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A.  Pande, Niphadkar, P., Pandare, K., and Bokade, V., ?Acid modified H-USY zeolite for efficient catalytic transformation of fructose to 5-hydroxymethyl furfural (biofuel precursor) in methyl isobutyl ketone-water biphasic system?, Energy Fuels, vol. 32, no. 3, pp. 3783?3791, 2018.\par \par J.  Heda, Niphadkar, P., and Bokade, V., ?Efficient synergetic combination of H-USY and SnO2 for direct conversion of glucose into ethyl levulinate (Biofuel Additive)?, Energy & Fuels, vol. 33, no. 3, pp. 2319-2327, 2019.\par \par V.  Bokade, Moondra, H., and Niphadkar, P., ?Highly active Br\'f8nsted acidic silicon phosphate catalyst for direct conversion of glucose to levulinic acid in MIBK?water biphasic system?, SN Applied Sciences, vol. 2, no. 1, p. Article number: 51, 2020.\par \par J.  Heda, Niphadkar, P., Mudliar, S., and Bokade, V., ?Highly efficient micro-meso acidic H-USY catalyst for one step conversion of wheat straw to ethyl levulinate (biofuel additive)?, Microporous and Mesoporous Materials, vol. 306, p. 110474, 2020.\par \par A.  Gupta, Nandanwar, S. U., Niphadkar, P., Simakova, I., and Bokade, V., ?Maximization of furanic compounds formation by dehydration and hydrogenation of xylose in one step over SO3-H functionalized H-beta catalyst in alcohol media?, Biomass & Bioenergy, vol. 139, p. 105646, 2020.\par \par R. Murlidhar Sonkar, Gade, P. Savata, Bokade, V., Mudliar, S. N., and Bhatt, P., ?Ozone assisted autohydrolysis of wheat bran enhances xylooligosaccharide production with low generation of inhibitor compounds: a comparative study?, Bioresource Technology, vol. 338, p. 125559, 2021.\par \par R.  Anil, Niphadkar, P., and Bokade, V., ?Hierarchical TS-1 for epoxidation of non-edible Karanja (Millettia pinnata) oil methyl ester to methyl epoxioleate (biodiesel additive) in presence of H2O2 as oxidizing agent?, Environmental Progress & Sustainable Energy, vol. 41, no. 3, p. e13766, 2022.\par \par N.  Mulik and Bokade, V., ?Immobilization of HPW on UiO-66-NH2 MOF as efficient catalyst for synthesis of furfuryl ether and alkyl levulinate as biofuel?, Molecular Catalysis, vol. 531, p. 112689, 2022.\par \par M.  Shahabazuddin, Banuvalli, B. Karibasapp, Mulik, N., Pande, A., Bokade, V., and Mudliar, S. Narayan, ?Comparative studies of the influence of particle size on various pretreatments of rice husk by assessment of chemical and structural components and wastewater characteristics of liquid fraction?, Biomass Conversion and Biorefinery, vol. 13, no. 6, 2023.\par \par J.  Heda, Niphadkar, P., Nandanwar, S., and Bokade, V., ?Effect of acidity and mesoporosity in H-USY on conversion of wheat straw to ethyl levulinate (Biofuel additive)?, Journal of the Indian Chemical Society, vol. 100, p. 100883, 2023.\par \par O. K.  Siakpebru, Uchagawkar, A., Gurrala, L., Bartlett, J., Adamson, P., Gorschak, N., Hassiba, A., Niphadkar, P., Bokade, V., and Morais, A. Rita C., ?One-pot production of liquid hydrocarbons by catalytic hydrodeoxygenation of lignocellulosic biomass using nickel loaded on zeolite-based supports?, Energy & Fuels, vol. 38, no. 14, pp. 13029-13038, 2024.\par \par G.  Londhe, Bokade, V., and Gnanaprakasam, B., ?Continuous flow ?-zeolite catalysed regioselective alkylation of naphthols using alcohols for synthesis of peroxynaphthalen-2(1H)-one, Azidonaphthalen-2(1H)-one and Fluoronaphthalen-2(1H)-one derivatives?, Asian Journal of Organic Chemistry, vol. 14, no. 4, 2025.\par \par }