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R. S. Bhavsar, Kumbharkar, S. C., Rewar, A. S., and Kharul, U. K., Polybenzimidazole based film forming polymeric ionic liquids: synthesis and effects of cation-anion variation on their physical properties, Polymer Chemistry, vol. 5, no. 13, pp. 4083-4096, 2014.
A. S. Rewar, Bhavsar, R. S., Sreekumar, K., and Kharul, U. K., Polybenzimidazole based polymeric ionic liquids (PILs): effects of controlled degree of N-quaternization on physical and gas permeation properties, Journal of Membrane Science, vol. 481, pp. 19-27, 2015.
A. S. Rewar, Shaligram, S. V., and Kharul, U. K., Polybenzimidazole based polymeric ionic liquids possessing partial ionic character: effects of anion exchange on their gas permeation properties, Journal of Membrane Science, vol. 497, pp. 282-288, 2016.
B. K. Balan, Manissery, A. Padinhare, Chaudhari, H. D., Kharul, U. K., and Kurungot, S., Polybenzimidazole mediated N-doping along the inner and outer surfaces of a carbon nanofiber and its oxygen reduction properties, Journal of Materials Chemistry, vol. 22, no. 44, pp. 23668-23679, 2012.
S. V. Shaligram, Wadgaonkar, P. P., and Kharul, U. K., Polybenzimidazole-based polymeric ionic liquids (PILs): effects of `substitution asymmetry' on CO2 permeation properties, Journal of Membrane Science, vol. 493, pp. 403-413, 2015.
R. S. Bhavsar, Nahire, S. B., Kale, M. S., Patil, S. G., Aher, P. P., Bhavsar, R. A., and Kharul, U. K., Polybenzimidazoles based on 3,3 `-diaminobenzidine and aliphatic dicarboxylic acids: synthesis and evaluation of physicochemical properties toward their applicability as proton exchange and gas separation membrane material, Journal of Applied Polymer Science, vol. 120, no. 2, pp. 1090-1099, 2011.
R. A. Potrekar, Kulkarni, M. P., Kulkarni, R. A., and Vernekar, S. P., Polybenzimidazoles tethered with N-Phenyl 1,2,4-triazole units as polymer electrolytes for fuel cells, Journal of Polymer Science Part A-Polymer Chemistry, vol. 47, no. 9, pp. 2289-2303, 2009.
M. S. Rama and Swaminathan, S., Polycarbonate/clay nanocomposites via in situ melt polycondensation, Industrial & Engineering Chemistry Research, vol. 49, no. 5, pp. 2217-2227, 2010.
A. Kumar, Kondhare, K. R., Malankar, N. N., and Banerjee, A. K., Polycomb group methyltransferase StE(z)2 and deposition of H3K27me3 and H3K4me3 regulate the expression of tuberization genes in potato, Journal of Experimental Botany, vol. 72, no. 2, pp. 426-444, 2021.
G. Kumaraswamy, Wadekar, M. N., Agrawal, V. V., and Pasricha, R., Polycondensation in liquid crystalline phases of nonionic surfactants. Kinetics and morphology, Polymer, vol. 46, no. 19, pp. 7961-7968, 2005.
D. Gutierrez-Naranjo, Holguin-Momaca, J. T., Solis-Canto, O. O., Gupta, P., Poddar, P., Magana, F. Espinosa, and Olive-Mendez, S. F., Polycrystalline MnGe2 thin films on InAs(001) substrates, Thin Solid Films, vol. 657, pp. 38-41, 2018.
P. R. Suresha, Badiger, M. V., and Wolf, B. A., Polyelectrolytes in dilute solution: viscometric access to coil dimensions and salt effects, RSC Advances, vol. 5, no. 35, pp. 27674-27681, 2015.
N. Killi, Pawar, A. Tukaram, and Gundloori, R. V. N., Polyesteramide of neem oil and its blends as an active nanomaterial for tissue regeneration, ACS Applied Bio Materials, vol. 2, no. 8, pp. 3341–3351, 2019.
P. N. Honkhambe, Pasale, S. K., Bhairamadgi, N. S., Kumbhar, K. P., Salunkhe, M. M., and Wadgaonkar, P. P., Poly(ether ether ketone)s and poly(ether ether ketone ketone)s containing cardo decahydronaphthalene groups: synthesis and characterization, Journal of Applied Polymer Science, vol. 122, no. 3, pp. 1607-1613, 2011.
S. Kuhire, Nagane, S. S., and Wadgaonkar, P., Poly(ether urethane)s from aromatic diisocyanates based on lignin-derived phenolic acids, Polymer International, 2017.
B. T. S. Ramanujam, Mahale, R. Y., and Radhakrishnan, S., Polyethersulfone-expanded graphite nanocomposites: charge transport and impedance characteristics, Composites Science and Technology, vol. 70, no. 14, pp. 2111-2116, 2010.
P. S. Umare, Rao, K., Tembe, G. L., Dhoble, D. Arun, and Trivedi, B., Polyethylene waxes: catalytic synthesis by ti-biphenolates, Journal of Macromolecular Science Part A‐Pure and Applied Chemistry, vol. 44, no. 7-9, pp. 977-987, 2007.
V. G. Kumari, Asha, S., A. Ananth, N., Rajan, M. A. Jothi, and Mathavan, T., Polyethyleneglycol/silver functionalized Reduced graphene oxide aerogel for environmental application, in 62nd Dae Solid State Physics Symposium, 2 Huntington Quadrangle, Ste 1 No1, Melville, NY 11747-4501 USA, 2018.
V. Sharma, Paulbudhe, U., Bachhar, N., Chikkali, S. H., and Kumaraswamy, G., Polyethylene-grafted sheet-like silsesquioxane nanocomposites with unprecedented adhesion to polar substrates, ACS Applied Polymer Materials, vol. 5, no. 8, pp. 5972-5983, 2023.
P. Nair, Navale, G. R., and Dharne, M. S., Poly-gamma-glutamic acid biopolymer: a sleeping giant with diverse applications and unique opportunities for commercialization, Biomass Conversion and Biorefinery, 2021.
Y. Fang, Ha, H., Shanmuganathan, K., and Ellison, C. J., Polyhedral oligomeric silsesquioxane-containing thiol-ene fibers with tunable thermal and mechanical properties, ACS Applied Materials & Interfaces, vol. 8, no. 17, pp. 11050-11059, 2016.
G. C. Ingavle, Shaikh, A. A., Bhongale, S. Sitaram, Scaria, S., Chavan, N., Qureshi, M., and Ponrathnam, S., Poly(High Internal Phase Emulsion) of 2-EHA, 2-EHMA and EGDA with naturally occurring phenolic compounds", paper presented at international conference on ?polymers for advanced technology, in Polymers for Advanced Technology, National Chemical Laboratory, Pune, 2006.
U. M. Patil, Ghorpade, R. V., Nam, M. Sik, Nalawade, A. C., Lee, S., Han, H., and Jun, S. Chan, PolyHIPE derived freestanding 3D carbon foam for cobalt hydroxide nanorods based highperformance supercapacitor, Scientific Reports, vol. 6, p. Article Number: 35490, 2016.
S. Bhagyashri, Gadgil, T., Killi, N., and Rathna, G. V. N., Polyhydroxyalkanoates as biomaterials, MedChemComm, vol. 8, no. 9, 2017.
B. S. Thorat Gadgil, Killi, N., and Rathna, G. V. N., Polyhydroxyalkanoates as biomaterials (vol 8, pg 1774, 2017), MedChemComm, vol. 10, no. 4, p. 621, 2019.
A. Sarkar, Halhalli, M. R., Kulkarni, A. D., and Wadgaonkar, P. P., Polyimides based on aromatic diisocyanates containing pendent flexible alkoxy chains and aromatic dianhydrides: synthesis, characterization, and liquid-crystal alignment properties, Journal of Applied Polymer Science, vol. 112, no. 1, pp. 461-472, 2009.
S. Jadhav, Phapale, P., Thulasiram, H. V., and Bhargava, S., Polyketide synthesis in tobacco plants transformed with a plumbago zeylanica type III hexaketide synthase, Phytochemistry, vol. 98, pp. 92-100, 2014.
T. Ambone, Joseph, S., Deenadayalan, E., Mishra, S., Jaisankar, S., and Saravanan, P., Polylactic acid (PLA) biocomposites filled with waste leather buff (WLB), Journal of Polymers and the Environment, vol. 25, no. 4, pp. 1099-1109, 2017.
M. S. Singhvi, Zinjarde, S. S., and Gokhale, D. V., Polylactic acid: synthesis and biomedical applications, Journal of Applied Microbiology, vol. 127, no. 6, pp. 1612-1626, 2019.
M. Kar, Tiwari, N., Tiwari, M., Lahiri, M., and Gupta, S. Sen, Poly-L-arginine grafted silica mesoporous nanoparticles for enhanced cellular uptake and their application in DNA delivery and controlled drug release, Particle & Particle Systems Characterization, vol. 30, no. 2, pp. 166-179, 2013.
V. Sudhakar, Arulkashmir, A., and Krishnamoorthy, K., Polymer and graphene layer to increase dye regeneration and suppress back electron transfer in dye sensitized solar cells, Chemical Communications, vol. 53, no. 49, pp. 6629-6632, 2017.
A. Kumar Dasmahapatra, Nanavati, H., and Kumaraswamy, G., Polymer crystallization in the presence of ``sticky'' additives, Journal of Chemical Physics, vol. 131, no. 7, p. 074905, 2009.
R. Kannan, Kakade, B. A., and Pillai, V. K., Polymer electrolyte fuel cells using nafion-based composite membranes with functionalized carbon nanotubes, Angewandte Chemie-International Edition, vol. 47, no. 14, pp. 2653-2656, 2008.
M. V. Badiger and Tiwari, N., Polymer grafted smart mesoporous silica nanoparticles: challenges and advances in controlled drug delivery applications, Nova Science Publishers, Inc., 2018, pp. 29-64.
S. Mishra, Singh, S., and Singh, A., Polymer graphene-based nanofibers and their application for batteries, in Electrospinning of Graphene, 2021, pp. 119-148.
S. Kushwaha, Mane, M., Ravindranathan, S., and Das, A., Polymer nanorings with uranium specific clefts for selective recovery of uranium from acidic effluents via reductive adsorption, ACS Sensors, vol. 5, no. 10, pp. 3254-3263, 2020.
R. Prakash Singh and Kushwaha, O. Singh, Polymer solar cells, Journal of Materials Education, vol. 35, no. 3-4, pp. 79-119, 2013.
R. Prakash Singh and Kushwaha, O. Singh, Polymer solar cells: an overview, Macromolecular Symposia, vol. 327, no. 1, pp. 128-149, 2013.
M. R. Maurya, Kumar, U., and Manikandan, P., Polymer supported vanadium and molybdenum complexes as potential catalysts for the oxidation and oxidative bromination of organic substrates, Dalton Transactions, no. 29, pp. 3561-3575, 2006.
S. Chakrabartty, Polymer-based hybrid catalyst of low Pt content for electrochemical hydrogen evolution, International Journal of Hydrogen Energy, vol. 42, no. 36, pp. 22821-22829, 2017.
S. Hatamie, Dhas, V. V., Kale, B. B., Mulla, I. S., and Kale, S. N., Polymer-embedded stannic oxide nanoparticles as humidity sensors, Materials Science & Engineering C-Biomimetic and Supramolecular Systems, vol. 29, no. 3, pp. 847-850, 2009.
R. S. Bhavsar, Kumbharkar, S. C., and Kharul, U. K., Polymeric ionic liquids (PILs): effect of anion variation on their CO2 sorption, Journal of Membrane Science, vol. 389, pp. 305-315, 2012.
C. - M. Chou, Lee, S. - L., Chen, C. - H., Biju, A. T., Wang, H. - W., Wu, Y. - L., Zhang, G. - F., Yang, K. - W., Lim, T. - S., Huang, M. - J., Tsai, P. - Y., Lin, K. - C., Huang, S. - L., Chen, C. -hsien, and Luh, T. - Y., Polymeric ladderphanes, Journal of the American Chemical Society, vol. 131, no. 35, pp. 12579–12585, 2009.
V. Chandrakan Wakchaure, Veer, S. Dnyaneshwa, Nidhankar, A. D., Kumar, V., Narayanan, A., and Babu, S. Santhosh, Polymerizable solvent-free organic liquids: a new approach for large area flexible and foldable luminescent films, Angewandte chemie-international editon , vol. 62, no. 34, 2023.
M. N. Wadekar, Pasricha, R., Gaikwad, A. B., and Kumaraswamy, G., Polymerization in surfactant liquid crystalline phases, Chemistry of Materials, vol. 17, no. 9, pp. 2460-2465, 2005.
A. Rajesh and Sivaram, S., Polymerization of ethylene to branched poly(ethylene)s using ansa-eta(5)-monofluorenyl cyclohexanolato zirconium(IV) complex/methylaluminoxane, Polymer Bulletin, vol. 67, no. 3, pp. 383-399, 2011.
A. Rajesh and Sivaram, S., Polymerization of ethylene using amido functional half-sandwich complexes of group 4 metals, Polymer Engineering and Science, vol. 51, no. 10, pp. 2103-2108, 2011.
S. Mary, Small, H. Yvonne, Siwy, J., Mullen, W., Giri, A., and Delles, C., Polymerization-incompetent uromodulin in the pregnant stroke-prone spontaneously hypertensive rat, Hypertension, vol. 69, no. 5, p. 910+, 2017.
B. Pany, Majundar, A. Ghosh, Mohanty, M., Fyis, K. P., Dey, T., Tripathy, G., Bhat, S., Yamanaka, J., and Mohanty, P. S., Polymerized stimuli-responsive microgels for the removal of organic dye from water, Journal of Molecular Liquids, vol. 375, p. 121267, 2023.
V. Udayakumar, Alexander, S., Gayathri, V., Shivakumaraiah,, Patil, K. R., and Viswanathan, B., Polymer-supported palladium-imidazole complex catalyst for hydrogenation of substituted benzylideneanilines, Journal of Molecular Catalysis A-Chemical, vol. 317, no. 1-2, pp. 111-117, 2010.
S. K. Rai, Tothadi, S., Arhangelskis, M., George, C. P., Gonnade, R. G., and Nangia, A. K., Polymorph II of hydroxyurea 150 years after its first synthesis, Crystengcomm, vol. 25, no. 18, pp. 2712-2716, 2023.
K. Suresh, Khandavilli, U. B. Rao, Gunnam, A., and Nangia, A., Polymorphism, isostructurality and physicochemical properties of glibenclamide salts, CrystEngComm, vol. 19, no. 6, pp. 918-929, 2017.
R. G. Gonnade and Sangtani, E., Polymorphs and cocrystals: a comparative analysis, Journal of the Indian Institute of Science, vol. 97, no. 2, pp. 193-226, 2017.
S. H. Thorat, George, C. P., Shaligram, P. S., Suresha, P. R., and Gonnade, R. G., Polymorphs and hydrates of the anticancer drug erlotinib: X-ray crystallography, phase transition and biopharmaceutical studies, CrystEngComm, vol. 23, no. 22, pp. 3961-3974, 2021.
B. P. Mali, Dash, S. Ranjan, Biswas, A., Vanka, K., Manoj, K., and Gonnade, R. G., Polymorphs of green fluorescence protein chromophore analogue: fluorescence switching with thermal stimuli, Crystal Growth & Design, vol. 22, no. 3, pp. 1892-1905, 2022.
S. Aitipamula, Banerjee, R., Bansal, A. K., Biradha, K., Cheney, M. L., Choudhury, A. Roy, Desiraju, G. R., Dikundwar, A. G., Dubey, R., Duggirala, N., Ghogale, P. P., Ghosh, S., Goswami, P. Kumar, N. Goud, R., Jetti, R. R. K. R., Karpinski, P., Kaushik, P., Kumar, D., Kumar, V., Moulton, B., Mukherjee, A., Mukherjee, G., Myerson, A. S., Puri, V., Ramanan, A., Rajamannar, T., C. Reddy, M., Rodriguez-Hornedo, N., Rogers, R. D., Row, T. N. Guru, Sanphui, P., Shan, N., Shete, G., Singh, A., Sun, C. C., Swift, J. A., Thaimattam, R., Thakur, T. S., Thaper, R. Kumar, Thomas, S. P., Tothadi, S., Vangala, V. R., Variankaval, N., Vishweshwar, P., Weyna, D. R., and Zaworotko, M. J., Polymorphs, salts, and cocrystals: what's in a name?, Crystal Growth & Design, vol. 12, no. 5, pp. 2147-2152, 2012.
S. Aitipamula, Banerjee, R., Bansal, A. K., Biradha, K., Cheney, M. L., Choudhury, A. Roy, Desiraju, G. R., Dikundwar, A. G., Dubey, R., Duggirala, N., Ghogale, P. P., Ghosh, S., Goswami, P. Kumar, N. Goud, R., Jetti, R. R. K. R., Karpinski, P., Kaushik, P., Kumar, D., Kumar, V., Moulton, B., Mukherjee, A., Mukherjee, G., Myerson, A. S., Puri, V., Ramanan, A., Rajamannar, T., C. Reddy, M., Rodriguez-Hornedo, N., Rogers, R. D., Row, T. N. Guru, Sanphui, P., Shan, N., Shete, G., Singh, A., Sun, C. C., Swift, J. A., Thaimattam, R., Thakur, T. S., Thaper, R. Kumar, Thomas, S. P., Tothadi, S., Vangala, V. R., Vishweshwar, P., Weyna, D. R., and Zaworotko, M. J., Polymorphs, salts and cocrystals: what's in a name? (vol 12, pg 2147, 2012), Crystal Growth & Design, vol. 12, pp. 4290-4291, 2012.
S. Geetika Surapaneni and V. Ambade, A., Poly(N-vinylcaprolactam) containing solid lipid polymer hybrid nanoparticles for controlled delivery of a hydrophilic drug gemcitabine hydrochloride, RSC Advances, vol. 12, no. 27, pp. 17621-17628, 2022.
S. Chaudhari, Gaikwad, A. B., and Patil, P. P., Poly(o-anisidine) coatings on brass: synthesis, characterization and corrosion protection, Current Applied Physics, vol. 9, no. 1, pp. 206-218, 2009.
D. Patil, Gaikwad, A. B., and Patil, P., Poly(o-anisidine) films on mild steel: electrochemical synthesis and biosensor application, Journal of Physics D-Applied Physics, vol. 40, no. 8, pp. 2555-2562, 2007.
S. Chaudhari, Sainkar, S. R., and Patil, P. P., Poly(o-ethylaniline) coatings for stainless steel protection, Progress In Organic Coatings, vol. 58, no. 1, pp. 54-63, 2007.
V. Shinde, Mandale, A. B., Patil, K. R., Gaikwad, A. B., and Patil, P. P., Poly(o-toluidine) coatings on copper: electrochemical synthesis from aqueous media, Surface & Coating Technology, vol. 200, no. 16-17, pp. 5094-5101, 2006.
C. Dey, Polyoxometalate clusters: inorganic ligands for functional materials, Journal of Cluster Science, vol. 33, no. 5, 2022.
B. T. S. Ramanujam, Radhakrishnan, S., and Deshpande, S. D., Polyphenylene sulfide- expanded graphite nanocomposites: processing route dependent electrical percolation, Journal of Thermoplastic Composite Materials, vol. 30, no. 12, pp. 1603-1614, 2017.
S. B. Rohamare, Dixit, V., Nareddy, P. Kumar, Sivaramakrishna, D., Swamy, M. J., and Gaikwad, S. M., Polyproline fold-In imparting kinetic stability to an alkaline serine endopeptidase, Biochimica Et Biophysica Acta-Proteins and Proteomics, vol. 1834, no. 3, pp. 708-716, 2013.
B. T. S. Ramanujam, Radhakrishnan, S., and Deshpande, S. D., Polypropylene-based conducting nanocomposites: effect of aspect ratio of second conducting filler on the electrical percolation, Journal of Thermoplastic Composite Materials, vol. 30, no. 6, pp. 840-854, 2017.
S. V. Ghugare, Govindaiah, P., and Avadhani, C. V., Polypropylene-organoclay nanocomposites containing nucleating agents, Polymer Bulletin, vol. 63, no. 6, pp. 897-909, 2009.
K. K. Arora and Pedireddi, V. R., Poly(pseudo)rotaxane-like network mediated by hydrogen bonds in the solid-state structure of 1,7-phenanthroline, Crystal Growth & Design, vol. 5, no. 4, pp. 1309-1312, 2005.
S. Paul and Joseph, M., Polypyrrole functionalized with FePcTSA for NO(2) sensor application, Sensors and Actuators B-Chemical, vol. 140, no. 2, pp. 439-444, 2009.
S. Paul, Chavan, N., and Radhakrishnan, S., Polypyrrole functionalized with ferrocenyl derivative as a rapid carbon monoxide sensor, Synthetic Metals, vol. 159, no. 5-6, pp. 415-418, 2009.
A. Torris and Badiger, M. V., Polysaccharide hydrogel incorporated carbon nanofiber microelectrode for designing neural interfaces , Journal of Bionic Engineering, vol. 16, no. 4, pp. 696-710, 2019.
R. Neppalli, Causin, V., Benetti, E. Maria, Ray, S. Sinha, Esposito, A., Wanjale, S., Birajdar, M. S., Saiter, J. - M., and Marigo, A., Polystyrene/TiO2 composite electrospun fibers as fillers for poly(butylene succinate-co-adipate): Structure, morphology and properties, European Polymer Journal, vol. 50, pp. 78-86, 2014.
A. A. Hoskere, Sreedharan, S., Ali, F., Smythe, C. G., Thomas, J. A., and Das, A., Polysulfide-triggered fluorescent indicator suitable for super-resolution microscopy and application in imaging, Chemical Communications, vol. 54, no. 30, pp. 3735-3738, 2018.
N. S. Pujari, Vaidya, B., Bagalkote, S., Ponrathnam, S., and Nene, S., Poly(urethane methacrylate-co-glycidyl methacrylate)-supported-polypropylene biphasic membrane for lipase immobilization, Journal of Membrane Science, vol. 285, no. 1-2, pp. 395-403, 2006.
C. Dey and Banerjee, R., POM-catalyzed in situ ligand synthesis for the construction of metal complexes and their use in the formation of coordination polymers, Chemphyschem, vol. 14, no. 5, pp. 1009-1015, 2013.
A. Pandit, Bhambure, R., and Ranade, V. V., Population balance-enabled model for batch and continuous crystallization processes, in Chemical Engineering in the Pharmaceutical Industry, John Wiley & Sons, Inc., 2019.
S. Hegde, Pai, S. Ramchandra, Bhagwat, R. M., Sainia, A., Rathore, P. Kanwar, Jalalpure, S. Satyappa, Hegde, H. Vasudev, Sugunan, A. Purushotta, Gupta, V. S., Kholkute, S. D., and Roy, S., Population genetic and phytochemical dataset of Saraca asoca: a traditionally important medicinal tree, Data in Brief, vol. 25, p. 104173, 2019.
S. L. Kumar and Singh, J., Population genetic structure of banana corm weevil Cosmopolites sordidus (Germar) in India, Journal of asia-pacific entomology, vol. 21, no. 4, pp. 1222-1232, 2018.
M. Gadgil, Population proportion approach for ranking differentially expressed genes, BMC Bioinformatics, vol. 9, p. Article No. 380, 2008.
B. P. Biswal, Kandambeth, S., Chandra, S., Shinde, D. Balaji, Bera, S., Karak, S., Garai, B., Kharul, U. K., and Banerjee, R., Pore surface engineering in porous, chemically stable covalent organic frameworks for water adsorption, Journal of Materials Chemistry A, vol. 3, no. 47, pp. 23664-23669, 2015.
K. Sivaranjani and Gopinath, C. S., Porosity driven photocatalytic activity of wormhole mesoporous TiO2-xNx in direct sunlight, Journal of Materials Chemistry, vol. 21, no. 8, pp. 2639-2647, 2011.
S. Karak, Kumar, S., Pachfule, P., and Banerjee, R., Porosity prediction through hydrogen bonding in covalent organic frameworks, Journal of the American Chemical Society, vol. 140, no. 15, pp. 5138-5145, 2018.
S. Bera, Dey, K., Pal, T. K., Halder, A., Tothadi, S., Karak, S., Addicoat, M., and Banerjee, R., Porosity switching in polymorphic porous organic cages with exceptional chemical stability, Angewandte Chemie-International Edition, vol. 58, no. 13, pp. 4243-4247, 2019.
S. Shukla, Pasricha, R., and Sastry, M., Porous anisotropic metal nanostructures through controlled transmetallation across a dialysis membrane, Journal of Nanoscience and Nanotechnology, vol. 9, no. 11, pp. 6401-6408, 2009.
H. Barike Aiyappa, Pachfule, P., Banerjee, R., and Kurungot, S., Porous carbons from nonporous MOFs: influence of ligand characteristics on intrinsic properties of end carbon, Crystal Growth & Design, vol. 13, no. 10, pp. 4195-4199, 2013.
S. Vijayanand, Kannan, R., Potdar, H. S., Pillai, V. K., and Joy, P. Alias, Porous Co3O4 nanorods as superior electrode material for supercapacitors and rechargeable Li-ion batteries, Journal of Applied Electrochemistry, vol. 43, no. 10, pp. 995-1003, 2013.
K. Koner, Karak, S., Kandambeth, S., Karak, S., Thomas, N., Leanza, L., Perego, C., Pesce, L., Capelli, R., Moun, M., Bhakar, M., Ajithkumar, T. G., Pavan, G. M., and Banerjee, R., Porous covalent organic nanotubes and their assembly in loops and toroids, Nature Chemistry, vol. 14, no. 5, p. 507+, 2022.
S. Shukla, Priscilla, A., Banerjee, M., Bhonde, R. R., Ghatak, J., Satyam, P. V., and Sastry, M., Porous gold nanospheres by controlled transmetalation reaction: a novel material for application in cell imaging, Chemistry of Materials, vol. 17, no. 20, pp. 5000-5005, 2005.
P. Pachfule and Banerjee, R., Porous nitrogen rich cadmium-tetrazolate based metal organic framework (MOF) for H-2 and CO2 uptake, Crystal Growth & Design, vol. 11, no. 12, pp. 5176-5181, 2011.
A. V. Divakaran, Torris, A. A. T., Lele, A. K., and Badiger, M. V., Porous poly(ethylene glycol)-polyurethane hydrogels as potential biomaterials, Polymer International, vol. 64, no. 3, pp. 397-404, 2015.
G. Mukherjee, Porous porphyrin organic polymer for visible light triggered hydrogen production, Acta Crystallographica A‐Foundation and Advances, vol. 70, p. C1145, 2014.
G. Mukherjee, Thote, J., Aiyappa, H. Barike, Kandambeth, S., Banerjee, S., Vanka, K., and Banerjee, R., Porous porphyrin organic polymer (PPOP) for visible light triggered hydrogen production, Chemical Communications, vol. 53, no. 32, pp. 4461-4464, 2017.
A. Vasilescu, Boulahneche, S., Chekin, F., Gaspar, S., Medjram, M. Salah, Diagne, A. Aziz, Singh, S. K., Kurungot, S., Boukherroub, R., and Szunerits, S., Porous reduced graphene oxide modified electrodes for the analysis of protein aggregation. part 1: lysozyme aggregation at pH 2 and 7.4, Electrochimica Acta, vol. 254, pp. 375-383, 2017.
A. Vasilescu, Ye, R., Boulahneche, S., Lamraoui, S., Jijie, R., Medjram, M. Salah, Gaspar, S., Singh, S. K., Kurungot, S., Melinte, S., Boukherroub, R., and Szunerits, S., Porous reduced graphene oxide modified electrodes for the analysis of protein aggregation. Part 2: Application to the analysis of calcitonin containing pharmaceutical formulation, Electrochimica Acta, vol. 266, pp. 364-372, 2018.
A. Dubey, Kolekar, S. K., Gnanakumar, E. S., Roy, K., Vinod, C. P., and Gopinath, C. S., Porous thin films towards bridging the material gap in heterogeneous catalysis, Catalysis, Structure & Reactivity, vol. 2, no. 1-4, pp. 1-12, 2016.
S. Mitra, Subia, B., Patra, P., Chandra, S., Debnath, N., Das, S., Banerjee, R., Kundu, S. C., Pramanik, P., and Goswami, A., Porous ZnO nanorod for targeted delivery of doxorubicin: in vitro and in vivo response for therapeutic applications, Journal of Materials Chemistry, vol. 22, no. 45, pp. 24145-24154, 2012.
P. Pachfule, Dhavale, V. M., Kandambeth, S., Kurungot, S., and Banerjee, R., Porous-organic-framework-templated nitrogen-rich porous carbon as a more proficient electrocatalyst than Pt/C for the electrochemical reduction of oxygen, Chemistry-A European Journal, vol. 19, no. 3, pp. 974-980, 2013.
D. Das and Kurungot, S., Porphyrin-based conducting polymer hydrogel for supercapacitor application, Energy Technology, vol. 8, no. 6, p. 2000061, 2020.
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