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I
A. Singh, Chauhan, N. Singh, Thulasiram, H. V., Taneja, V., and Sharma, R., Identification of two flavin monooxygenases from an effluent treatment plant sludge metagenomic library, Bioresource Technology, vol. 101, no. 21, pp. 8481-8484, 2010.
B. Baby, Dey, K. K., Ajithkumar, T. G., and Joy, P. A., Identification of the Zn substitution sites in La-Zn substituted SrAl12O19 from Al-27 solid-state NMR studies, Journal of the American Ceramic Society, vol. 97, no. 9, pp. 2990-2995, 2014.
P. Ganguli, Choudhury, S., Choudhury, S., and Sarkar, R. Rup, Identification of Th1/Th2 regulatory switch to promote healing response during Leishmaniasis: a computational approach, EURASIP Journal on Bioinformatics and Systems Biology, vol. 1, 2015.
E. Viswanathan, Kanjilal, D., Sivaji, K., and Ganapathy, S., Identification of sublattice damages in swift heavy ion irradiated N-doped 6H-SiC polytype studied by solid state NMR, Journal of Physical Chemistry B, vol. 115, no. 24, pp. 7766-7772, 2011.
A. M. Korwar, Santhakumari, B., and Kulkarni, M. J., Identification of ripening specific proteins in tomato by intact tissue MALDI-TOF-MS., Electronic Journal of Food and Plants Chemistry, vol. 3, pp. 10-13, 2008.
R. Bhowmick and Sarkar, R. Rup, Identification of potential microRNAs regulating metabolic plasticity and cellular phenotypes in glioblastoma, Molecular Genetics and Genomics, vol. 298, pp. 161-181, 2023.
V. Nalla, Shaikh, A., Bapat, S., Vyas, R., Karthikeyan, M., Yogeeswari, P., Sriram, D., and Muthukrishnan, M., Identification of potent chromone embedded [1,2,3]-triazoles as novel anti-tubercular agents, Royal Society Open Science, vol. 5, no. 4, p. Article Number: 171750, 2018.
K. Mangai Muthukumarasamy, Handore, K. L., Kakade, D. N., Shinde, M. V., Ranjan, S., Kumar, N., Sehrawat, S., Sachidanandan, C., and D. Reddy, S., Identification of noreremophilane-based inhibitors of angiogenesis using zebrafish assays, Organic & Biomolecular Chemistry, vol. 14, no. 5, pp. 1569-1578, 2016.
S. Karnik, Mitra, J., Singh, A., Kulkarni, B. D., Sundarajan, V., and Jayaraman, V. K., Identification of N-glycosylation sites with sequence and structural features employing random forests, Pattern Recognition and Machine Intelligence, Proceedings, vol. 5909, pp. 146-151, 2009.
A. S. Kulkarni, Dash, A., Shingare, R. D., Chand, J., Manhas, D., Singh, A., Nandi, U., Goswami, A., and D. Reddy, S., Identification of new modulator of DNA repairing pathways based on natural product (±)-peharmaline A, Bioorganic & Medicinal Chemistry, vol. 91, p. 117365, 2023.
S. Chandra Philkhana, Verma, A. Kumar, Jachak, G. R., Hazra, B., Basu, A., and D. Reddy, S., Identification of new anti-inflammatory agents based on nitrosporeusine natural products of marine origin, European Journal of Medicinal Chemistry, vol. 135, pp. 89-109, 2017.
M. I. Tamboli, Krishnaswamy, S., Gonnade, R. G., and Shashidhar, M. S., Identification of molecular crystals capable of undergoing an acyl-transfer reaction based on intermolecular interactions in the crystal lattice, Chemistry-A European Journal, vol. 19, no. 38, pp. 12867-12874, 2013.
G. Gurjar, Barve, M., Giri, A. P., and Gupta, V., Identification of Indian pathogenic races of fusarium oxysporum f. sp ciceris with gene specific, ITS and random markers, Mycologia, vol. 101, no. 4, pp. 484-495, 2009.
A. Ghosh, Pandey, S. Prakash, Joshi, D. Chandra, Rana, P., Ansari, A. Hussain, Sundar, J. Seematti, Singh, P., Khan, Y., Ekka, M. Krishna, Chakraborty, D., and Maiti, S., Identification of G-quadruplex structures in MALAT1 lncRNA that interact with nucleolin and nucleophosmin, Nucleic Acids Research, vol. 51, no. 17, pp. 9415-9431, 2023.
S. Karnik, Prasad, A., Diwevedi, A., Sundararajan, V., and Jayaraman, V. K., Identification of defensins employing recurrence quantification analysis and random forest classifiers, Pattern Recognition and Machine Intelligence, Proceedings, vol. 5909, pp. 152-157, 2009.
O. C. Kulkarni, Vigneshwar, R., Jayaraman, V. K., and Kulkarni, B. D., Identification of coding and non-coding sequences using local holder exponent formalism, Bioinformatics, vol. 21, no. 20, pp. 3818-3823, 2005.
D. Sengupta and Chattopadhyay, A., Identification of cholesterol binding sites in the serotonin(1A) receptor, Journal of Physical Chemistry B, vol. 116, no. 43, pp. 12991-12996, 2012.
D. Raju, Siddiqui, E. Ahmad, Prasanth, S., Khan, B. M., Mehta, U. J., and Ahmad, A., Identification of biomolecules involved in the biosynthesis of gold nanoparticles from living peanut seedlings, Journal of Nanoscience and Nanotechnology, vol. 17, no. 3, pp. 1787-1795, 2017.
A. Khan and Sarkar, D., Identification of a respiratory-type nitrate reductase and its role for survival of mycobacterium smegmatis in wayne model, Microbial Pathogenesis, vol. 41, no. 2-3, pp. 90-95, 2006.
A. S. Kulkarni, Ramesh, R., Walia, S., Sayyad, S. I., Gathalkar, G. B., Balamkundu, S., Joshi, M., Sen, A., and D. Reddy, S., Identification of a novel series of potent organosilicon mosquito repellents, ACS Omega, vol. 6, no. 46, pp. 31236-31243, 2021.
A. Cutignano, Seetharamsingh, B., D'Angelo, D., Nuzzo, G., Khairnar, P. V., Fusco, A., D. Reddy, S., and Fontana, A., Identification and synthesis of mycalol analogues with improved potency against anaplastic thyroid carcinonia cell lines, Journal of Natural Products, vol. 80, no. 4, pp. 1125-1133, 2017.
M. Tellis, Mathur, M., Gurjar, G., Kadoo, N., and Gupta, V., Identification and functionality prediction of pathogenesis-related protein 1 from legume family, Proteins-Structure Function and Bioinformatics, vol. 85, no. 11, pp. 2066-2080, 2017.
P. R. Lomate, Mahajan, N. S., Kale, S. M., Gupta, V. S., and Giri, A. P., Identification and expression profiling of helicoverpa armigera microRNAs and their possible role in the regulation of digestive protease genes, Insect Biochemistry and Molecular Biology, vol. 54, pp. 129-137, 2014.
S. Parmar, Gharat, S. Ashruba, Tagirasa, R., Chandra, T., Behera, L., Dash, S. Kumar, and Shaw, B. Prasad, Identification and expression analysis of miRNAs and elucidation of their role in salt tolerance in rice varieties susceptible and tolerant to salinity, PloS One, vol. 15, no. 4, p. e0230958, 2020.
L. Taher, Narlikar, L., and Ovcharenko, I., Identification and computational analysis of gene regulatory elements, Cold Spring Harbor Protocols, vol. 1, 2015.
M. Goldsmith, Barad, S., Knafo, M., Savidor, A., Ben-Dor, S., Brandis, A., Mehlman, T., Peleg, Y., Albeck, S., Dym, O., Ben-Zeev, E., Barbole, R. S., Aharoni, A., and Reich, Z., Identification and characterization of the key enzyme in the biosynthesis of the neurotoxin beta-ODAP in grass pea, Journal of Biological Chemistry, vol. 298, no. 5, p. 101806, 2022.
S. S. Deshpande, Joshi, J. B., V. Kumar, R., and Kulkarni, B. D., Identification and characterization of flow structures in chemical process equipment using multiresolution techniques, Chemical Engineering Science, vol. 63, no. 21, pp. 5330-5346, 2008.
G. V. Bhosekar, Murali, C., Gonnade, R. G., Shashidhar, M. S., and Bhadbhade, M. M., Identical molecular strings woven differently by intermolecular interactions in dimorphs of myo-inositol 1,3,5-orthobenzoate, Crystal Growth & Design, vol. 5, no. 5, pp. 1977-1982, 2005.
A. Patrike, Kaniyamparambil, K., Wahid, M., Chaturvedi, V., and Shelke, M., Ice-colloidal templated carbon host for highly efficient, dendrite free Li metal anode, Carbon, vol. 179, pp. 256-265, 2021.
G. Kumaraswamy, Suresh, K., Lama, H., Basavaraj, M. G., and Satapathy, D. K., Ice templated nanocomposites containing rod-like hematite particles: Interplay between particle anisotropy and particle-matrix interactions, Journal of Applied Physics, vol. 128, no. 3, p. 034702, 2020.
P. K. Prasad, Kalshetti, R. G., Reddi, R. N., Kamble, S. P., and Sudalai, A., I-2-mediated regioselective C-3 azidation of indoles, Organic & Biomolecular Chemistry, vol. 14, no. 11, pp. 3027-3030, 2016.
T. Choudhuri, Paul, S., Sikdar, P., Das, S., Sawant, S. D., and Bagdi, A. Kumar, I2-catalyzed three-component synthesis of 3-selenylated pyrazolo[1,5-a]pyrimidines, New Journal of Chemistry, vol. 48, no. 21, pp. 9480-9485, 2024.
R. N. Reddi, Prasad, P. K., and Sudalai, A., I-2-catalyzed regioselective Oxo- and hydroxy-acyloxylation of alkenes and enol ethers: a facile access to alpha-acyloxyketones, esters, and diol derivatives, Organic Letters, vol. 16, no. 21, pp. 5674-5677, 2014.
H
Y. B. Sawane, Datar, S., Ogale, S. B., and Banpurkar, A. G., Hysteretic DC electrowetting by field-induced nano-structurations on polystyrene films, Soft Matter, vol. 11, no. 13, pp. 2655-2664, 2015.
M. V. Sardeshpande, Juvekar, V. A., and Ranade, V. V., Hysteresis in cloud heights during solid suspension in stirred tank reactor: experiments and CFD simulations, Aiche Journal, vol. 56, no. 11, pp. 2795-2804, 2010.
H. Kalita, Harikrishnan, V., Shinde, D. B., Pillai, V. K., and Aslam, M., Hysteresis and charge trapping in graphene quantum dots, Applied Physics Letters, vol. 102, no. 14, p. 143104, 2013.
N. Sridevi, Vishwe, P., and Prabhune, A., Hypocholesteremic effect of bile salt hydrolase from Lactobacillus buchneri ATCC 4005, Food Research International, vol. 42, no. 4, pp. 516-520, 2009.
B. D. Rupanawar, Mane, K. D., and Suryavanshi, G., Hypervalent-iodine-mediated oxidation followed by the acetoxylation/tosylation of alpha-substituted benzylamines to obtain alpha-acyloxy/tosyloxy ketones, New Journal of Chemistry, vol. 46, no. 35, pp. 16832-16839, 2022.
V. Ramavath, Rupanawar, B. D., More, S. G., Bansode, A. H., and Suryavanshi, G., Hypervalent iodine(iii) induced oxidative olefination of benzylamines using Wittig reagents, New Journal of Chemistry, vol. 45, no. 19, pp. 8806-8813, 2021.
N. Kulkarni-Dwivedi, Patel, P. R., V. Shravage, B., Umrani, R. D., Paknikar, K. M., and Jadhav, S. H., Hyperthermia and doxorubicin release by Fol-LSMO nanoparticles induce apoptosis and autophagy in breast cancer cells, Nanomedicine, vol. 17, no. 25, pp. 1929-1949, 2022.
K. Gour, Bisai, M. Kumar, and Sen, S. S., Hypersilyl substituent in heavier low-valent group 14 chemistry, European Journal of Inorganic Chemistry, vol. 2022, no. 11, p. e202200071, 2022.
U. Khisti, Bastawade, K. B., and Gokhale, D. V., Hyper-production of beta-glucosidase and beta-xylosidase by aspergillus niger NCIM 1207 In Xylan-Containing Media, Bioresources, vol. 6, no. 2, pp. 2066-2076, 2011.
S. Mane, Ponrathnam, S., and Chavan, N., Hyperhydrophilic three-dimensional crosslinked beads as an effective drug carrier in acidic medium: adsorption isotherm and kinetics appraisal, New Journal of Chemistry, vol. 39, no. 5, pp. 3835-3844, 2015.
P. Anilkumar and Jayakannan, M., Hydroxyl-functionalized polyaniline nanospheres: tracing molecular interactions at the nanosurface via vitamin C sensing, Langmuir, vol. 24, no. 17, pp. 9754-9762, 2008.
A. Kumar and Srinivas, D., Hydroxylation of phenol with hydrogen peroxide catalyzed by Ti-SBA-12 and Ti-SBA-16, Journal of Molecular Catalysis A-Chemical, vol. 368, pp. 112-118, 2013.
A. Mishra, Hydroxyl radical generation in mycobacterial cell is an essential process for breaking dormancy and maintenance of active state by stepwise metabolic shift, Free Radical Biology and Medicine, vol. 65, p. S146, 2013.
S. Paula and Bhattacharya, A. K., Hydroxyl directed C-arylation: synthesis of 3-hydroxyflavones and 2-phenyl-3-hydroxy pyran-4-ones under transition-metal free conditions, Organic & Biomolecular Chemistry, vol. 16, no. 3, pp. 444-451, 2018.
A. Indra, Gopinath, C. S., Bhaduri, S., and Lahiri, G. Kumar, Hydroxyapatite supported palladium catalysts for suzuki-miyaura cross-coupling reaction in aqueous medium, Catalysis Science & Technology, vol. 3, no. 6, pp. 1625-1633, 2013.
A. C. Garade, Niphadkar, P. S., Joshi, P. N., and Rode, C. V., Hydroxyalkylation of p-Cresol to 2,2 `-methylenebis(4-methylphenol) using Sn/Si-MCM-41 catalysts, Chemistry Letters, vol. 39, no. 2, pp. 126-127, 2010.
D. Rase, Illathvalappil, R., Singh, H. Dev, Shekhar, P., Leo, L. S., Chakraborty, D., Haldar, S., Shelke, A., Ajithkumar, T. G., and Vaidhyanathan, R., Hydroxide ion-conducting viologen-bakelite organic frameworks for flexible solid-state zinc-air battery applications, Nanoscale Horizons, vol. 8, no. 2, pp. 224-234, 2023.
R. Vellacheri, Pillai, V. K., and Kurungot, S., Hydrous RuO2-carbon nanofiber electrodes with high mass and electrode-specific capacitance for efficient energy storage, Nanoscale, vol. 4, no. 3, pp. 890-896, 2012.
P. Pratim Das, Roy, A., Agarkar, S., and Devi, P. Sujatha, Hydrothermally synthesized fluorescent Zn2SnO4 nanoparticles for dye sensitized solar cells, Dyes and Pigments, vol. 154, pp. 303-313, 2018.
M. Kumar Chini and Chatterjee, S., Hydrothermally reduced nano porous graphene–polyaniline nanofiber composites for supercapacitor, FlatChem, vol. 1, pp. 1-5, 2017.
N. T. Shelke and Karche, B. R., Hydrothermal synthesis of WS2/RGO sheet and their application in UV photodetector, Journal of Alloys and Compounds, vol. 653, pp. 298-303, 2015.
R. Aher, Bhorde, A., Sharma, P., Nair, S., Borate, H., Pandharkar, S., Rondiya, S., Chaudhary, M., Gopinath, C., Suryawanshi, S., More, M., and Jadkar, S., Hydrothermal synthesis of rGO-PbBi2Se4 composite and investigation of its structural, chemical and field emission properties, Journal of Materials Science-Materials in Electronics, vol. 29, no. 12, pp. 10494-10503, 2018.
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.
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.
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.
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.
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.
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.
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 and Badiger, M. V., Hydrophobically Modified Chitosan, in Hydrophobically Modified Chitosan, vol. 19, 2014, pp. 91-102.
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.
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.
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.
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.
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.
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.
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.
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.
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.
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.
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.
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.
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.
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.
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.
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.
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.
E. Balaraman and Milstein, D., Hydrogenation of polar bonds catalysed by ruthenium-pincer complexes, Ruthenium in Catalysis, vol. 48, pp. 19-43, 2014.
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.
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 glucose to sorbitol by using nickel hydroxyapatite catalyst, Chemcatchem, vol. 16, no. 9, 2024.
P. A. Kamble, Vinod, C. P., Rathod, V. K., and Kantam, M. Lakshmi, Hydrogenation of furfural to tetrahydrofurfuryl alcohol over nickel-supported on organoclay catalyst, Applied Catalysis A-General, vol. 674, p. 119621, 2024.
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.
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.
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.
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.
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.
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.
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.
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.
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.
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.
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.
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.
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.
R. Thakuria, Sarma, B., and Nangia, A., Hydrogen bonding in molecular crystals, in Comprehensive Supramolecular Chemistry II, vol. 7, Singapur: Elsevier Inc., 2017, pp. 25-48.
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.

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