irinotecan delivery to colon cancer in vivo, Biomaterials Science, vol. 9, no. 3, pp. 795-806, 2021.
A. S. Nagpure, Mohture, V. M., and Kayarkar, A., Green synthesis of highly dispersed Cu metal nanoparticles catalysts, Inorganic Chemistry Communications, vol. 146, p. 110118, 2022.
D. Y. Nadargi, Nadargi, J. D., Tamboli, M. S., Tamboli, A. M., Mulla, I. S., Umar, A., Truong, N. Tam Nguyen, and Suryavanshi, S. S., Green synthesis of GO-loaded Ag/ZnO nanocomposites for methyl orange degradation, Journal of Materials Science-Materials in Electronics, vol. 34, no. 21, p. 1568, 2023.
S. Prasad Mekala, Prabu, M., Gawali, S. Datta, Gopakumar, K., Gogoi, P., Bhatkar, A. Ravindra, Mohapatra, G., Unnikrishanan, E., and Raja, T., Green synthesis of cyclohexanone to adipic acid over Fe-W oxides incorporated mesoporous carbon support, Catalysis Communications, vol. 168, p. 106466, 2022.
N. Kulal, Vetrivel, R., Gopinath, C. S., Ravindran, R. K., Rao, V. N., Shetty, M., Shrikanth, R., Rangappa, D., and Shanbhag, G. V., Green route for carbonylation of amines by CO2 using Sn-Ni-O bifunctional catalyst and theoretical study for finding best suited active sites, Chemical Engineering Journal , vol. 419, p. 129439, 2021.
P. Phukan, Khisti, R. S., and Sudalai, A., Green protocol for the synthesis of N-oxides from secondary amines using vanadium silicate molecular sieve catalyst, Journal of Molecular Catalysis A-Chemical, vol. 248, no. 1-2, pp. 109-112, 2006.
V. R. Choudhary, Dhar, A., Jana, P., Jha, R., and Uphade, B. S., Green process for chlorine-free benzaldehyde from the solvent-free oxidation of benzyl alcohol with molecular oxygen over a supported nano-size gold catalyst, Green Chemistry, vol. 7, no. 11, pp. 768-770, 2005.
S. R. Bankar, Ghadge, S. S., and Jadhav, V. H., Green, practical & scalable approach towards the synthesis of valuable α-keto amides using a metal-free catalyst under solvent-free conditions, New Journal of Chemistry, vol. 47, no. 42, pp. 19679-19687, 2023.
J. K. Pandey and Singh, R. P., Green nanocomposites from renewable resources: effect of plasticizer on the structure and material properties of clay-filled starch, Starch-Starke, vol. 57, no. 1, pp. 8-15, 2005.
N. K. Sathu, Devaraji, P., and Gopinath, C. S., Green leaf to inorganic leaf: a case study of ZnO, Journal of Nanoscienceand Nanotechnology, vol. 16, no. 9, pp. 9203-9208, 2016.
P. Nigam Joshi, Green chemistry in nanotechnology: opportunities and future challenges, Research and Reviews: Journal of Chemistry, vol. 5, no. 1, pp. 3-4, 2016.
S. Singh Negi, Venugopalan, A. Thareparam, Raja, T., Singh, A. Pal, and Gopinath, C. S., Green chemistry approach to styrene from ethylbenzene and air on MnxTi1-xO2 catalyst, RSC Advances, vol. 4, no. 100, pp. 57087-57097, 2014.
B. D'Cruz, Samuel, J., and George, L., Green chemical incorporation of silicon into polyoxoanions of molybdenum: characterization, thermal kinetics study and their photocatalytic water splitting activity, RSC Advances, vol. 4, no. 108, pp. 63328-63337, 2014.
B. Sai Allaka, Basavoju, S., and Krishna, G. Rama, Green catalyst Fe(OTs)(3)/SiO2 for the synthesis of 4-Pyrrolo-12-oxoquinazolines, ChemistrySelect, vol. 5, no. 46, pp. 14721-14728, 2020.
U. Kumar, Ranjan, A. K., Sharan, C., Hardikar, A. A., Pundle, A., and Poddar, P., Green approach towards size controlled synthesis of biocompatible antibacterial metal nanoparticles in aqueous phase using lysozyme, Current Nanoscience, vol. 8, no. 1, pp. 130-140, 2012.
M. Chethana, Sorokhaibam, L. Gayatri, Bhandari, V. M., Raja, S., and Ranade, V. V., Green approach to dye wastewater treatment using biocoagulants, ACS Sustainable Chemistry & Engineering, vol. 4, no. 5, pp. 2495-2507, 2016.
N. Hussain, Borah, A., Darabdhara, G., Gogoi, P., Azhagan, M. Vedi Kuyil, Shelke, M. V., and Das, M. R., Green approach for the decoration of Pd nanoparticles on graphene nanosheets: an in situ process for the reduction of C-C double bonds and a reusable catalyst for the suzuki cross-coupling reaction, New Journal of Chemistry, vol. 39, no. 8, pp. 6631-6641, 2015.
S. Hirlekar, Abhyankar, I., Kane, K., Trimukhe, K., Prabhune, A., and Nisal, A., Green antibacterial molecules: sophorolipids with varying fatty acid chain, Trends in Biomaterials and Artificial Organs, vol. 35, p. 431+, 2021.
S. S. Gholap, Wakchaure, P. B., Pandhare, G. R., and Gill, C. H., Green and sustainable approach to BIS-(INDOLYL) alkanes, Indian Journal of Heterocyclic Chemistry, vol. 18, no. 3, pp. 279-282, 2009.
P. C. Mane, Kadam, D. D., Khadse, A. N., Chaudhari, A. R., Ughade, S. P., Agawane, S. B., and Chaudhari, R. D., Green adeptness in synthesis of non-toxic copper and cobalt oxide nanocomposites with multifaceted bioactivities, Cancer Nanotechnology, vol. 14, no. 1, p. 79, 2023.
A. Sonawani, Kharche, S., Dasgupta, D., and Sengupta, D., Graphical Biology Insights into the dynamic interactions at chemokine-receptor interfaces and mechanistic models of chemokine binding, Journal of Structural Biology, vol. 214, no. 3, p. 107877, 2022.
F. Chekin, Myshin, V., Ye, R., Melinte, S., Singh, S. K., Kurungot, S., Boukherroub, R., and Szunerits, S., Graphene-modified electrodes for sensing doxorubicin hydrochloride in human plasma, Analytical and Bioanalytical Chemistry, vol. 411, no. 8, pp. 1509-1516, 2019.
S. H. Patil, Gaikwad, A. P., Waghmode, B. J., Sathaye, S. D., and Patil, K. R., Graphene-MnO2 composite supercapacitor material accomplished tactically using liquid-liquid and solid-liquid interface reaction techniques, New Journal of Chemistry, vol. 44, no. 17, pp. 6853-6861, 2020.
T. Govindaraj Senthamaraikannan, Krishnamurty, S., and Kaliaperumal, S., Graphene-based frustrated Lewis pairs as bifunctional catalysts for CO2 reduction via the dissociative chemisorption of molecular H-2: a periodic density functional perspective, New Journal of Chemistry, vol. 45, no. 22, pp. 9959-9966, 2021.
M. Malik, Padhye, P., and Poddar, P., Graphene quantum dots-driven multiform morphologies of β-NaYF4:Gd3+/Tb3+ phosphors: the underlying mechanism and their optical properties, ACS omega , vol. 3, no. 2, pp. 1834 -1849, 2018.
P. Nigam Joshi, Kundu, S., Sanghi, S. K., and Sarkar, D., Graphene quantum dots - from emergence to nanotheranostic applications, in Smart Drug Delivery System, Croatia: Intech, 2016.
P. Nigam, Waghmode, S., Louis, M., Wangnoo, S., Chavan, P., and Sarkar, D., Graphene quantum dots conjugated albumin nanoparticles for targeted drug delivery and imaging of pancreatic cancer, Journal of Materials Chemistry B, vol. 2, no. 21, pp. 3190-3195, 2014.
D. Chakravarty, Erande, M. B., and Late, D. J., Graphene quantum dots as enhanced plant growth regulators: effects on coriander and garlic plants, Journal of the Science of Food and Agriculture, vol. 95, no. 13, pp. 2772-2778, 2015.
P. Nigam Joshi and Waghmode, S., Graphene quantum dot-based on-chip electrochemical DNA hybridization sensor for pancreatic cancer, Reports in Electrochemistry, vol. 6, pp. 31-40, 2016.
R. Prasad, Yadav, A. S., Gorain, M., Chauhan, D. S., Kundu, G. C., Srivastava, R., and Selvaraj, K., Graphene oxide supported liposomes as red emissive theranostics for phototriggered tissue visualization and tumor regression, ACS Applied Bio Materials, vol. 2, no. 8, pp. 3312–3320, 2019.
M. Thomas, Illathvalappi, R., Kurungot, S., Nair, B. N., Mohamed, A. Azeez Peer, Anilkumar, G. M., Yamaguchi, T., and Hareesh, U. S., Graphene oxide sheathed ZIF-8 microcrystals: engineered precursors of nitrogen-doped porous carbon for efficient oxygen reduction reaction (ORR) electrocatalysis, ACS Applied Materials & Interfaces, vol. 8, no. 43, pp. 29373-29382, 2016.
P. Tripathi, Gupta, B. Kumar, Bankar, P. K., More, M. A., Late, D. J., and Srivastava, O. Nath, Graphene nanosheets assisted carbon hollow cylinder for high-performance field emission applications, Materials Research Express, vol. 6, no. 9, p. 095066, 2019.
R. T. Khare, Shinde, D. B., Bansode, S., More, M. A., Majumder, M., Pillai, V. K., and Late, D. J., Graphene nanoribbons as prospective field emitter, Applied Physics Letters, vol. 106, no. 2, p. Article Number: 023111, 2015.
S. K. M. Unni, Devulapally, S., Karjule, N., and Kurungot, S., Graphene enriched with pyrrolic coordination of the doped nitrogen as an efficient metal-free electrocatalyst for oxygen reduction, Journal of Materials Chemistry, vol. 22, no. 44, pp. 23506-23513, 2012.
D. Mhamane, Aravindan, V., Taneja, D., Suryawanshi, A., Game, O., Srinivasan, M., and Ogale, S. B., Graphene based nanocomposites for alloy (SnO2), and conversion (Fe3O4) type efficient anodes for Li-ion battery applications, Composites Science and Technology, vol. 130, pp. 88-95, 2016.
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.
P. Kumar, Jayaraman, V. K., and Kulkarni, B. D., Granular support vector machine based method for prediction of solubility of proteins on overexpression in Escherichia coli, in Pattern Recognition and Machine Intelligence, Proceedings, Heidelberger Platz 3, D-14197 Berlin, Germany, 2007, vol. 4815, pp. 406-415.
D. Baskaran, Sakellariou, G., Mays, J. W., and Bratcher, M. S., Grafting reactions of living macroanions with multi-walled carbon nanotubes, Journal of Nanoscience and Nanotechnology, vol. 7, no. 4-5, pp. 1560-1567, 2007.
R. Soni, Raveendran, A., and Kurungot, S., Grafoil-scotch tape-derived highly conducting flexible substrate and its application as a supercapacitor electrode, Nanoscale, vol. 9, no. 10, pp. 3593-3600, 2017.
S. T. Kshirsagar, Kshirsagar, R. B., Patil, P. S., Kulkarni, A., Mandate, A. B., Gaikwad, A. B., and Gokhale, S. P., Gradual transitions in morphology of diamond films grown by using N-2 admixtures of CH4+H-2 gas in a hot filament assisted chemical vapour deposition system, Diamond and Related Materials, vol. 14, no. 2, pp. 232-242, 2005.
P. Agarwala, Pandey, S., and Maiti, S., G-Quadruplexes as tools for synthetic biology, Chembiochem, vol. 14, no. 16, pp. 2077-2081, 2013.
S. Nahar, Sehgal, P., Azhar, M., Rai, M., Singh, A., Sivasubbu, S., Chakraborty, D., and Maiti, S., G-quadruplex motif at the 3' end of sgRNAs improves CRISPR-Cas9 based genome editing efficiency, Chemical Communications, vol. 54, no. 19, pp. 2377-2380, 2018.
P. Agarwala, Pandey, S., Mapa, K., and Maiti, S., G-quadruplex augments translation in the 5 ` untranslated region of transforming growth factor beta 2, Biochemistry, vol. 52, no. 9, pp. 1528-1538, 2013.
H. Chidambaram and Chinnathambi, S., G-protein coupled receptors and tau-different roles in alzheimer's disease, Neuroscience, vol. 438, pp. 198-214, 2020.
H. Chidambaram, Das, R., and Chinnathambi, S., G-protein coupled purinergic P2Y12 receptor interacts and internalizes Tau(RD)-mediated by membrane-associated actin cytoskeleton remodeling in microglia, European Journal of Cell Biology, vol. 101, no. 2, p. 151201, 2022.
H. Chidambaram, Das, R., and Chinnathambi, S., G-protein coupled purinergic P2Y12 receptor interacts and internalizes TauRD-mediated by membrane-associated actin cytoskeleton remodeling in microglia, European Journal of Cell Biology, vol. 101, no. 4, p. 151201, 2022.
A. Omble and Kulkarni, K., GPCRs that Rh oar the Guanine nucleotide exchange factors, Small GTPases, pp. 1-16, 2021.
V. Tammara and Das, A., Governing dynamics and preferential binding of the AXH domain influence the aggregation pathway of Ataxin-1, Proteins-Structure Function and Bioinformatics, vol. 91, no. 3, pp. 380-394, 2023.
V. S. Shinde, Mane, M. V., Vanka, K., Mallick, A., and Patil, N. T., Gold(I)/chiral brønsted acid catalyzed enantioselective hydroamination-hydroarylation of alkynes: effect of remote hydroxyl group in the reactivity and enantioselectivity, Chemistry - A European Journal, vol. 21, no. 3, pp. 975-979, 2015.
P. N. Bagle, Mane, M. V., Sancheti, S. P., Gade, A. B., Shaikh, S. R., Baik, M. - H., and Patil, N. T., Gold(I)-catalyzed hydroxy group assisted C(sp(2))-H alkylation of enaminones with diazo compounds to access 3-alkyl chromones, Organic Letters, vol. 21, no. 1, pp. 335-339, 2019.
C. Naidu Kona, Shinde, M. H., and Ramana, C. V., Gold(I)-catalyzed hydroindolylation of allenyl ethers, Organic & Biomolecular Chemistry, vol. 13, no. 19, pp. 5358-5362, 2015.
A. B. Gade and Patil, N. T., Gold(I)-catalyzed hydroaminaloxylation and petasis-ferrier rearrangement cascade of aminaloalkynes, Organic Letters, vol. 18, no. 8, pp. 1844-1847, 2016.
M. O. Akram, Shinde, P. S., Chintawar, C. C., and Patil, N. T., Gold(I)-catalyzed cross-coupling reactions of aryldiazonium salts with organostannanes, Organic & Biomolecular Chemistry, vol. 16, no. 16, pp. 2865-2869, 2018.
C. Naidu Kona and Ramana, C. V., Gold(I)-catalysed [1,3] O -> C rearrangement of allenyl ethers, Chemical Communications, vol. 50, no. 17, pp. 2152-2154, 2014.
C. Naidu Kona, Patil, M. N., and Ramana, C. V., Gold(I) catalyzed [1,3] O -> C rearrangement of benzylvinyl ethers, Organic Chemistry Frontiers, vol. 3, no. 4, pp. 453-456, 2016.
A. K. Kayastha and Hotha, S., Gold-catalyzed glycosidations: unusual cleavage of the interglycosidic bond while studying the armed/disarmed effect of propargyl glycosides, Tetrahedron Letters, vol. 51, no. 40, pp. 5269-5272, 2010.
S. A. Thadke and Hotha, S., Gold-catalyzed glycosidations: synthesis of 1,6-anhydro saccharides, Tetrahedron Letters, vol. 51, no. 45, pp. 5912-5914, 2010.
P. S. Shinde and Patil, N. T., Gold-catalyzed dehydrazinative C(sp)-S coupling reactions of arylsulfonyl hydrazides with ethynylbenziodoxolones for accessing alkynyl sulfones, European Journal of Organic Chemistry, no. 24, pp. 3512-3515, 2017.
C. C. Chintawar, Mane, M. V., Tathe, A. G., Biswas, S., and Patil, N. T., Gold-catalyzed cycloisomerization of pyridine-bridged 1,8-Diynes: An expedient access to luminescent cycl[3.2.2]azines, Organic Letters, vol. 21, no. 17, pp. 7109-7113, 2019.
V. K. Raj, Dhote, P. S. S., Vanka, K., and Ramana, C. V. V., Gold-catalyzed complementary nitroalkyne internal redox process: a DFT study, Frontiers in Chemistry, vol. 9, p. 689780, 2021.
S. Banerjee, Ambegave, S. B., Mule, R. D., Senthilkumar, B., and Patil, N. T., Gold-catalyzed alkynylative meyer-schuster rearrangement, Organic Letters, vol. 22, no. 12, pp. 4792-4796, 2020.
S. Banerjee, Senthilkumar, B., and Patil, N. T., Gold-catalyzed 1,2-oxyalkynylation of N-Allenamides with ethylnylbenziodoxolones, Organic Letters, vol. 21, no. 1, pp. 180-184, 2019.
P. S. Dhote, Halnor, S. V., and Ramana, C. V., Gold-catalysed nitroalkyne cycloisomerization - synthetic utility, Chemical Record, vol. 21, no. 12, 2021.
A. C. Shaikh, Shinde, D. R., and Patil, N. T., Gold vs rhodium catalysis: tuning reactivity through catalyst control in the C-H alkynylation of isoquinolones, Organic Letters, vol. 18, no. 5, pp. 1056-1059, 2016.
B. Ankamwar, Chaudhary, M., and Sastry, M., Gold nanotriangles biologically synthesized using tamarind leaf extract and potential application in vapor sensing, Synthesis and Reactivity in Inorganic Metal-Organic and Nano-Metal Chemistry, vol. 35, no. 1, pp. 19-26, 2005.
B. L. V. Prasad, Sorensen, C. M., and Klabunde, K. J., Gold nanoparticle superlattices, Chemical Society Reviews, vol. 37, no. 9, pp. 1871-1883, 2008.
D. S. Sidhaye, Kashyap, S., Sastry, M., Hotha, S., and Prasad, B. L. V., Gold nanoparticle networks with photoresponsive interparticle spacings, Langmuir, vol. 21, no. 17, pp. 7979-7984, 2005.
V. Ramtenki, Anumon, V. D., Badiger, M. V., and Prasad, B. L. V., Gold nanoparticle embedded hydrogel matrices as catalysts: better dispersibility of nanoparticles in the gel matrix upon addition of N-bromosuccinimide leading to increased catalytic efficiency, Colloids and Surfaces A-Physicochemical and Engineering Aspects, vol. 414, pp. 296-301, 2012.
S. Iram, Gold nanoconjugates reinforce the potency of conjugated cisplatin and doxorubicin, Colloids and Surfaces B: Biointerfaces, vol. 160, pp. 254-264, 2017.
G. Sureshkumar and Hotha, S., Gold mediated glycosylations: selective activation of propargyl 1,2-orthoesters in the presence of aglycones containing a propargyl moiety, Chemical Communications, no. 36, pp. 4282-4284, 2008.
A. Chandrasek Sekhar and Vinod, C. Prabhakara, Gold incorporated mesoporous silica thin film model surface as a robust SERS and catalytically active substrate, Molecules, vol. 21, no. 5, p. 667, 2016.
S. A. Thadke, Kar, M., Gupta, S. Sen, and Hotha, S., Gold catalyzed glycosidations for the synthesis of sugar acrylate/acrylamide hybrids and their utility, Carbohydrate Research, vol. 346, no. 12, pp. 1511-1518, 2011.

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