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Journal Article
K. R. Kondhare, Patil, N. S., and Banerjee, A. K., Historical overview of long-distance signalling in plants, Journal of Experimental Botany, vol. 72, no. 12, pp. 4218-4236, 2021.
A. Banerjee, Bhatnagar, S., Upadhyay, K. Kumar, Yadav, P., and Ogale, S., Hollow Co0.85Se nanowire array on carbon fiber paper for high rate pseudocapacitor, ACS Applied Materials & Interfaces, vol. 6, no. 21, pp. 18844-18852, 2014.
P. R. Selvakannan and Sastry, M., Hollow gold and platinum nanoparticles by a transmetallation reaction in an organic solution, Chemical Communications, no. 13, pp. 1684-1686, 2005.
N. Chaudhari, Warule, S., Agrawal, S., Thakare, V., Jouen, S., Hannoyer, B., Kale, B., Paknikar, K., and Ogale, S. B., Hollow nanogold/meso-magnetite composite: pulsed laser synthesis, properties, and biosensing application, Journal of Nanoparticle Research, vol. 15, no. 12, p. Article No. UNSP 2081, 2013.
P. Pachfule, Kandmabeth, S., Mallick, A., and Banerjee, R., Hollow tubular porous covalent organic framework (COF) nanostructures, Chemical Communications, vol. 51, no. 58, pp. 11717-11720, 2015.
M. Chandra Sil, Sudhakar, V., Singh, A. Kumar, Kavungathodi, M. Fairoos Me, and Nithyanandhan, J., Homo- and heterodimeric dyes for dye-sensitized solar cells: panchromatic light absorption and modulated open circuit potential, ChemPlusChem, vol. 83, no. 11, pp. 998-1007, 2018.
S. Ahmad Khan, Verma, P., and Parasharami, V. A., Homo and heterologous expression of the HpPKS2 gene in Hypericum perforatum and Bacopa monnieri, Plant Cell Tissue and Organ Culture, no. 1, pp. 215-215, 2022.
A. Kumar, Homogeneous nucleation temperatures in aqueous mixed salt solutions, Journal of Physical Chemistry B, vol. 111, no. 37, pp. 10985-10991, 2007.
C. Panda, Debgupta, J., Diaz, D. Diaz, Singh, K. K., Gupta, S. Sen, and Dhar, B. B., Homogeneous photochemical water oxidation by biuret-modified Fe-TAML: evidence of Fe-V(O) intermediate, Journal of the American Chemical Society, vol. 136, no. 35, pp. 12273-12282, 2014.
C. Panda, Dhar, B. B., Ghosh, M., Malvi, B., Bhattacharjee, Y., and Sengupta, S., Homogeneous water oxidation using peroxidase mimic [Fe-III(biuret-amide)] and analyte detection via signal amplification, Journal of Biological Inorganic Chemistry, vol. 19, p. S557, 2014.
I. Karbhal, Chaturvedi, V., Patrike, A., Yadav, P., and , Honeycomb boron carbon nitride as high-performance anode material for li-ion batteries, ChemNanoMat, vol. 8, no. 7, p. e202200056, 2022.
D. S. Bora, Deka, B., and Sen, A., Host plant selection by larvae of the muga silk moth, antheraea assamensis, and the role of the antenna and maxillary palp, Journal of Insect Science, vol. 13, p. 52, 2013.
V. R. Hande and Chakrabarty, S., How far is ``Bulk Water'' from interfaces? depends on the nature of the surface and what we measure, Journal of Physical Chemistry B, vol. 126, no. 5, pp. 1125-1135, 2022.
K. Y. Nandiwale, Pande, A. M., and Bokade, V. V., HPW anchored Meso-HZ-5, a novel catalyst for selective synthesis of ethyl levulinate biofuel by alcoholysis of biomass-derived furfuryl alcohol, Environmental Progress & Sustainable Energy, vol. 37, no. 5, pp. 1736-1742, 2018.
K. Y. Nandiwale, Pande, A. M., and Bokade, V. V., HPW anchored Meso‐HZ‐5, a novel catalyst for selective synthesis of ethyl levulinate biofuel by alcoholysis of biomass‐derived furfuryl alcohol, Environmental progress and sustainable energy, vol. 37, no. 5, pp. 1736-1742, 2018.
A. K. Ranjan, Kumar, U., Hardikar, A. A., Poddar, P., Nair, P. D., and Hardikar, A. A., Human blood vessel-derived endothelial progenitors for endothelialization of small diameter vascular prosthesis, Plos One, vol. 4, no. 11, p. Article Number: e7718, 2009.
T. M. Jaokar, Patil, D. P., Shouche, Y. S., Gaikwad, S. M., and Suresh, C. G., Human mitochondrial NDUFS3 protein bearing leigh syndrome mutation is more prone to aggregation than its wild-type, Biochimie, vol. 95, no. 12, pp. 2392-2403, 2013.
P. Agarwala, Kumar, S., Pandey, S., and Maiti, S., Human telomeric RNA G-quadruplex response to point mutation in the G-quartets, Journal of Physical Chemistry B, vol. 119, no. 13, pp. 4617-4627, 2015.
M. B. Erande, Pawar, M. S., and Late, D. J., Humidity sensing and photodetection behavior of electrochemically exfoliated atomically thin-layered black phosphorus nanosheets, ACS Applied Materials & Interfaces, vol. 8, no. 18, pp. 11548-11556, 2016.
V. R. Khadse, Thakur, S., Patil, K. R., and Patil, P., Humidity-sensing studies of cerium oxide nanoparticles synthesizedby non-isothermal precipitation, Sensors and Actuators B-Chemical, vol. 203, pp. 229-238, 2014.
N. L. Mulik, Niphadkar, P. S., Pandhare, K. V., and Bokade, V. V., HxZr3-xPW12O40 as an insoluble and reusable heteropolyacid for highly selective dehydration of fructose to 5-hydroxymethyl fufural in DMSO system, Chemistryselect, vol. 3, no. 2, pp. 832-836, 2018.
S. Palvai, Kuman, M. Mahesh, Sengupta, P., and Basu, S., Hyaluronic acid layered chimeric nanoparticles: targeting MAPK-P13K signaling hub in colon cancer cells, ACS Omega, vol. 2, no. 11, pp. 7868-7880, 2017.
A. Guchhait, Rath, A. Kumar, and Pal, A. J., Hybrid core-shell nanoparticles: photoinduced electron-transfer for charge separation and solar cell application, Chemistry of Materials, vol. 21, no. 21, pp. 5292–5299, 2009.
S. H. Chikkali, van der Vlugt, J. Ivar, and Reek, J. N. H., Hybrid diphosphorus ligands in rhodium catalysed asymmetric hydroformylation, Coordination Chemistry Reviews, vol. 262, pp. 1-15, 2014.
D. Ghosh, Hybrid equation-of-motion coupled-cluster/effective fragment potential method: a route toward understanding photoprocesses in the condensed phase, Journal of Physical Chemistry A, vol. 121, no. 4, pp. 741-752, 2017.
D. Srinivas, Gonnade, R. G., Ravindranathan, S., and Sanjayan, G. J., Hybrid foldamer with unique architecture from conformationally constrained aliphatic-aromatic amino acid conjugate, Tetrahedron, vol. 62, no. 43, pp. 10141-10146, 2006.
S. Yadav, Rajpurohit, D., Dash, S. Ranjan, Bhojani, G., Chatterjee, S., and Paital, A. Ranjan, Hybrid material for ferric ion detection & remediation: exceptional selectivity & adsorption capacity with biological applications, Microporous and Mesoporous Materials, vol. 338, p. 111945, 2022.
U. D. Pete, Zade, C. M., Bhosale, J. D., Tupe, S. G., Chaudhary, P. M., Dikundwar, A. G., and Bendre, R. S., Hybrid molecules of carvacrol and benzoyl urea/thiourea with potential applications in agriculture and medicine, Bioorganic & Medicinal Chemistry Letters, vol. 22, no. 17, pp. 5550-5554, 2012.
U. P. Bansode, Naphade, R., Game, O. S., Agarkar, S. A., and Ogale, S., Hybrid perovskite films by a new variant of pulsed excimer laser deposition: a room-temperature dry process, Journal of Physical Chemistry C, vol. 119, no. 17, pp. 9177-9185, 2015.
R. Naphade, Nagane, S., G. Shanker, S., Fernandes, R., Kothari, D., Zhou, Y., Padture, N. P., and Ogale, S., Hybrid perovskite quantum nanostructures synthesized by electrospray antisolvent-solvent extraction and intercalation, ACS Applied Materials & Interfaces, vol. 8, no. 1, pp. 854-861, 2016.
M. M. Pisal, Nawale, L. U., Patil, M., Bhansali, S. G., Gajbhiye, J. M., Sarkar, D., Chavan, S. P., and Borate, H. B., Hybrids of thienopyrimidinones and thiouracils as anti-tubercular agents: SAR and docking studies, European Journal of Medicinal Chemistry, vol. 127, 2017.
K. B. Batkulwar, Jana, A. K., Godbole, R. K., Khandelwal, P., Sengupta, N., and Kulkarni, M. J., Hydralazine inhibits amyloid beta (Aβ) aggregation and glycation and ameliorates Aβ1–42 induced neurotoxicity, RSC Advances, vol. 6, pp. 108768-108776, 2016.
P. Babu, Yang, T., Veluswamy, H. Prakash, Kumar, R., and Linga, P., Hydrate phase equilibrium of ternary gas mixtures containing carbon dioxide, hydrogen and propane, Journal of Chemical Thermodynamics, vol. 61, pp. 58-63, 2013.
A. Arora, Kumar, A., Bhattacharjee, G., Balomajumder, C., and Kumar, P., Hydrate-based carbon capture process: assessment of various packed bed systems for boosted kinetics of hydrate formation, Journal of Energy Resources Technology-Transactions of the ASME, vol. 143, no. 3, p. 033005, 2021.
S. Munirasu, Deshpande, A., and Baskaran, D., Hydrated clay for catalyst removal in copper mediated atom transfer radical polymerization(a), Macromolecular Rapid Communications, vol. 29, no. 18, pp. 1538-1543, 2008.
S. S. Puranik, Joshi, H. M., Ogale, S. B., and Paknikar, K. M., Hydrazine based facile synthesis and ordered assembly of metal nanoparticles (Au, Ag) on a bacterial surface layer protein template, Journal of Nanoscience and Nanotechnology, vol. 8, no. 7, pp. 3565-3569, 2008.
S. Chatterjee, Ghosh, D., Haldar, T., Deb, P., Sakpal, S. S., Deshmukh, S. H., Kashid, S. M., and Bagchi, S., Hydrocarbon chain-length dependence of solvation dynamics in alcohol-based deep eutectic solvents: a two-dimensional infrared spectroscopic investigation, Journal of Physical Chemistry B, vol. 123, no. 44, pp. 9355-9363, 2019.
R. R. Shetty, Raut, S. S., Kulkarni, P. S., and Kamble, S. P., Hydrodechlorination of 4-chloro-2-aminophenol into a recyclable product using Ni- and Cu-based catalysts, Industrial & Engineering Chemistry Research, vol. 61, no. 39, pp. 14433-14445, 2022.
S. Janampelli and Darbha, S., Hydrodeoxygenation of vegetable oils and fatty acids over different group VIII metal catalysts for producing biofuels, Catalysis Surveys From Asia, vol. 23, pp. 90-101, 2019.
P. Jain, Bhandari, V. M., Balapure, K., Jena, J., Ranade, V. V., and Killedar, D. J., Hydrodynamic cavitation using vortex diode: an efficient approach for elimination of pathogenic bacteria from water, Journal of Environmental Management, vol. 242, pp. 210-219, 2019.
A. A. Kulkarni, Gorasia, A. K., and Ranade, V. V., Hydrodynamics and liquid phase residence time distribution in mesh microreactor, Chemical Engineering Science, vol. 62, no. 24, pp. 7484-7493, 2007.
C. A. Shukla, Pal, S., and Kulkarni, A. A., Hydrodynamics and selectivity engineering of a multipoint dosing flow reactor, Industrial & Engineering Chemistry Research, vol. 58, no. 51, p. 22874, 2019.
M. R. Rampure, Kulkarni, A. A., and Ranade, V. V., Hydrodynamics of bubble column reactors at high gas velocity: experiments and computational fluid dynamics (CFD) Simulations, Industrial & Engineering Chemistry Research, vol. 46, no. 25, pp. 8431-8447, 2007.
M. Jose Nieves-Remacha, Kulkarni, A. A., and Jensen, K. F., Hydrodynamics of liquid-liquid dispersion in an advanced-flow reactor, Industrial & Engineering Chemistry Research, vol. 51, no. 50, pp. 16251-16262, 2012.
P. R. Gunjal, Kashid, M. N., Ranade, V. V., and Chaudhari, R. V., Hydrodynamics of trickle-bed reactors: experiments and CFD modeling, Industrial & Engineering Chemistry Research, vol. 44, no. 16, pp. 6278-6294, 2005.
S. B. Atla, Kelkar, A. A., and Chaudhari, R. V., Hydroesterification of 2-vinyl-6-methoxynaphthalene using palladium complexes containing chelating nitrogen ligands, Journal of Molecular Catalysis A-Chemical, vol. 307, no. 1-2, pp. 134-141, 2009.
R. Chansarkar, Kelkar, A. A., and Chaudhari, R. V., Hydroformylation of 1,4-diacetoxy-2-butene using HRh(CO)(PPh3)(3) tethered on alumina as a catalyst: kinetic study, Industrial & Engineering Chemistry Research, vol. 48, no. 21, pp. 9479-9489, 2009.
M. M. Diwakar, Deshpande, R. M., and Chaudhari, R. V., Hydroformylation of 1-hexene using Rh/TPPTS complex exchanged on anion exchange resin: kinetic studies, Journal of Molecular Catalysis A-Chemical, vol. 232, no. 1-2, pp. 179-186, 2005.
A. Sharma, Lebigue, C. Julcour, Deshpande, R. Madhukar, Kelkar, A. A., and Delmas, H., Hydroformylation of 1-octene using [Bmim][PF6]-decane biphasic media and rhodium complex catalyst: thermodynamic properties and kinetic study, Industrial & Engineering Chemistry Research, vol. 49, no. 21, pp. 10698-10706, 2010.
R. Kumar and Chikkali, S. H., Hydroformylation of olefins by metals other than rhodium, Journal of Organometallic Chemistry, vol. 960, p. 122231, 2022.
N. S. Pagar, Deshpande, R. M., and Chaudhari, R. V., Hydroformylation of olefins using dispersed molecular catalysts on solid supports, Catalysis Letters, vol. 110, no. 1-2, pp. 129-133, 2006.
Goudappagouda, Wakchaure, V. C., Ranjeesh, K. C., and Babu, S. S., Hydrogel-derived soft materials for biomimetic and energy-related functions, Australian Journal of Chemistry, vol. 69, no. 1, pp. 2-7, 2016.
M. Dixit, Major, D. Thomas, and Pal, S., Hydrogen adsorption in ZIF-7: A DFT and ab-initio molecular dynamics study, Chemical Physics Letters, vol. 651, pp. 178-182, 2016.
D. Manzoor and Pal, S., Hydrogen atom chemisorbed gold clusters as highly active catalysts for oxygen activation and co oxidation, Journal of Physical Chemistry C, vol. 118, no. 51, pp. 30057-30062, 2014.
S. Verma, Aute, S., Das, A., and Ghosh, H. N., Hydrogen bond and ligand dissociation dynamics in fluoride sensing of Re(I)-polypyridyl complex, Journal of Physical Chemistry B, vol. 119, no. 47, pp. 14952-14958, 2015.
A. Dey, Dana, J., Aute, S., Das, A., and Ghosh, H. N., Hydrogen bond assisted photoinduced intramolecular electron transfer and proton coupled electron transfer in an ultrafast time domain using a ruthenium-anthraquinone dyad, Photochemical & Photobiological Sciences, vol. 18, no. 10, pp. 2430-2441, 2019.
V. A. Kawade, Kumbhar, A. S., Erxleben, A., Pachfule, P., and Banerjee, R., Hydrogen bond directed honeycomb-like porous network structure of tris (bipyridyl-glycoluril)cobalt(III) chloride, Crystengcomm, vol. 13, no. 17, pp. 5289-5291, 2011.
S. Varughese and Pedireddi, V. R., Hydrogen bond mediated open-frame networks in coordination polymers: supramolecular assemblies of Pr(III) and 3,5-dinitro-4-methylbenzoic acid with aza-donor compounds, Chemical Communications, no. 14, pp. 1824-1826, 2005.
V. D. Deepak, Rajan, J., and Asha, S. K., Hydrogen bonding and rate enhancement in the photoinduced polymerization of telechelic urethane methacrylates based on a cycloaliphatic system: tricyclodecane dimethanol, Journal of Polymer Science Part A-Polymer Chemistry, vol. 44, no. 15, pp. 4384–4395, 2006.
N. R. Mote and Chikkali, S. H., Hydrogen bonding assissted supramolecular metal catalysis, Chemistry - an Asian Journal , vol. 13, no. 23, pp. 3623-3646, 2018.
S. S. Satav, Karmalkar, R. N., Kulkarni, M. G., Mulpuri, N., and G. Sastry, N., Hydrogen bonding in trivinyl monomers: implications for inclusion complexation and polymerization, Macromolecules, vol. 40, no. 6, pp. 1824-1830, 2007.
H. Agarwalla, Jana, K., Maity, A., Kesharwani, M. K., Ganguly, B., and Das, A., Hydrogen bonding interaction between active methylene hydrogen atoms and an anion as a binding motif for anion recognition: experimental studies and theoretical rationalization, Journal of Physical Chemistry A, vol. 118, no. 14, pp. 2656–2666, 2014.
M. S. Deshpande, Kumbhar, A. S., and Puranik, V. G., Hydrogen bonding-directed metallosupramolecular structural motifs based on a peripheral urea fused bipyridine tecton, Crystal Growth & Design, vol. 8, no. 6, pp. 1952-1960, 2008.
P. A. Mangrulkar, Joshi, M. V., Kamble, S. P., Labhsetwar, N. K., and Rayalu, S. S., Hydrogen evolution by a low cost photocatalyst: bauxite residue, International Journal of Hydrogen Energy, vol. 35, no. 20, pp. 10859-10866, 2010.
A. Bajpai, Mehta, S., Joshi, K., and Kumar, S., Hydrogen from catalytic non-thermal plasma-assisted steam methane reforming reaction, International Journal of Hydrogen Energy, vol. 48, no. 63, pp. 24328-24341, 2023.
G. R. Kale and Kulkarni, B. D., Hydrogen generation with CO2 utilization: a solvay cluster study, International Journal of Hydrogen Energy, vol. 38, no. 6, pp. 2624-2633, 2013.
V. R. Choudhary and Samanta, C., Hydrogen peroxide formation in the interaction of oxygen with boron-containing Pd catalysts prereduced by hydrazine in aqueous acidic medium containing bromide anions, Catalysis Letters, vol. 99, no. 1-2, pp. 79-81, 2005.
A. Jha, Jeong, D. - W., Shim, J. - O., Jang, W. - J., Lee, Y. - L., Rode, C. V., and Roh, H. - S., Hydrogen production by the water-gas shift reaction using CuNi/Fe2O3 catalyst, Catalysis Science & Technology, vol. 5, no. 5, pp. 2752-2760, 2015.
G. Nahar, Mote, D., and Dupont, V., Hydrogen production from reforming of biogas: review of technological advances and an Indian perspective, Renewable and Sustainable Energy Reviews, vol. 76, pp. 1032-1052, 2017.
M. Y. Khan, Joshi, S. S., and Ranade, V. V., Hydrogen solubility in biphasic liquid reaction mixture of cinnamaldehyde hydrogenation: experimental and mathematical modeling study, Journal of Chemical Sciences, vol. 134, no. 1, p. 1, 2022.
H. Prakash Veluswamy, Kumar, R., and Linga, P., Hydrogen storage in clathrate hydrates: Current state of the art and future directions, Applied Energy, vol. 122, pp. 112-132, 2014.
J. M. Nadgeri, Telkar, M. M., and Rode, C. V., Hydrogenation activity and selectivity behavior of supported palladium nanoparticles, Catalysis Communications, vol. 9, no. 3, pp. 441-446, 2008.
A. S. Nagpure, Gurrala, L., Gogoi, P., and Chilukuri, S. V., Hydrogenation of cinnamaldehyde to hydrocinnamaldehyde over Pd nanoparticles deposited on nitrogen-doped mesoporous carbon, RSC Advances, vol. 6, no. 50, pp. 44333-44340, 2016.
V. R. Choudhary, Samanta, C., and Jana, P., Hydrogenation of hydrogen peroxide over palladium/carbon in aqueous acidic medium containing different halide anions under static/flowing hydrogen, Industrial & Engineering Chemistry Research, vol. 46, no. 10, pp. 3237-3242, 2007.
P. A. Kamble, Vinod, C. P., Rathod, V. K., and Kantam, M. Lakshmi, Hydrogenation of levulinic acid to gamma-valerolactone over nickel supported organoclay catalyst, Catalysis Today, vol. 408, pp. 36-49, 2023.
E. Balaraman and Milstein, D., Hydrogenation of polar bonds catalysed by ruthenium-pincer complexes, Ruthenium in Catalysis, vol. 48, pp. 19-43, 2014.
A. Karmakar, Illathvalappil, R., Anothumakkool, B., Sen, A., Samanta, P., Desai, A. V., Kurungot, S., and Ghosh, S. K., Hydrogen-bonded organic frameworks (HOFs): a new class of porous crystalline proton-conducting materials, Angewandte Chemie-International Edition, vol. 55, no. 36, pp. 10667-10671, 2016.
N. R. Mote and Chikkali, S. H., Hydrogen-bonding-assisted supramolecular metal catalysis, Chemistry-An Asian Journal, vol. 13, no. 23, pp. 3623-3646, 2018.
B. Jancy and Asha, S. K., Hydrogen-bonding-induced conformational change from J to H aggregate in novel highly fluorescent liquid-crystalline perylenebisimides, Chemistry of Materials, vol. 20, no. 1, pp. 169–181, 2008.
Y. Hiraishi, Minakawa, N., Taniguchi, K., Nagasawa, Y., Nanao, H., ,, Sato, O., Yamaguchi, A., and Shirai, M., Hydrogenolysis of benzofuran using aqueous ethanol solution over graphite-supported platinum catalyst, Journal of the Indian Chemical Society, vol. 98, no. 2, p. 100021, 2021.
S. Bhowmik, Enjamuri, N., and Darbha, S., Hydrogenolysis of glycerol in an aqueous medium over Pt/WO3/zirconium phosphate catalysts studied by H-1 NMR spectroscopy, New Journal of Chemistry, vol. 45, no. 11, pp. 5013-5022, 2021.
M. Banu, Sankaranarayanan, T. M., Venuvanalingam, P., Magesh, G., and Sivasanker, S., Hydrogenolysis of sorbitol over Ni, Pt and Ru supported on SBA-15, Indian Journal of Chemistry. Section A: Inorganic, Physical, Theoretical & Analytical Chemistry, vol. 56 , no. 2, pp. 226-231, 2017.
R. Singh, Varma, A., Laxman, R. Seeta, and Rao, M., Hydrolysis of cellulose derived from steam exploded bagasse by penicillium cellulases: comparison with commercial cellulase, Bioresource Technology, vol. 100, no. 24, pp. 6679-6681, 2009.
J. K. Satyarthi, Srinivas, D., and Ratnasamy, P., Hydrolysis of vegetable oils and fats to fatty acids over solid acid catalysts, Applied Catalysis A-General, vol. 391, no. 1-2 , pp. 427-435, 2011.
A. Mallick, Garai, B., Diaz, D. Diaz, and Banerjee, R., Hydrolytic conversion of a metal-organic polyhedron into a metal-organic framework, Angewandte Chemie-International Edition, vol. 52, no. 51, pp. 13755-13759, 2013.
P. Kumar and Gupta, P., Hydrolytic kinetic resolution as an emerging tool in the synthesis of bioactive molecules, Synlett, no. 9, pp. 1367-1382, 2009.
K. Nabeela, Thorat, M., Sumina, N. B., Ramachandran, A. M., Thomas, R. Thankam, Preethikumar, G., A. Mohamed, P., Asok, A., Dastager, S. Gulam, and Pillai, S., Hydrophilic 3D interconnected network of bacterial nanocellulose/black titania photothermal foams as an efficient interfacial solar evaporator, ACS Applied Bio Materials, vol. 4, no. 5, pp. 4373–4383, 2021.
M. K. Singh, Xu, R., Moebs, S., Kumar, A., Queneau, Y., Cowling, S. J., and Goodby, J. W., Hydrophobic and hydrophilic balance and its effect on mesophase behaviour in hydroxyalkyl ethers of methyl glucopyranoside, Chemistry-A European Journal, vol. 19, no. 16, pp. 5041-5049, 2013.
D. Sarma and Kumar, A., Hydrophobic effects are dominant over secondary orbital interactions for a simple Diels-Alder reaction in salt solutions, Organic Letters, vol. 8, no. 10, pp. 2199-2202, 2006.
D. Sarma, Pawar, S. S., Deshpande, S. S., and Kumar, A., Hydrophobic effects in a simple Diels-Alder reaction in water, Tetrahedron Letters, vol. 47, no. 23, pp. 3957-3958, 2006.
S. R. Khairkar, ,, Shedge, A. A., Chhatre, S. Y., Suresh, A. K., Chakrabarti, S., Patil, V. R., and Nagarkar, A. A., Hydrophobic interpenetrating polyamide-PDMS membranes for desalination, pesticides removal and enhanced chlorine tolerance, Chemosphere, vol. 258, p. 127179, 2020.
P. Sree Sreeprasanth, Srivastava, R., Srinivas, D., and Ratnasamy, P., Hydrophobic, solid acid catalysts for production of biofuels and lubricants, Applied Catalysis A-General, vol. 314, no. 2, pp. 148-159, 2006.
A. B. Kulal, Kasabe, M. M., Jadhav, P. V., Dongare, M. K., and Umbarkar, S. B., Hydrophobic WO3/SiO2 catalyst for the nitration of aromatics in liquid phase, Applied Catalysis A-General, vol. 574, pp. 105-113, 2019.
A. S. Shedge, Lele, A. K., Wadgaonkar, P. P., Hourdet, D., Pcrrin, P., Chassenieux, C., and Badiger, M. V., Hydrophobically modified poly(acrylic acid) using 3-pentadecylcyclohexylamine: synthesis and rheology, Macromolecular Chemistry and Physics, vol. 206, no. 4, pp. 464-472, 2005.
A. S. Shedge, Wadgaonkar, P. P., Lele, A. K., and Badiger, M. V., Hydrophobically modified poly(vinyl alcohol) using alkoxy-substituted methyl gallate: synthesis and rheology, Journal of Polymer Science Part B-Polymer Physics, vol. 48, no. 10, pp. 1054-1063, 2010.
E. Balaraman, Srinivas, V., and Swamy, K. C. Kumara, Hydrophosphonylation of activated alkenes and alkynes via fluoride ion activation in ionic liquid medium, Tetrahedron, vol. 65, no. 35, pp. 7603–7610, 2009.
N. T. Shelke, Karle, S. C., and Karche, B. R., Hydrothermal growth and humidity-dependent electrical properties of molybdenum disulphide nanosheets, Journal of Nanoscience and Nanotechnology, vol. 19, no. 8, pp. 5158-5166, 2019.
N. T. Shelke and Late, D. J., Hydrothermal growth of MoSe2 nanoflowers for photo- and humidity sensor applications, Sensors and Actuators A-Physical, vol. 295, pp. 160-168, 2019.
P. N. Bhagat, Patil, K. R., Bodas, D. S., and Paknikar, K. M., Hydrothermal synthesis and characterization of carbon nanospheres: a mechanistic insight, RSC Advances, vol. 5, no. 73, pp. 59491-59494, 2015.
T. R. Gaydhankar, Samuel, V., and Joshi, P. N., Hydrothermal synthesis of MCM-41 using differently manufactured amorphous dioxosilicon sources, Materials Letters, vol. 60, no. 7, pp. 957-961, 2006.

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