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T. Panda and Banerjee, R., High charge carrier mobility in two dimensional indium (iii) isophthalic acid based frameworks, Proceedings of the National Academy of Sciences India Section A-Physical Sciences, vol. 84, no. 2, pp. 331-336, 2014.
A. Yeware, Agrawal, S., and Sarkar, D., High content screening assay for identifying inhibitors against active and dormant state intracellular Mycobacterium tuberculosis, Journal of Microbiological Methods, vol. 164, 2019.
B. A. Kakade, Pillai, V. K., Late, D. J., Chavan, P. G., Sheini, F. J., More, M. A., and Joag, D. S., High current density, low threshold field emission from functionalized carbon nanotube bucky paper, Applied Physics Letters, vol. 97, no. 7, p. 073102, 2010.
R. Reddy Devarapalli, Kashid, R. V., Deshmukh, A. B., Sharma, P., Das, M. R., More, M. A., and Shelke, M. V., High efficiency electron field emission from protruded graphene oxide nanosheets supported on sharp silicon nanowires, Journal of Materials Chemistry C, vol. 1, no. 33, pp. 5040-5046, 2013.
P. K. Dwivedi, Parte, G., Thripuranthaka, M., and Shelke, M. V., High efficiency lithium storage in 3D composite foam of Co3O4 nanoparticles integrated carbon nanohorns, Materials Science and Engineering B-Advanced Functional Solid-State Materials, vol. 263, p. 114839, 2021.
R. D. Mathad, Kumar, H. G. Harish, Sannakki, B., Ganesh, S., Sarma, K. S. S., and Badiger, M. V., High energy electron irradiation effects on polystyrene films, Radiation Effects and Defects in Solids, vol. 164, no. 10, p. PII 914466497, 2009.
P. V. Bharathy and Agrawal, D. C., High frequency occurrence of single cotyledonary embryo morphotype and repetitive somatic embryogenesis in `Thompson Seedless' crossed with seven grapevine male parents, Vitis, vol. 47, no. 3, pp. 169-174, 2008.
S. S. Nagarkar, Anothumakkool, B., Desai, A. V., Shirolkar, M. M., Kurungot, S., and Ghosh, S. K., High hydroxide conductivity in a chemically stable crystalline metal-organic framework containing a water-hydroxide supramolecular chain, Chemical Communications, vol. 52, no. 54, pp. 8459-8462, 2016.
K. P. Bhavsar, V. Kumar, R., and Khire, J. Malhar, High level phytase production by aspergillus niger NCIM 563 in solid state culture: response surface optimization, up-scaling, and its partial characterization, Journal of Industrial Microbiology & Biotechnology, vol. 38, no. 9, pp. 1407-1417, 2011.
B. Gole, Sanyal, U., Banerjee, R., and Mukherjee, P. Sarathi, High loading of pd nanoparticles by interior functionalization of mofs for heterogeneous catalysis, Inorganic Chemistry, vol. 55, no. 5, pp. 2345-2354, 2016.
K. Khaja Mohaideen and Joy, P. Alias, High magnetostriction and coupling coefficient for sintered cobalt ferrite derived from superparamagnetic nanoparticles, Applied Physics Letters, vol. 101, no. 7, p. 072405, 2012.
K. Khaja Mohaideen and Joy, P. Alias, High magnetostriction coefficient of Mn substituted cobalt ferrite sintered from nanocrystalline powders and after magnetic field annealing, Current Applied Physics, vol. 13, no. 8, pp. 1697-1701, 2013.
K. Khaja Mohaideen and Joy, P. Alias, High magnetostriction parameters for low-temperature sintered cobalt ferrite obtained by two-stage sintering, Journal of Magnetism and Magnetic Materials, vol. 371, pp. 121-129, 2014.
P. N. Anantharamaiah and Joy, P. A., High magnetostriction parameters of sintered and magnetic field annealed Ga-substituted CoFe2O4, Materials Letters, vol. 192, pp. 169-172, 2017.
S. Shyamroy, Garnaik, B., and Sivaram, S., High molecular weight polylactic acids by polyesterification using diisopropylcarbodiimide (DIPC) and 4-(dimethylamino) pyridinium ptoluene sulfonate (DPTS), Polymer Bulletin , vol. 72, no. 3, pp. 405-415, 2015.
N. V. Dambhare, Biswas, A., Sharma, A., Shinde, D. Dattatray, Mahajan, C., Mitra, A., and Rath, A. K., High open-circuit voltage in lead sulfide quantum dot solar cells via solution-phase ligand exchange with low electron affinity cadmium halides, JOURNAL OF MATERIALS CHEMISTRY A, vol. 11, no. 32, pp. 17282-17291, 2023.
D. Dhakras, Gawli, Y., Chhatre, S., Wadgaonkar, P., and Ogale, S., High performance all-organic flexural piezo-FET and nanogenerator via nanoscale soft-interface strain modulation, Physical Chemistry Chemical Physics, vol. 16, no. 41, pp. 22874-22881, 2014.
A. S. Pawbake, Jadkar, S. R., and Late, D. J., High performance humidity sensor and photodetector based on SnSe nanorods, Materials Research Express, vol. 3, no. 10, p. Article Number: 105038, 2016.
R. Matmour, More, A. S., Wadgaonkar, P. P., and Gnanou, Y., High performance poly(styrene-b-diene-b-styrene) triblock copolymers from a hydrocarbon-soluble and additive-free dicarbanionic initiator, Journal of the American Chemical Society, vol. 128, no. 25, pp. 8158-8159, 2006.
P. S. Walke, Patil, V. B., Mulla, I. S., and Late, D. J., High performance single crystalline PbWO4 nanorod field effect transistor, Journal of Materials Science-Materials in Electronics, vol. 26, no. 12, pp. 10044-10048, 2015.
S. K. M. Unni, Dhavale, V. M., Pillai, V. K., and Kurungot, S., High pt utilization electrodes for polymer electrolyte membrane fuel cells by dispersing pt particles formed by a preprecipitation method on carbon ``polished'' with polypyrrole, Journal of Physical Chemistry C, vol. 114, no. 34, pp. 14654-14661, 2010.
R. A. Naphade, Zhao, B., Richter, J. M., Booker, E., Krishnamurthy, S., Friend, R. H., Sadhanala, A., and Ogale, S. B., High quality hybrid perovskite semiconductor thin films with remarkably enhanced luminescence and defect suppression via quaternary alkyl ammonium salt based treatment, Advanced Materials Interfaces, 2017.
A. Patrike, Karbhal, I., Wasnik, K., Torris, A., Maibam, A., Krishnamurty, S., and , High rate, high temperature, dendrite free plating/stripping of Li in 3-dimensional honeycomb boron carbon nitride to realize an ultrastable lithium metal anode, Journal of Energy Storage, vol. 68, p. 107547, 2023.
P. Thakuria and Joy, P. Alias, High room temperature ferromagnetic moment of Ho substituted nanocrystalline BiFeO3, Applied Physics Letters, vol. 97, no. 16, p. 162504, 2010.
J. Hossain Khan, Lin, J., Young, C., Matsagar, B. M., Wu, K. C. W., Dhepe, P. L., Islam, M. Tofazzal, Rahman, M. Mahbubur, Shrestha, L. Kumar, Alshehri, S. M., Ahamad, T., Salunkhe, R. R., Kumar, N. Ashok, Martin, D. J., Yamauchi, Y., and Hossain, M. Shahriar A., High surface area nanoporous carbon derived from high quality jute from Bangladesh, Materials Chemistry and Physics, vol. 216, pp. 491-495, 2018.
S. Chhatre, Aravindan, V., Puthusseri, D., Banerjee, A., Madhavi, S., Wadgaonkar, P. P., and Ogale, S. B., High surface area porous carbon for ultracapacitor application by pyrolysis of polystyrene containing pendant carboxylic acid groups prepared via click chemistry, Materials Today Communications, vol. 4, pp. 166-175, 2015.
A. Singh and Panchagnula, V., High throughput quantitative analysis of melamine and triazines by MALDI-TOF MS, Analytical Methods, vol. 3, no. 10, pp. 2360-2366, 2011.
T. Dharmadhikari, Rajput, V., Yadav, R., Boargaonkar, R., Patil, D., Kale, S., Kamble, S. P., Dastager, S. G., and Dharne, M. S., High throughput sequencing based direct detection of SARS-CoV-2 fragments in wastewater of Pune, West India, Science of the Total Environment, vol. 807, p. 151038, 2022.
A. Kumar and Pawar, S. S., High viscosity of ionic liquids causes rate retardation of Diels-Alder reactions, Science China-Chemistry, vol. 55, no. 8, pp. 1633-1637, 2012.
M. N. Thorat and Dastager, S. G., High yield production of cellulose by a komagataeibacter rhaeticus PG2 strain isolated from pomegranate as a new host, RSC Advances, vol. 8, no. 52, pp. 29797-29805, 2018.
T. Ibomcha Singh, Maibam, A., Cha, D. Chan, Yoo, S., BabaRao, R., Lee, S. Uck, and Lee, S., High-alkaline water-splitting activity of mesoporous 3D heterostructures: an amorphous-shell@crystalline-core nano-assembly of Co-Ni-phosphate ultrathin-nanosheets and V- doped cobalt-nitride nanowires, Advanced Science, vol. 9, no. 23, p. 2201311, 2022.
V. Kuyil Azha Muniraj, Dwivedi, P. Kumari, Tamhane, P. Shivaji, Szunerits, S., Boukherroub, R., and Shelke, M. Vilas, High-energy flexible supercapacitor-synergistic effects of polyhydroquinone and RuO2 center dot xH(2)O with microsized, few-layered, self-supportive exfoliated-graphite sheets, ACS Applied Materials & Interfaces, vol. 11, no. 20, pp. 18349-18360, 2019.
M. S. Damle, Giri, A. P., Sainani, M. N., and Gupta, V. S., Higher accumulation of proteinase inhibitors in flowers than leaves and fruits as a possible basis for differential feeding preference of Helicoverpa armigera on tomato (Lycopersicon esculentum Mill, Cv. Dhanashree), Phytochemistry, vol. 66, no. 22, pp. 2659-2667, 2005.
R. Rajendra, Gangadharan, P. K., Tripathi, S., Kurungot, S., and Ballav, N., High-index faceted Au nanocrystals with highly controllable optical properties and electro-catalytic activity, Nanoscale, vol. 8, no. 46, pp. 19224-19228, 2016.
P. Kumar Jha, Singh, S. Kumar, Kumar, V., Rana, S., Kurungot, S., and Ballav, N., High-level supercapacitive performance of chemically reduced graphene oxide, Chem, vol. 3, no. 5, pp. 846-860, 2017.
S. K. Soni and Khire, J. Malhar, Highly acidic phytase from Aspergillus niger NCIM 563 under submerged fermentation, FEBS Journal, vol. 273, p. 301, 2006.
V. R. Choudhary, Jha, R., and Choudhari, P. A., Highly active and reusable catalyst from Fe-Mg-hydrotalcite anionic clay for friedel-crafts type benzylation reactions, Journal of Chemical Sciences, vol. 117, no. 6, pp. 635-639, 2005.
P. Unnikrishnan and Srinivas, D., Highly active and reusable ternary oxide catalyst for dialkyl carbonates synthesis, Journal of Molecular Catalysis A-Chemical, vol. 398, pp. 42-49, 2015.
A. Vinu, Devassy, B. M., Halligudi, S. B., Bohlmann, W., and Hartmann, M., Highly active and selective AlSBA-15 catalysts for the vapor phase tert-butylation of phenol, Applied Catalysis A-General, vol. 281, no. 1-2, pp. 207-213, 2005.
D. Chand, Ramasamy, S., and Suresh, C. G., Highly active bile salt hydrolase from enterococcus faecalis shows positive cooperative kinetics, Process Biochemistry, vol. 51, no. 2, pp. 263-269, 2016.
V. Bokade, Moondra, H., and Niphadkar, P., Highly active Brønsted 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.
V. S. Kshirsagar, Vijayanand, S., Potdar, H. S., Joy, P. Alias, Patil, K. R., and Rode, C. V., Highly active nanostructured Co3O4 catalyst with tunable selectivity for liquid phase air oxidation of p-cresol, Chemistry Letters, vol. 37, no. 3, pp. 310-311, 2008.
H. - R. Liu, Gomes, P. T., Costa, S. I., Duarte, M. T., Branquinho, R., Fernandes, A. C., Chien, J. C. W., Singh, R. P., and Marques, M. M., Highly active new alpha-diimine nickel catalyst for the polymerization of alpha-olefins, Journal of Organometallic Chemistry, vol. 690, no. 5, pp. 1314-1323, 2005.
J. Rathod, Sharma, P., Pandey, P., Singh, A. P., and Kumar, P., Highly active recyclable SBA-15-EDTA-Pd catalyst for Mizoroki-Heck, Stille and Kumada C-C coupling reactions, Journal of Porous Materials, vol. 24, no. 4, pp. 837-846, 2017.
B. Punji, Mague, J. T., and Balakrishna, M. S., Highly air-stable anionic mononuclear and neutral binuclear palladium(ii) complexes for C−C and C−N bond-forming reactions, Inorganic Chemistry, vol. 46, no. 26, pp. 11316–11327, 2007.
A. A. Deshmukh, Kinage, A. K., and Kumar, R., Highly chemoselective catalytic system for hydrogenation of diketones to ketols: an environmentally benevolent system, Catalysis Letters, vol. 120, no. 3-4, pp. 257-260, 2008.
F. Ram, Suresh, K., Torris, A., Kumaraswamy, G., and Shanmuganathan, K., Highly compressible ceramic/polymer aerogel-based piezoelectric nanogenerators with enhanced mechanical energy harvesting property, Ceramics International, vol. 47, no. 11, pp. 15750-15758, 2021.
M. Pandey, Chowdhury, P. Sarathi, Dutta, A. Kumar, Kumar, P., and Pal, S., Highly concise and practical route to clavaminols, sphinganine and (+)-spisulosine via indium mediated allylation of alpha-hydrazino aldehyde and a theoretical insight into the stereochemical aspects of the reaction, RSC Advances, vol. 3, no. 35, pp. 15442-15448, 2013.
O. P. Bande, Jadhav, V. H., Puranik, V. G., and Dhavale, D. D., Highly diastereoselective 1,3-dipolar cycloaddition of a D-galactose-derived nitrone with dimethyl maleate: synthesis of polyhydroxylated perhydroazaazulenes, Synlett, no. 12, pp. 1959-1963, 2009.
S. P. Chavan, Garai, S., and Kalkote, U. R., Highly diastereoselective total synthesis of (+/-)-heritonin and (+/-)-heritol, Tetrahedron, vol. 68, no. 40, pp. 8509-8514, 2012.
B. Govinda Rao, Sudarsanam, P., Rao, T. Venkateshw, Amin, M. Hassan, Bhargava, S. K., and Reddy, B. M., Highly dispersed MnOx nanoparticles on shape-controlled SiO2 spheres for ecofriendly selective allylic oxidation of cyclohexene, Catalysis Letters, vol. 150, no. 10, pp. 3023-3035, 2020.
R. Salunke, Mourier, T., Banerjee, M., Pain, A., and Shanmugam, D., Highly diverged novel subunit composition of apicomplexan F-type ATP synthase identified from Toxoplasma gondii, Plos Biology, vol. 16, no. 7, p. e2006128, 2018.
A. B. Deshmukh, Dwivedi, P. K., Nalawade, A. C., Qureshi, M. S., and Shelke, M. V., Highly durable Li-ion battery anode from Fe3O4 nanoparticles embedded in nitrogen-doped porous carbon with improved rate capabilities, Journal of Materials Science, vol. 55, no. 33, pp. 15667-15680, 2020.
J. Justus, Vinu, A., Devassy, B. M., Balasubramanian, V. V., Bohringer, W., Fletcher, J. C. Q., and Halligudi, S. B., Highly efficient and chemo selective catalyst system for the synthesis of blossom orange fragrance and flavoring compounds, Catalysis Communications, vol. 9, no. 7, pp. 1671-1675, 2008.
R. Kupwade, Mitragotri, S. D., Kulkarni, M. A., Desai, U. V., and Wadagaonkar, P. P., Highly efficient and extremely simple protocol for the oxidation α-hydroxyphosphonates to α-ketophosphonates using Dess-Martin periodinane, ARKIVOC, vol. 4, 2021.
P. Rajan Sruthi, Nimmi, P. Purayil, Babu, S. Santhosh, and Anas, S., Highly efficient and reusable polymer supported palladium catalyst for copper free sonogashira reaction in water, ChemistrySelect, vol. 7, no. 14, p. e202104273, 2022.
P. Kandasamy, Gogoi, P., Venugopalan, A. Thareparam, and Raja, T., Highly efficient and reusable Ru-NaY catalyst for the base free oxidation of 5-Hydroxymethylfurfural to 2,5-Furandicarboxylic acid, Catalysis Today, vol. 375, no. 145-154, 2021.
V. R. Choudhary, Highly efficient catalyst derived from Ni-Fe-hydrotalcite for solvent-free O- or S-acetylation of alcohols, phenols and thiols at room temperature, Proceedings of the National Academy of Sciences India Section A-Physical Sciences, vol. 83, no. 1, pp. 15-19, 2013.
G. Ratrey, Solanki, B. S., Kamble, S. P., and V. Rode, C., Highly efficient chemoselective hydrogenation of 5-HMF to BHMF over reusable bimetallic Pd-Ir/C catalyst, ChemistrySelect, vol. 7, no. 23, p. e202200456, 2022.
A. Awasthi, Mukherjee, A., Singh, M., Rathee, G., Vanka, K., and Chandra, R., Highly efficient chemoselective N-tert butoxycarbonylation of aliphatic/aromatic/heterocyclic amines using diphenylglycoluril as organocatalyst, Tetrahedron, vol. 76, no. 23, p. 131223, 2020.
S. Iwama, Kuyama, K., Mori, Y., Manoj, K., Gonnade, R. G., Suzuki, K., Hughes, C. E., P. Williams, A., Harris, K. D. M., Veesler, S., Takahashi, H., Tsue, H., and Tamura, R., Highly efficient chiral resolution of DL-arginine by cocrystal formation followed by recrystallization under preferential-enrichment conditions, Chemistry-A European Journal, vol. 20, no. 33, pp. 10343-10350, 2014.
P. Tripathi, Gupta, B. K., Bhatnagar, A., Patel, C. R. P., Banker, P. K., Late, D. J., More, M. A., Lalla, N. P., Phase, D. M., Choudhary, R. J., Shaz, M. A., Ajayan, P. M., and Srivastava, O. N., Highly efficient field emission properties of radially aligned carbon nanotubes, Journal of Materials Chemistry C, vol. 6, no. 24, pp. 6584-6590, 2018.
A. Kumar Singh and Sudhakar, V., Highly efficient method of utilizing waste silica hazards, Process Safety and Environmental Protection, vol. 153, pp. 239-248, 2021.
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.
T. V. Kotbagi, Gurav, H. R., Nagpure, A. S., Chilukuri, S. V., and Bakker, M. G., Highly efficient nitrogen-doped hierarchically porous carbon supported Ni nanoparticles for the selective hydrogenation of furfural to furfuryl alcohol, RSC Advances, vol. 6, no. 72, pp. 67662-67668, 2016.
S. Abdul Rash Mulla, Pathan, M. Y., Chavan, S. S., Gample, S. P., and Sarkar, D., Highly efficient one-pot multi-component synthesis of alpha-aminophosphonates and bis-alpha-aminophosphonates catalyzed by heterogeneous reusable silica supported dodecatungstophosphoric acid (DTP/SiO2) at ambient temperature and their antitubercular eval, RSC Advances, vol. 4, no. 15, pp. 7666-7672, 2014.
V. A. Murugan, Viswanath, A. Kasi, Gopinath, C. S., and Vijayamohanan, K., Highly efficient organic-inorganic poly(3,4-ethylenedioxythiophene)-molybdenum trioxide nanocomposite electrodes for electrochemical supercapacitor, Journal of Applied Physics, vol. 100, no. 7, p. Article No. 074319, 2006.
S. B. Kamble, Swami, R. K., Sakate, S. S., and Rode, C. V., Highly efficient povidone-phosphotungstic acid catalyst for the tandem acetalization of aldehydes to bis- and tris(indolyl)methanes, ChemPlusChem, vol. 78, no. 11, pp. 1393-1399, 2013.
S. Janampelli and Darbha, S., Highly efficient Pt-MoOx/ZrO2 catalyst for green diesel production, Catalysis Communications, vol. 125, pp. 70-76, 2019.
S. Munirasu, Aggarwal, R., and Baskaran, D., Highly efficient recyclable hydrated-clay supported catalytic system for atom transfer radical polymerization, Chemical Communications, no. 30, pp. 4518-4520, 2009.
T. Vivekanand, Vinoth, P., Agieshkumar, B., Sampath, N., Sudalai, A., Menendez, C., and Sridharan, V., Highly efficient regioselective synthesis of pyrroles via a tandem enamine formation-Michael addition-cyclization sequence under catalyst- and solvent-free conditions, Green Chemistry, vol. 17, no. 6, pp. 3415-3423, 2015.
N. S. Pagar and Deshpande, R. M., Highly efficient rhodium-phosphite catalyzed hydroformylation of camphene and other terpenes, Asian Journal of Chemistry, vol. 31, no. 1, pp. 213-219, 2019.
K. M. Patil, Naik, R. J., Rajpal,, Fernandes, M., Ganguli, M., and Kumar, V. A., Highly efficient (R-X-R)-type carbamates as molecular transporters for cellular delivery, Journal of the American Chemical Society, vol. 134, no. 17, pp. 7196-7199, 2012.
L. Giribabu, Singh, S. P., Patil, N. M., M. Kantam, L., Gupte, S. P., and Chaudhari, R. V., Highly efficient sulfimidation of 1,3-dithianes by Cu(I) complexes, Synthetic Communications, vol. 38, no. 4, pp. 619-625, 2008.
S. B. Kamble, Shinde, S. H., and Rode, C. V., Highly efficient triphenyl(3-sulfopropyl)phosphonium functionalized phosphotungstic acid on silica as a solid acid catalyst for selective mono-allylation of acetals, Catalysis Science & Technology, vol. 5, no. 8, pp. 4039-4047, 2015.
P. K. Jori and Jadhav, V. H., Highly efficient zirconium based carbonaceous solid acid catalyst for selective synthesis of 5-HMF from fructose and glucose in isopropanol as a solvent, Catalysis Letters, vol. 152, no. 6, pp. 1703-1710, 2022.
S. Sahoo, Panday, R., Kothavade, P., Sharma, V. Bhan, Sowmiyanarayanan, A., Praveenkumar, B., Zareba, J. K., Kabra, D., Shanmuganathan, K., and Boomishankar, R., Highly electrostrictive salt cocrystal and the piezoelectric nanogenerator application of its 3D-printed polymer composite, ACS Applied Materials and Interfaces , vol. 16, no. 20, pp. 26406-26416, 2024.
A. C. Shaikh, Ranade, D. S., Thorat, S., Maity, A., Kulkarni, P. P., Gonnade, R. G., Munshi, P., and Patil, N. T., Highly emissive organic solids with remarkably broad color tunability based on N,C-chelate, four-coordinate organoborons, Chemical Communications, vol. 51, no. 89, pp. 16115-16118, 2015.
V. S. Koshti, Mote, N. R., Gonnade, R. G., and Chikkali, S. H., Highly enantioselective Pd-catalyzed synthesis of P-stereogenic supramolecular phosphines, self-assembly, and implication, Organometallics, vol. 34, no. 20, pp. 4802-4805, 2015.
K. V. Khopade, Sen, A., Birajdar, R. S., Paulbudhe, U. P., Kavale, D. S., Shinde, P. S., Mhaske, S. B., and Chikkali, S. H., Highly enantioselective synthesis of sitagliptin, Asian Journal of Organic Chemistry, vol. 9, no. 2, pp. 189-191, 2020.
B. K. Balan and Kurungot, S., Highly exposed and activity modulated sandwich type Pt thin layer catalyst with enhanced utilization, Journal of Materials Chemistry, vol. 21, no. 47, pp. 19039-19048, 2011.
F. Ram, Radhakrishnan, S., Ambone, T., and Shanmuganathan, K., Highly flexible mechanical energy harvester based on nylon 11 ferroelectric nanocomposites, ACS Applied Polymer Materials, vol. 1, no. 8, pp. 1998–2005, 2019.
R. A. Nayak, Bhat, S. A., Shanker, G., Rao, D. S. S., and Yelamaggad, C. V., Highly frustrated liquid crystal phases in optically active dimers: synthesis and rich phase transitional behavior, New Journal of Chemistry, vol. 43, no. 5, pp. 2148-2162 , 2019.
T. Ponrathnam, Behere, I., Ponrathnam, S., and Ingavle, G., Highly interconnected porous monolithic and beaded polymers using high internal phase emulsion polymerization: tuning porous architecture through synthesis variables, Polymer International, vol. 72, no. 4, pp. 451-466, 2023.
W. Fang, Paul, S., Capron, M., Biradar, A. V., Umbarkar, S. B., Dongare, M. K., Dumeignil, F., and Jalowiecki-Duhamel, L., Highly loaded well dispersed stable Ni species in NiXMg2AlOY nanocomposites: application to hydrogen production from bioethanol, Applied Catalysis B-Environmental, vol. 166, pp. 485-496, 2015.
A. S. Ethiraj, Kharrazi, S., Hebalkar, N., Urban, J., Sainkar, S. R., and Kulkarni, S. K., Highly photostable dye entrapped core-shell particles, Materials Letters, vol. 61, no. 21, pp. 4738-4742, 2007.
D. Durgalakshmi, R. Rakkesh, A., Kesavan, M., Ganapathy, S., Ajithkumar, T. G., Karthikeyan, S., and Balakumar, S., Highly reactive crystalline-phase-embedded strontium-bioactive nanorods for multimodal bioactive applications, Biomaterials Science, vol. 6, no. 7, pp. 1764-1776, 2018.
G. Senthil Kumar, Zeller, M., Gonnade, R. Ghanshyam, and Prasad, K. Jayarampil, Highly regioselective C4-hydrazinylation of 2,4-dichloroquinolines: expedient synthesis of aminoquinoline substituted pyrrolidin-2,5-diones via hydrazinylquinolines, Tetrahedron Letters, vol. 55, no. 30, pp. 4240-4244, 2014.
S. Pandey and Chikkali, S. H., Highly regioselective isomerizing hydroformylation of long-chain internal olefins catalyzed by a rhodium bis(phosphite) complex, ChemCatChem, vol. 7, no. 21, pp. 3468-3471, 2015.
A. B. Shaikh, Barache, U. B., Khogare, B. T., Goswami, R., Kokare, B. N., Wadgaonkar, P. P., and Gaikwad, S. H., Highly reproducible, simple and selective analytical method for extractive UV-visible spectrophotometric determination of ruthenium (III): analysis of catalyst, fissium alloy and sequential separation, Spectrochimica Acta Part A-Molecular and Biomolecular Spectroscopy, vol. 243, p. 118814, 2020.
P. Das, Ghosh, A., Bhatt, H., and Das, A., Highly selective and dual responsive test paper sensor of Hg2+/ Cr3+ for naked eye detection in neutral water, RSC Advances, vol. 2, no. 9, pp. 3714-3721, 2012.
D. K. Mohapatra, Chatterjee, B., and Gurjar, M. K., Highly selective approach for the total synthesis of (+)-heliconol A, Tetrahedron-Asymmetry, vol. 19, no. 13, pp. 1568-1571, 2008.
K. J. Betsy, Lazar, A., and Vinod, C. P., Highly selective aqueous phase hydrogenation of phenols over nanostructured RuO2 on MCM-41 catalysts, Nano-Structures & Nano-Objects , vol. 13, pp. 36-43, 2018.
B. A. Kakade, Sahoo, S., Halligudi, S. B., and Pillai, V. K., Highly selective catalytic hydrogenation of arenes using rhodium nanoparticles supported on multiwalled carbon nanotubes, Journal of Physical Chemistry C, vol. 112, no. 35, pp. 13317-13319, 2008.
H. Hazarkhani, Kumar, P., Kondiram, K. Sachin, and Gadwal, I. M. Shafi, Highly selective claisen-schmidt condensation catalyzed by silica chloride under solvent-free reaction conditions, Synthetic Communications, vol. 40, no. 19, p. PII 926308853, 2010.
S. Kamble, More, S., and Rode, C. V., Highly selective direct azidation of alcohols over a heterogeneous povidone-phosphotungstic solid acid catalyst, New Journal of Chemistry, vol. 40, no. 12, pp. 10240-10245, 2016.
A. Jha and Rode, C. V., Highly selective liquid-phase aerobic oxidation of vanillyl alcohol to vanillin on cobalt oxide (Co3O4) nanoparticles, New Journal of Chemistry, vol. 37, no. 9, pp. 2669-2674, 2013.
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