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S. Nanjundaiah, Chidambaram, H., Chandrashekar, M., and Chinnathambi, S., Role of microglia in regulating cholesterol and tau pathology in alzheimer's disease, Cellular and Molecular Neurobiology, 2020.
S. V. Awate, Deshpande, S. S., Rakesh, K., Dhanasekaran, P., and Gupta, N. M., Role of micro-structure and interfacial properties in the higher photocatalytic activity of TiO2-supported nanogold for methanol-assisted visible-light-induced splitting of water, Physical Chemistry Chemical Physics, vol. 13, no. 23, pp. 11329-11339, 2011.
E. S. Gnanakumar, Naik, J. Madhusudha, Manikandan, M., Raja, T., and Gopinath, C. S., Role of nanointerfaces in Cu- and Cu plus Au-based near-ambient-temperature CO oxidation catalysts, ChemCatChem, vol. 6, no. 11, pp. 3116-3124, 2014.
V. Poornima, Mohan, S., and Uma, T. Sivagnanam, Role of Nd3+ concentration on the microstructure and scintillation behaviour of langbeinite sulphate (vol 284, 128997, 2021), Materials Letters, vol. 290, p. 129472, 2021.
V. Poornima, Mohan, S., and Uma, T. Sivagnanam, Role of Nd3+ concentration on the microstructure and scintillation behaviour of langbeinite sulphate, Materials Letters, vol. 284, no. 2, p. 128997, 2021.
L. Korampattu, Barik, S., Pandikassala, A., Urkude, R. R., Kurungot, S., and Dhepe, P. L., Role of nitrogen doping in modulating ruthenium nanocatalysts for enhanced electrochemical hydrogen evolution reaction in alkaline medium, Chemistry of Materials , vol. 36, no. 9, pp. 4262-4274, 2024.
S. Radhakrishnan and Kar, S. B., Role of non-linear processes in conducting polymer blends for piezo-sensors Part 2: studies on polyaniline/SBS blends, Sensors and Actuators A-Physical, vol. 120, no. 2, pp. 474-481, 2005.
S. Kheria, Nair, R. V., Kotmale, A. S., Rajamohanan, P. R., and Sanjayan, G. J., Role of N-terminal proline in stabilizing the Ant-Pro zipper motif, New Journal of Chemistry, vol. 39, no. 5, pp. 3327-3332, 2015.
M. Karthikeyan and Vyas, R., Role of open source tools and resources in virtual screening for drug discovery, Combinatorial Chemistry & High Throughput Screening, vol. 18, no. 6, pp. 528-543, 2015.
N. Khatun, Tiwari, S., Vinod, C. P., Tseng, C. - M., Liu, S. Wei, Biring, S., and Sen, S., Role of oxygen vacancies and interstitials on structural phase transition, grain growth, and optical properties of Ga doped TiO2, Journal of Applied Physics, vol. 123, no. 24, p. Article Number: 245702, 2018.
T. Rajesh and R. Devi, N., Role of oxygen vacancies in water gas shift reaction: activity study on BaCe0.98-xYxPt0.02O3-delta perovskites, Journal of Physical Chemistry C, vol. 118, no. 36, pp. 20867-20874, 2014.
A. S. Burange, Reddy, K. Prabhakr, Gopinath, C., Shukla, R., and Tyagi, A. K., Role of palladium crystallite size on CO oxidation over CeZrO 4-δ supported Pd catalysts, Journal of Molecular Catalysis , vol. 455, 2018.
K. Kaithakkal Jathavedan, Kanheerampockil, F., and Bhat, S., Role of particle morphology in the yielding behavior of dense thermosensitive microgel suspensions, Journal of Applied Polymer Science, p. 48625, 2019.
S. Charate, Shinde, S., Kondawar, S., Desai, U., Wadgaonkar, P., and Rode, C., Role of preparation parameters of Cu-Zn mixed oxide catalyst in solvent free glycerol carbonylation with urea, Journal of the Indian Chemical Society, vol. 98, no. 7, p. 100090, 2021.
R. Lenin and Joy, P. Alias, Role of primary and secondary surfactant layers on the thermal conductivity of lauric acid coated magnetite nanofluids, Journal of Physical Chemistry C, vol. 120, no. 21, pp. 11640-11651, 2016.
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.
A. Arora, Cameotra, S. Singh, Kumar, R., Singh, A. Kumar, Kumar, P., Balomajumder, C., and Laik, S., Role of Rhamnolipid: A biosurfactant in methane gas hydrate formation kinetics, in Proceedings of The First International Conference on Recent Advances in Bioenergy Research, 7th Floor, Vijaya Building, 17, Barakhamba Rd, New Delhi, 110 001, India, 2016.
B. E. Gowd, Tashiro, K., and Ramesh, C., Role of solvent molecules as a trigger for the crystal phase transition of syndiotactic polystyrene/solvent complex, Macromolecules, vol. 41, no. 24, pp. 9814-9818, 2008.
S. A. Deshpande, Pawar, A. B., Dighe, A., Athale, C. A., and Sengupta, D., Role of spatial inhomogenity in GPCR dimerisation predicted by receptor association-diffusion models, Physical Biology, vol. 14 , no. 3, p. 036002, 2017.
M. Ozhukil Valappil, Joshi, K., John, L., Krishnamurthy, S., Jana, B., Patra, A., Pillai, V. K., and Alwarappan, S., Role of structural distortion in stabilizing electrosynthesized blue emitting phosphorene quantum dots, Journal of Physical Chemistry Letters, vol. 10, no. 5, pp. 973-980, 2019.
A. Banerjee, Sengupta, S., Sastry, S., and Bhattacharyya, S. Maitra, Role of structure and entropy in determining differences in dynamics for glass formers with different interaction potentials, Physical Review Letters, vol. 113, no. 22, p. 225701, 2014.
B. S. Kulkarni, Mishra, D., and Pal, S., Role of substituents on the reactivity and electron density profile of diimine ligands: a density functional theory based study, Journal of Chemical Sciences, vol. 125, no. 5, pp. 1247-1258, 2013.
P. N. Goswami, Mandal, D., and Rath, A. K., Role of surface ligands in determining the electronic properties of quantum dot solids and their impact on photovoltaic figure of merits, Nanoscale, vol. 10, no. 3, pp. 1072-1080, 2018.
M. Manikandan, Venugopal, A. Kumar, Prabu, K., Jha, R. Kumar, and Thirumalaiswamy, R., Role of surface synergistic effect on the performance of Ni-based hydrotalcite catalyst for highly efficient hydrogenation of furfural, Journal of Molecular Catalysis A-Chemical, vol. 417, pp. 153-162, 2016.
A. Kumar, Bhattacharjee, G., Kulkarni, B. D., and Kumar, R., Role of surfactants in promoting gas hydrate formation, Industrial & Engineering Chemistry Research, vol. 54, no. 49, pp. 12217-12232, 2015.
J. Kumawat, Gupta, V. Kumar, and Vanka, K., Role of the (104) MgCl2 lateral cut in ziegler-natta catalysis: a computational investigation, Journal of Physical Chemistry C, vol. 122, no. 1, pp. 285-296, 2018.
M. Raj Mani, Chellaswamy, R., Marathe, Y. N., and Pillai, V. K., Role of the molecular structure of carboxylate-alumoxanes in the enhanced nucleation of polypropylene, Chemical Communications, vol. 51, no. 49, pp. 10026-10029, 2015.
M. Kumar Nandi, Banerjee, A., Dasgupta, C., and Bhattacharyya, S. Maitra, Role of the pair correlation function in the dynamical transition predicted by mode coupling theory, Physical Review Letters, vol. 119, no. 26, 2017.
A. Kumar Agarwal, Srinivasan, N., Godbole, R. K., More, S. K., Budnar, S., Gude, R. P., and Kalraiya, R. D., Role of tumor cell surface lysosome-associated membrane protein-1 (LAMP1) and its associated carbohydrates in lung metastasis, Journal of Cancer Research and Clinical Oncology, vol. 141, no. 9, pp. 1563-1574, 2015.
S. B. Kale, Jori, P. K., and Das, U., Rongalite as a sulfone source: sulfonylation of para-quinone methides and alkyl/allyl halides, Chemistry-an Asian Journal, vol. 17, no. 16, p. e202200408, 2022.
M. K. Sahoo and Balaraman, E., Room temperature catalytic dehydrogenation of cyclic amines with the liberation of H-2 using water as a solvent, Green Chemistry, vol. 21, no. 8, pp. 2119-2128, 2019.
A. B. Shabade, Sharma, D. M., Bajpai, P., Gonnade, R. G., Vanka, K., and Punji, B., Room temperature chemoselective hydrogenation of C=C, C=O and C=N bonds by using a well-defined mixed donor Mn(I) pincer catalyst, Chemical Science, vol. 13, no. 46, pp. 13764-13773, 2022.
M. V. Limaye, Singh, S. B., Das, R., Poddar, P., and Kulkarni, S. K., Room temperature ferromagnetism in undoped and Fe doped ZnO nanorods: microwave-assisted synthesis, Journal of Solid State Chemistry, vol. 184, no. 2, pp. 391-400, 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.
N. S. Ramgir, Mulla, I. S., and Vijayamohanan, K. P., Room temperature nitric oxide sensor actualized from Ru-doped SnO2 nanowires, Sensors and Actuators B - Chemical, vol. 107, no. 2, pp. 708-715, 2005.
M. Mahajan, Roy, K., Parmar, S., Singla, G., Pandey, O. P., Singh, K., Vaidhyanathan, R., and Ogale, S., Room temperature processed in-situ carbon-coated vanadium carbide (VC@C) as a high capacity robust Li/Na battery anode material, Carbon, vol. 161, pp. 108-116, 2020.
S. B. Deshpande, Potdar, H. S., Khollam, Y. B., Patil, K. R., Pasricha, R., and Jacob, N. E., Room temperature synthesis of mesoporous aggregates of anatase TiO2 nanoparticles, Materials Chemistry and Physics, vol. 97, no. 2-3, pp. 207-212, 2006.
R. S. Hyam, Bhosale, R. K., Lee, W., Han, S. - H., Hannoyer, B., and Ogale, S. B., Room temperature synthesis of rutile TiO2 hierarchical nanoneedle flower morphology for dye sensitized solar cell, Journal of Nanoscience and Nanotechnology, vol. 10, no. 9, pp. 5894-5898, 2010.
D. M. Sharma, Gouda, C., Gonnade, R. G., and Punji, B., Room temperature Z-selective hydrogenation of alkynes by hemilabile and non-innocent (NNN)Co(ii) catalysts, Catalysis Science & Technology, vol. 12, no. 6, pp. 1843-1849, 2022.
V. S. Shende, Raut, A. B., Raghav, P., Kelkar, A. A., and Bhanage, B. M., Room-temperature asymmetric transfer hydrogenation of biomass-derived levulinic acid to optically pure gamma-valerolactone using a ruthenium catalyst, ACS Omega, vol. 4, no. 21, pp. 19491-19498, 2019.
V. Bansal, Poddar, P., Ahmad, A., and Sastry, M., Room-temperature biosynthesis of ferroelectric barium titanate nanoparticles, Journal of the American Chemical Society, vol. 128, no. 36, p. Article No. JA063011M, 2006.
M. K. Sahoo, Rana, J., Subaramanian, M., and Balaraman, E., Room-temperature direct arylation of anilides under external oxidant-free conditions using CO2-Derived Dimethyl Carbonate (DMC) as a 'green' solvent, Chemistryselect, vol. 2, no. 25, pp. 7565-7569, 2017.
H. Wu, Zhang, L. - L., Wang, J., Jiang, Y., Li, H., Sudarsanam, P., and Yang, S., Room-temperature quasi-catalytic hydrogen generation from waste and water, Green Chemistry, vol. 23, no. 19, pp. 7528-7533, 2021.
R. Rajasabapathy, Mohandass, C., Dastager, S. Gulam, Liu, Q., Khieu, T. - N., Son, C. Ky, Li, W. - J., and Colaco, A., Roseovarius azorensis sp nov., isolated from seawater at espalamaca, azores, Antonie van Leeuwenhoek International Journal of General and Molecular Microbiology, vol. 105, no. 3, pp. 571-578, 2014.
K. S. Mujumdar, Ganesh, K. V., Kulkarni, S. B., and Ranade, V. V., Rotary Cement Kiln Simulator (RoCKS): integrated modeling of pre-heater, calciner, kiln and clinker cooler, Chemical Engineering Science, vol. 62, no. 9, pp. 2590-2607, 2007.
R. Bhardwaj, Chinchansure, A. A., Kulkarni, R. R., Arkile, M. A., Sarkar, D., and Joshi, S. P., Rottlerin derivatives and other compounds from mallotus philippinensis fruits and their potential antimycobactrial activity, Planta Medica Letters, vol. 2, no. 1, pp. e28-e30, 2015.
R. Sreenivasa Rao, Shajan, F. Joseph, and D. Reddy, S., Route to access imidazol[1,5-a]indole-1,3-diones and pyrrolo[1,2-c]imidazole-1,3-diones, Organic & Biomolecular Chemistry, vol. 17, no. 36, pp. 8384-8390, 2019.
R. D. Shingare, Kulkarni, A. S., Sutar, R. L., and D. Reddy, S., Route to benzimidazol-2-ones via decarbonylative ring contraction of quinoxalinediones: application to the synthesis of flibanserin, A drug for treating hypoactive sexual desire disorder in women and marine natural product hunanamycin analogue, ACS Omega, vol. 2 , no. 8, pp. 5137-5141, 2017.
P. M. Kodam, Ghadage, P. A., Nadargi, D. Y., Shinde, K. P., Mulla, I. S., Park, J. S., and Suryavanshi, S. S., Ru, Pd doped WO3 nanomaterials: a synergistic effect of noble metals to enhance the acetone response properties, Ceramics International, vol. 48, no. 12, pp. 17923-17933, 2022.
G. V. More, V. Malekar, P., Kalshetti, R. G., Shinde, M. H., and V. Ramana, C., Ru-catalyzed asymmetric transfer hydrogenation of alpha-acyl butyrolactone via dynamic kinetic resolution: asymmetric synthesis of bis-THF alcohol intermediate of darunavir, Tetrahedron Letters, vol. 66, p. 152831, 2021.
Y. Kommagalla, Srinivas, K., and Ramana, C. V., Ru-catalyzed branched versus linear selective C3-alkylation of 2-aroylbenzofurans with acrylates via C-H activation, Chemistry-A European Journal, vol. 20, no. 26, pp. 7884-7889, 2014.
C. V. Suneel Kumar and Ramana, C. V., Ru-catalyzed redox-neutral cleavage of the N-O bond in isoxazolidines: isatogens to pseudoindoxyls via a one-pot [3+2]-cycloaddition/N-O cleavage, Organic Letters, vol. 17, no. 12, pp. 2870-2873, 2015.
D. N. Garad and Mhaske, S. B., Ru-catalyzed regioselective cascade annulation of acrylamides with 2-alkynoates for the synthesis of various 6-Oxo nicotinic acid esters, Journal of Organic Chemistry, vol. 84, no. 4, pp. 1863-1870, 2019.
B. B. Shingate, Hazra, B. G., Salunke, D. B., and Pore, V. S., RuCl3-TBHP mediated allylic oxidation of Delta(8(9)) lanosterol derivatives, Tetrahedron Letters, vol. 52, no. 45, pp. 6007-6010, 2011.
N. Salunke, Thipparaboina, R., Chavan, R. B., Lodagekar, A., Mittapalli, S., Nangia, A., and Shastri, N. R., Rufinamide: crystal structure elucidation and solid state characterization, Journal of Pharmaceutical and Biomedical Analysis, vol. 149, pp. 185-192, 2018.
A. A. Deshmukh, Prashar, A. K., Kinage, A. K., Kumar, R., and Meijboom, R., Ru(II) phenanthroline complex as catalyst for chemoselective hydrogenation of nitro-aryls in a green process, Industrial & Engineering Chemistry Research, vol. 49, no. 23, pp. 12180-12184, 2010.
K. Srinivas, Siddiqui, S. K., Mudaliar, J. K., and Ramana, C. V., Ru(II)-catalyzed C-H activation/alkylation of 3-formylbenzofurans with conjugated olefins: product divergence, Journal of Organic Chemistry, vol. 84, no. 9, pp. 5056-5066, 2019.
S. Parambadath and Singh, A. P., Ru(II)-Chiral (1R,2S)-(+)-cis-1-amino-2-indanol immobilized over SBA-15 for asymmetric transfer hydrogenation reaction of prochiral ketones, Catalysis Today, vol. 141, no. 1-2, pp. 161-167, 2009.
A. Lazar, Betsy, K. J., Vinod, C. P., and Singh, A. P., Ru(II)-functionalized SBA-15 as highly chemoselective, acid free and sustainable heterogeneous catalyst for acetalization of aldehydes and ketones, Catalysis Communications, vol. 104, pp. 62-66, 2018.
V. Kuyil Azha Muniraj, Kamaja, C. Krishna, and Shelke, M. V., RuO2 center dot nH(2)O nanoparticles anchored on carbon nano-onions: an efficient electrode for solid state flexible electrochemical supercapacitor, ACS Sustainable Chemistry & Engineering, vol. 4, no. 5, pp. 2528-2534, 2016.
A. B. Bhise, Late, D. J., Ramgir, N. S., More, M. A., Mulla, I. S., Pillai, V. K., and Joag, D. S., RuO(2) doped SnO(2) nanobipyramids on Si (100) as a field emitter, Thin Solid Films, vol. 516, no. 18, pp. 6388-6391, 2008.
A. Bordoloi, Amrute, A. P., and Halligudi, S. B., [Ru(salen)(NO)] complex encapsulated in mesoporous SBA-16 as catalyst for hydrogenation of ketones, Catalysis Communications, vol. 10, no. 1, pp. 45-48, 2008.
D. Srimani, Balaraman, E., Gnanaprakasam, B., Ben-David, Y., and Milstein, D., Ruthenium pincer-catalyzed cross-dehydrogenative coupling of primary alcohols with secondary alcohols under neutral conditions, Advanced Synthesis & Catalysis, vol. 354, no. 13, pp. 2403–2406, 2012.
Y. Goriya and Ramana, C. V., Ruthenium-catalyzed C6-propenylation reactions of substituted pyridine derivatives: directed and direct C-H activation, Chemistry-A European Journal, vol. 18, no. 42, pp. 13288-13292, 2012.
A. B. Viveki and Mhaske, S. B., Ruthenium-catalyzed regioselective alkenylation/tandem hydroamidative cyclization of unmasked quinazolinones using terminal alkynes, Journal of Organic Chemistry, vol. 83, no. 16, pp. 8906-8913, 2018.
B. Punji, Mague, J. T., and Balakrishna, M. S., Ruthenium(II), copper(I) and silver(I) complexes of large bite bisphosphinite, bis(2-diphenylphosphinoxynaphthalen-1-yl)methane: Application of Ru(II) complexes towards the hydrogenation of styrene and phenylacetylene, Journal of Organometallic Chemistry, vol. 691, no. 20, pp. 4265–4272, 2006.
D. J. Paymode and Ramana, C. V., Ruthenium(II)-catalyzed C3 arylation of 2-aroylbenzofurans with arylboronic acids/aryltrifluoroborates via carbonyl-directed C-H bond activation, Journal of Organic Chemistry, vol. 80, no. 22, pp. 11551-11558, 2015.
Y. Kommagalla, Mullapudi, V. Babu, Francis, F., and Ramana, C. V., Ruthenium(II)-catalyzed switchable C3-alkylation versus alkenylation with acrylates of 2-pyridylbenzofurans via C-H bond activation, Catalysis Science & Technology, vol. 5, no. 1, pp. 114-117, 2015.
R. M. Kulkarni, Malladi, R. S., Hanagadakar, M. S., Doddamani, M. R., Santhakumari, B., and Kulkarni, S. D., Ru-TiO2 semiconducting nanoparticles for the photo-catalytic degradation of bromothymol blue, Journal of Materials Science-Materials in Electronics, vol. 27, no. 12, pp. 13065-13074, 2016.
G. S. Bhosle and Fernandes, M., (R-X-R)(4)-Motif peptides containing conformationally constrained cyclohexane-derived spacers: effect on cellular uptake, ChemMedChem, vol. 12, no. 21, pp. 1743-1747, 2017.
P. Natarajan, Patil, K. M., Vij, M., Yadav, A. K., Kumar, V. A., Ganguli, M., and Fernandes, M., RXR-carbamate - a novel molecular transporter for skin, Molecular Therapy, vol. 23, pp. S64-S64, 2015.
S. Sharma, Soni, R., Kurungot, S., and Asha, S. K., Rylene diimide-based alternate and random copolymers for flexible supercapacitor electrode materials with exceptional stability and high power density, Journal of Physical Chemistry C, vol. 123, no. 4, pp. 2084–2093, 2019.
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P. K. Ingle, Sad demise of Dr. Doraiswamy, former CSIR-NCL director, National Academy Science Letters-India, vol. 35, no. 3, pp. 241-242, 2012.
M. B. Mane, Bhandari, V. M., and Ranade, V. V., Safe water and technology initiative for water disinfection: application of natural plant derived materials, Journal of Water Process Engineering, vol. 43, p. 102280, 2021.
A. Khayum Mohammed, Pena-Sanchez, P., Pandikassala, A., Gaber, S., AlKhoori, A. A., Skorjanc, T., Polychronopoulou, K., Kurungot, S., Gandara, F., and Shetty, D., Salicylaldehydate coordinated two-dimensional-conjugated metal-organic frameworks, Chemical Communications, vol. 59, no. 18, pp. 2608-2611, 2023.
T. Kundu, Sahoo, S. Chandra, Saha, S., and Banerjee, R., Salt metathesis in three dimensional metal-organic frameworks (MOFs) with unprecedented hydrolytic regenerability, Chemical Communications, vol. 49, no. 46, pp. 5262-5264, 2013.
S. K. Rai, Allu, S., and Nangia, A. K., Salts and cocrystal of etodolac: advantage of solubility, dissolution, and permeability, Crystal Growth & Design, vol. 20, no. 7, pp. 4512-4522, 2020.
E. Sangtani, Mandal, S. Kumar, Sreelakshmi, A. S., Munshi, P., and Gonnade, R. G., Salts and cocrystals of furosemide with pyridines: differences in π-Stacking and color polymorphism, Crystal Growth & Design, vol. 17, no. 6, pp. 3071–3087, 2017.
A. Gunnam, Suresh, K., and Nangia, A., Salts and salt cocrystals of the antibacterial drug pefloxacin, Crystal Growth & Design, vol. 18, no. 5, pp. 2824-2835, 2018.
S. K. Rai, Baidya, D., and Nangia, A. K., Salts, solvates and hydrates of the multi-kinase inhibitor drug pazopanib with hydroxybenzoic acids, Crystengcomm, vol. 23, no. 35, pp. 5994-6011, 2021.
S. K. Gupta, Sharma, P., Agrawal, D. C., and Tsay, H. - S., Salvia miltiorrhiza: A medicinal herb from metabolites to pathway engineering, in Medicinal plants - recent advances in research and development, Singapore: Springer , 2016, pp. 215-238.
G. Kundu, De, S., Tothadi, S., Das, A., Koley, D., and Sen, S. S., Saturated N-heterocyclic carbene based thiele's hydrocarbon with a tetrafluorophenylene linker, Chemistry-A European Journal, 2019.
T. Baskaran, Christopher, J., Ajithkumar, T. G., and Sakthivel, A., SBA-15 intercalated Mg-Al hydrotalcite: an environmental friendly catalyst for hydroisomerization of olefin, Applied Catalysis A-General, vol. 488, pp. 119-127, 2014.
B. Singh, Mote, K. R., Gopinath, C. S., Madhu, P. K., and Polshettiwar, V., SBA-15-oxynitrides as a solid-base catalyst: effect of nitridation temperature on catalytic activity, Angewandte Chemie-International Edition, vol. 54, no. 20, pp. 5985-5989, 2015.
A. K. Bhattacharya, Diallo, M. A., and Ganesh, K. N., SbCl(3) as a highly efficient catalyst for the acetylation of alcohols, phenols, and amines under solvent-free conditions, Synthetic Communications, vol. 38, no. 10, pp. 1518-1526, 2008.
R. H. Ingle, Raj, N. K. Kala, and Manikandan, P., [SbW9O33]-based polyoxometalate combined with a phase transfer catalyst: A highly effective catalyst system for selective oxidation of alcohols with H2O2, and spectroscopic investigation, Journal of Molecular Catalysis A-Chemical, vol. 262, no. 1-2, pp. 52-58, 2007.
C. Kumar Choudhury, Carbone, P., and Roy, S., Scalability of coarse-grained potentials generated from iterative boltzmann inversion forpolymers: case study on polycarbonates, Macromolecular Theory and Simulations, vol. 25, no. 3, pp. 274-286, 2016.
C. S. Gopinath and Nalajala, N., Scalable and thin film approach for solar hydrogen generation: a review on enhanced photocatalytic water splitting, Journal of Materials Chemistry A, vol. 9, no. 3, pp. 1353-1371, 2021.
S. H. Kunjattu, Thorat, N. M., Gawas, S., and Kharul, U. K., Scalable, interfacially synthesized, covalent-organic framework (COF)-based thin-film composite (TFC) hollow fiber membranes for organic solvent nanofiltration (OSN), ACS Applied Materials and Interfaces , vol. 16, no. 15, pp. 19463-19471, 2024.
K. Asokan, Patil, M. Krishnat, Mukherjee, S. Porel, Sukumaran, S. Babu, and Nandakumar, T., Scalable mechanochemical synthesis of beta-ketoenamine-linked covalent organic frameworks for methane storage, Chemistry-An Asian Journal, vol. 17, no. 24, 2022.
D. Banerjee, Parmar, D., Bhattacharya, N., Ghanate, A. D., Panchagnula, V., and Raghunathan, A., Scalable metabolite supplementation strategy against antibiotic resistant pathogen Chromobacterium violaceum induced by NAD(+)/NADH(+) imbalanceA scalable metabolite supplementation strategy against antibiotic resistant pathogen Chromobacterium violaceu, BMC Syst Biol. , vol. 11, no. 1, 2017.
A. V. Nikam and Dadwal, A. H., Scalable microwave-assisted continuous flow synthesis of CuO nanoparticles and their thermal conductivity applications as nanofluids, Advanced Powder Technology, vol. 30, no. 1, pp. 13-17, 2019.
P. S. Walko and R. Devi, N., Scalable optical fiber reactor for photocatalytic H2 production: addressing scattering issues, International Journal of Hydrogen Energy, vol. 48, no. 45, pp. 17086-17096, 2023.
R. S. Atapalkar, Athawale, P. R., D. Reddy, S., and Kulkarni, A. A., Scalable, sustainable and catalyst-free continuous flow ozonolysis of fatty acids, Green Chemistry, vol. 23, no. 6, pp. 2391-2396, 2021.
S. P. Chavan, Pawar, A. A., Patil, N. B., Kadam, A. L., and Shinde, S. S., Scalable synthesis of 3-Ethyl-4-methyl-1,5-dihydro-2H-pyrrol-2-one: an important building block of the antidiabetic drug glimepiride, Synthesis-Stuttgart, vol. 52, no. 22, pp. 3480-3484, 2020.
G. R. Jachak and Reddy, D. S., Scalable synthesis of both enantiomers of vigabatrin, an antiepileptic drug, European Journal of Organic Chemistry, no. 6, pp. 1257–1260, 2019.
P. Das, Mankad, Y., and D. Reddy, S., Scalable synthesis of cladosporin, Tetrahedron Letters, vol. 60, no. 12, pp. 831-833, 2019.
D. Singh and Poddar, P., Scalable synthesis of dodecanethiol-capped bismuth nanoparticles by a solvent-free solid-state grinding method for reduction of 4-nitrophenol to 4-aminophenol, Langmuir, vol. 39, no. 33, pp. 11888-11897, 2023.
M. Ghosh, Dilwale, S., Vijayakumar, V., and Kurungot, S., Scalable synthesis of manganese-doped hydrated vanadium oxide as a cathode material for aqueous zinc-metal battery, ACS Applied Materials & Interfaces, vol. 12, no. 43, pp. 48542-48552, 2020.
E. Ramesh, Nandawadekar, L. D., Rao, R. Sreenivasa, and D. Reddy, S., Scalable synthesis of silacyclohexanones and ready access to silicon building blocks, Organic Letters, vol. 25, no. 37, pp. 6881-6885, 2023.

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