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A. D. Ruikar, Jadhav, R. B., Phalgune, U. D., Rojatkar, S. R., Puranik, V. G., and Deshpande, N. R., Phytochemical investigation of artemisia pallens, Helvetica Chimica Acta, vol. 94, no. 1, pp. 73-77, 2011.
A. A. Qureshi, Qureshi, A. A., Omer, S., Sanghai, D. B., Setty, S. R., and Bhajipale, N. S., Phytochemical constituents and pharmacological activities of calotropis procera, Plant Archives, vol. 8, no. 1, pp. 23-27, 2008.
P. Buddhiwant, Bhavsar, K., V. Kumar, R., and Khire, J. M., Phytase production by solid-state fermentation of groundnut oil cake by Aspergillus niger: A bioprocess optimization study for animal feedstock applications, Preparative Biochemistry & Biotechnology, vol. 46, no. 6, pp. 531-538, 2016.
P. C. Shah, V. Kumar, R., Dastager, S. G., and Khire, J. M., Phytase production by aspergillus niger NCIM 563 for a novel application to degrade organophosphorus pesticides, AMB Express, vol. 7, p. Article Number: 66, 2017.
K. P. Bhavsar, Buddhiwant, P., Soni, S. K., Depan, D., Sarkar, S., and Khire, J. Malhar, Phytase isozymes from aspergillus niger NCIM 563 under solid state fermentation: biochemical characterization and their correlation with submerged phytases, Process Biochemistry, vol. 48, no. 11, pp. 1618-1625, 2013.
A. Ramachandran and Gadgil, C. J., Physiologically-based pharmacokinetic model for tuberculosis drug disposition at extrapulmonary sites, CPT-Pharmacometrics & Systems Pharmacology, vol. 12, no. 9, pp. 1274-1284, 2023.
K. H. Prema, Kurian, P., Joy, P. Alias, and Anantharaman, M. R., Physicomechanical and magnetic properties of neoprene based rubber ferrite composites, Polymer-Plastics Technology and Engineering, vol. 47, no. 2, pp. 137-146, 2008.
S. S. Malwadkar, Gholap, R. S., Awate, S. V., Korake, P. V., Chaskar, M. G., and Gupta, N. M., Physico-chemical, photo-catalytic and O-2-adsorption properties of TiO2 nanotubes coated with gold nanoparticles, Journal of Photochemistry and Photobiology A-Chemistry, vol. 203, no. 1, pp. 24-31, 2009.
P. P. Rade, Giram, P. S., Shitole, A. A., Sharma, N., and Garnaik, B., Physicochemical and in vitro antibacterial evaluation of metronidazole loaded eudragit S-100 nanofibrous mats for the intestinal drug delivery, Advanced Fiber Materials, vol. 4, no. 1, pp. 76-88, 2021.
O. L. Osifeko, Uddin, I., Mashazi, P. N., and Nyokong, T., Physicochemical and antimicrobial photodynamic chemotherapy of unsymmetrical indium phthalocyanines alone or in the presence of magnetic nanoparticles, New Journal of Chemistry, vol. 40, no. 3, pp. 2710-2721, 2016.
C. H. Rycroft, Orpe, A. V., and Kudrolli, A., Physical test of a particle simulation model in a sheared granular system, Physical Review E, vol. 80, no. 3, p. 031305, 2009.
S. Sadhu, Gupta, P., and Poddar, P., Physical mechanism behind enhanced photoelectrochemical and photocatalytic properties of superhydrophilic assemblies of 3D-TiO2 microspheres with arrays of oriented, single-crystalline TiO2 nanowires as building blocks deposited on fluorine-doped tin oxid, ACS Applied Materials & Interfaces, vol. 9, no. 12, pp. 11202-11211, 2017.
S. B. Ogale, Ahmad, A., Pasricha, R., Dhas, V. V., and Syed, A., Physical manipulation of biological and chemical syntheses for nanoparticle shape and size control, Applied Physics Letters, vol. 89, no. 26, p. Article No. 263105, 2006.
S. Banu, Lagu, M. D., and Gupta, V. S., Phylogeographical studies in disjunct populations of symplocos laurina wall. using cytoplasmic PCR-RFLP approach, Tree Genetics & Genomes, vol. 6, no. 1, pp. 13-23, 2010.
V. T. Barvkar, Pardeshi, V. C., Kale, S. M., Kadoo, N. Y., and Gupta, V. S., Phylogenomic analysis of UDP glycosyltransferase 1 multigene family in Linum usitatissimum identified genes with varied expression patterns, BMC Genomics, vol. 13, p. 175, 2012.
N. Sekhar Pagadala, Arha, M., Reddy, P. S., Kumar, R., Sirisha, V. L., Prashant, S., K. Reddy, J., Khan, B. Mohammad, Rawal, S. K., and Kishor, P. B. Kavi, Phylogenetic analysis, homology modelling, molecular dynamics and docking studies of caffeoyl-CoA-O- methyl transferase (CCoAOMT 1 and 2) isoforms isolated from subabul (Leucaena leucocephala), Journal of Molecular Modeling, vol. 15, no. 2, pp. 203-221, 2009.
R. R. Kulkarni, Shurpali, K., Gawade, R. L., Sarkar, D., Puranik, V. G., and Joshi, S. P., Phyllocladane diterpenes from anisomeles heyneana, Journal of Asian Natural Products Research, vol. 14, no. 12, pp. 1162-1168, 2012.
K. Praveen, Das, S., Dhaware, V., Pandey, B., Mondal, B., and Sengupta, S., pH-responsive “supra-amphiphilic” nanoparticles based on homoarginine polypeptides, ACS Applied Bio Materials, vol. 2, no. 10, pp. 4162–4172, 2019.
P. P. Das, Roy, A., Tathavadekar, M., and Devi, P. S., Photovoltaic and photocatalytic performance of electrospun Zn2SnO4 hollow fibers, Applied Catalysis B, vol. 203, pp. 692-703, 2017.
H. O. Badr, Natu, V., Neatu, S., Neatu, F., Kuncser, A., Rostas, A. M., Racey, M., Barsoum, M. W., and Florea, M., Photo-stable, 1D-nanofilaments TiO2-based lepidocrocite for photocatalytic hydrogen production in water-methanol mixtures, Matter, vol. 6, no. 9, pp. 2853-2869, 2023.
S. P. Lonkar, A. Kumar, P., and Singh, R. Pal, Photo-stabilization of EPDM-clay nanocomposites: effect of antioxidant on the preparation and durability, Polymers for Advanced Technologies, vol. 18, no. 11, pp. 891-900, 2007.
P. Kar, Banerjee, T., Verma, S., Sen, A., Das, A., Ganguly, B., and Ghosh, H. N., Photosensitization of nanoparticulate TiO2 using a Re(I)-polypyridyl complex: studies on interfacial electron transfer in the ultrafast time domain, Physical Chemistry Chemical Physics, vol. 14, no. 22, pp. 8192-8198, 2012.
P. D. Joshi, Joag, D. S., Rout, C. Shekhar, and Late, D. J., Photosensitive field emission study of SnS2 nanosheets (27th International Vacuum Nanoelectronics Conference ), in 2014 27TH International Vacuum Nanoelectronics Conference (IVNC), 345 E 47TH ST, NEW YORK, NY 10017 USA, 2014.
P. D. Joshi, Joag, D. S., Rout, C. Shekhar, and Late, D. J., Photosensitive field emission study of SnS2 nanosheets, Journal of Vacuum Science & Technology B, vol. 33, no. 3, p. Article Number: 03C106, 2015.
C. G. Nardele and Asha, S. K., Photoresponsive smectic liquid crystalline multipods and hyperbranched azo polymers, Journal of Physical Chemistry B, vol. 118, no. 6, pp. 1670-1684, 2014.
A. Kumar Mandal, Gangopadhyay, M., and Das, A., Photo-responsive pseudorotaxanes and assemblies, Chemical Society Reviews, vol. 44, no. 3, pp. 663-676, 2015.
N. Kalva, Basutkar, N. B., and Ambade, A. V., Photoresponsive assemblies of linear-dendritic copolymers containing azobenzene in the dendron interior: the effect of the dendron structure on dye encapsulation and release, RSC Advances, vol. 6, no. 49, pp. 43163-43170, 2016.
N. T. Shelke, Karle, S. C., and Karche, B. R., Photoresponse properties of CdSe thin film photodetector, Journal of Materials Science-Materials in Electronics, vol. 31, no. 18, pp. 15061-15069, 2020.
R. Harikrishna, Shaikh, A. W., Ponrathnam, S., Rajan, C. R., and Bhongale, S. Sitaram, Photopolymerization of high internal phase emulsions based on 2-ethylhexyl (meth)acrylates and ethylene glycol dimethacrylate, Designed Monomers and Polymers, vol. 17, no. 1, pp. 1-6, 2014.
R. Harikrishna, Ponrathnam, S., Rajan, C. R., and Tambe, S. S., Photopolymerization of bis-aromatic and alicyclic based solid urethane acrylate macromonomer in the presence of large excess of reactive diluent Kinetics and modeling, Journal of Thermal Analysis and Calorimetry, vol. 112, no. 2, pp. 805-813, 2013.
H. Reghunathan, Photopolymerization kinetics of block polyether based terminal urethane methacrylate with/without cross-linker, Advances in Polymer Technology, vol. 33, no. 3, p. 21418, 2014.
R. Harikrishna, Ponrathnam, S., and Rajan, C. R., Photopolymerization kinetics of bis-aromatic based urethane acrylate macromonomers in the presence of reactive diluent, Progress in Organic Coatings, vol. 77, no. 1, pp. 225-231, 2014.
R. V. Ghorpade, Bhosle, S. Madhavrao, Ponrathnam, S., Rajan, C. R., Chavan, N., and Harikrishna, R., Photopolymerization kinetics of 2-phenylethyl (meth) acrylates studied by photo DSC, Journal of Polymer Research, vol. 19, no. 2, p. 9811, 2012.
Neha, Sardana, H. K., Kanawade, R., and Dogra, N., Photoplethysmograph based arrhythmia detection using morphological features, Biomedical Signal Processing and Control, vol. 81, p. 104422, 2023.
S. Vasudevan and Prabhune, A. A., Photophysical studies on curcumin-sophorolipid nanostructures: applications in quorum quenching and imaging, Royal Society Open Science, vol. 5, no. 2, p. 170865, 2018.
S. Verma, Kar, P., Das, A., and Ghosh, H. Nath, Photophysical properties of ligand localized excited state in ruthenium(ii) polypyridyl complexes: a combined effect of electron donor-acceptor ligand, Dalton Trans, vol. 40, no. 38, pp. 9765-9773, 2011.
V. D. Deepak and Asha, S. K., Photophysical investigation into the self-organization in pyrene-based urethane methacrylate comb polymer, Journal of Physical Chemistry B, vol. 113, no. 35, pp. 11887-11897, 2009.
R. Babu, Kelkar, S. A., Kashid, V., Achary, S. N., Salunke, H. G., and Gupta, N. M., Photophysical, bandstructural, and textural properties of o-FeNbO4 in relation to its cocatalyst-assisted photoactivity for water oxidation, RSC Advances, vol. 4, no. 63, pp. 33435-33445, 2014.
J. Debgupta, Mandal, S., Kalita, H., Aslam, M., Patra, A., and Pillai, V., Photophysical and photoconductivity properties of thiol-functionalized graphene-CdSe QD composites, RSC Advances, vol. 4, no. 27, pp. 13788-13795, 2014.
M. Kandpal, Sharan, C., Poddar, P., Prashanthi, K., Apte, P. R., and V. Rao, R., Photopatternable nano-composite (SU-8/ZnO) thin films for piezo-electric applications, Applied Physics Letters, vol. 101, no. 10, p. 104102, 2012.
S. Morlat-Therias, Fanton, E., Tomer, N. S., Rana, S., Singh, R. P., and Gardette, J. Luc, Photooxidation of vulcanized EPDM/montmorillonite nanocomposites, Polymer Degradation and Stability, vol. 91, no. 12, pp. 3033-3039, 2006.
B. Kumar, Rana, S., and Singh, R. P., Photo-oxidation of EPDM/layered double hydroxides composites: influence of layered hydroxides and stabilizers, Express Polymer Letters, vol. 1, no. 11, pp. 748-754, 2007.
S. Chakraborty, Purkayastha, D. Dhar, Das, G., Bhattacharjee, C. R., Mondal, P., S. Prasad, K., and Rao, D. S. Shankar, Photoluminescent tetrahedral d(10)-metal Schiff base complexes exhibiting highly ordered mesomorphism, Polyhedron, vol. 105, pp. 150-158, 2016.
A. S. Ethiraj, Hebalkar, N., Kharrazi, S., Urban, J., Sainkar, S. R., and Kulkarni, S. K., Photoluminescent core-shell particles of organic dye in silica, Journal of Luminescence, vol. 114, no. 1, pp. 15-23, 2005.
V. A. Murugan, Viswanath, A. Kasi, Ravi, V., Kakade, B. A., and Saaminathan, V., Photoluminescence studies of Eu3+ doped Y2O3 nanophosphor prepared by microwave hydrothermal method, Applied Physics Letters, vol. 89, no. 12, p. 123120, 2006.
S. C. Navale and Mulla, I. S., Photoluminescence and gas sensing study of nanostructured pure and Sn doped ZnO, Materials Science & Engineering C-Biomimetic and Supramolecular Systems, vol. 29, no. 4, pp. 1317-1320, 2009.
S. Reddy Tulsani and Rath, A. Kumar, Photo-induced surface modification to improve the performance of lead sulfide quantum dot solar, Journal of Colloid and Interface Science, vol. 522, pp. 120-125, 2018.
B. Sai Allaka, Basavoju, S., and Krishna, G. Rama, Photoinduced multicomponent regioselective synthesis of 1,4,5-trisubstituted-1,2,3-triazoles: transition metal-, azide- and oxidant-free protocol, Advanced Synthesis & Catalysis, vol. 363, no. 14, pp. 3560-3565, 2021.
V. Ramu, Aute, S., Taye, N., Guha, R., Walker, M. G., Mogare, D., Parulekar, A., Thomas, J. A., Chattopadhyay, S., and Das, A., Photo-induced cytotoxicity and anti-metastatic activity of ruthenium(II)-polypyridyl complexes functionalized with tyrosine or tryptophan, Dalton Transactions, vol. 46, no. 20, pp. 6634-6644, 2017.
N. Ojha, Thakkar, K., Bajpai, A., Joshi, K., and Kumar, S., Photoinduced CO2 and N2 reductions on plasmonically enabled gallium oxide, Journal of Colloid and Interface Science, vol. 629, pp. 654-666, 2023.
C. Das, Kumar, A., Kumar, S., Dambhare, N. V., Kumar, M., Rath, A. K., and Sahu, S., Photogating induced high sensitivity and speed from heterostructure of few-layer MoS2 and reduced graphene oxide-based photodetector, Physical Chemistry Chemical Physics, vol. 25, no. 44, pp. 30419-30427, 2023.
T. Dubey, Nalini, G. Vijay, Chandrashekara, K. Thammaiah, and Chinnathambi, S., Photoexcited toluidine blue inhibits tau aggregation in Alzheimer's disease, Acs Omega, vol. 4, no. 20, pp. 18793-18802, 2019.
P. G. Chavan, More, M. A., Joag, D. S., Badadhe, S. S., and Mulla, I. S., Photo-enhanced field emission studies of tapered CdS nanobelts, in 2014 27th International Vacuum Nanoelectronics Conference (IVNC) , 345 E 47th St, New York, NY 10017 USA, 2014.
V. Sharma, Dixit, M., Satsangi, V. R., Dass, S., Pal, S., and Shrivastav, R., Photoelectrochemical splitting of water with nanocrystalline Zn1-xMnxO thin films: first-principle DFT computations supporting the systematic experimental endeavor, International Journal of Hydrogen Energy, vol. 39, no. 8, pp. 3637-3648, 2014.
A. V. Kokate, Asabe, M. R., Delekar, S. D., Gavali, L. V., Mulla, I. S., Hankare, P. P., and Chougule, B. K., Photoelectrochemical properties of electrochemically deposited CdIn2S4 thin films, Journal of Physics and Chemistry of Solids, vol. 67, no. 11, pp. 2331-2336, 2006.
P. P. Hankare, Rathod, K. C., Asabe, M. R., Jadhav, A. V., Helavi, V. B., Chavan, S. S., Garadkar, K. M., and Mulla, I. S., Photoelectrochemical applications of In2Se3 thin films by chemical deposition, Journal of Materials Science-Materials in Electronics, vol. 22, no. 4, pp. 359-364, 2011.
T. Dubey and Chinnathambi, S., Photodynamic treatment modulates various GTPase and cellular signalling pathways in Tauopathy, Small GTPases, pp. 1-13, 2021.
T. Dubey and Chinnathambi, S., Photodynamic sensitizers modulate cytoskeleton structural dynamics in neuronal cells, Cytoskeleton, vol. 78, no. 6, pp. 232-248, 2021.
T. Dubey, Gorantla, N. Vijay, Chandrashekara, K. Thammaiah, and Chinnathambi, S., Photodynamic exposure of Rose-Bengal inhibits Tau aggregation and modulates cytoskeletal network in neuronal cells, Scientific Reports, vol. 10, no. 1, p. 12380, 2020.
K. Bhattacharyya, Tripathi, A. K., Gupta, N. M., and Tyagi, A. K., Photodegradation of methanol under UV-visible irradiation by titania dispersed on polyester cloth, Photochemistry and Photobiology, vol. 86, no. 2, pp. 241-246, 2010.
S. N. Fernandes, Correia, S., Matos, I., Marques, M. M., Rana, S., Kumar, B., Gupta, M. K., and Singh, R. P., Photodegradation of ethylene/propylene/polar monomers, Co-, and terpolymers. II. prepared by Ni catalyst systems, Journal of Applied Polymer Science, vol. 104, no. 3, pp. 1783-1791, 2007.
S. N. Fernandes, Correia, S., Prasad, A. V., Reddy, K. R., Rana, S., Lonkar, S. P., Marques, M. M., and Singh, R. P., Photodegradation of ethylene/propylene/polar monomers co- and terpolymers. I - Prepared by group 4 catalyst systems, Journal of Macromolecular Science-Pure and Applied Chemistry, vol. A42, pp. 1259-1270, 2005.
B. Kumar, Kumar, I., and Singh, R. P., Photodegradation of EPDM/MWCNT nanocomposites: effect of singlet oxygen, Polymer Composites, vol. 30, no. 7, pp. 855-860, 2009.
B. Garai, Mallick, A., and Banerjee, R., Photochromic metal-organic frameworks for inkless and erasable printing, Chemical Science, vol. 7, no. 3, pp. 2195-2200, 2016.
B. Garai and Banerjee, R., Photochromic metal organic frameworks for inkless and erasable printing, Acta Crystallographica A‐Foundation and Advances, vol. 70, p. C110, 2014.
P. Pratim Das, Mukhopadhyay, S., Agarkar, S. A., Jana, A., and P. Devi, S., Photochemical performance of ZnO nanostructures in dye sensitized solar cells, Solid State Sciences, vol. 48, pp. 237-243, 2015.
K. Livanov, Madhu, V., Balaraman, E., Shimon, L. J. W., Diskin-Posner, Y., and Neumann, R., Photocatalytic splitting of CS2 to a carbon-sulfur polymer and S8 catalyzed by a bimetallic ruthenium(II) compound with a tertiary amine binding site - towards photocatalytic splitting of CO2?, Inorganic Chemistry, vol. 50, no. 22, pp. 11273–11275, 2011.
A. Klyushin, Ghosalya, M., Kokkonen, E., Eads, C., Jones, R., Nalajala, N., Gopinath, C. S., and Urpelainen, S., Photocatalytic setup for in situ and operando ambient-pressure X-ray photoelectron spectroscopy at MAX IV Laboratory, Journal of Synchrotron Radiation, vol. 30, pp. 613-619, 2023.
S. V. Awate, Sahu, R. K., Kadgaonkar, M. D., Kumar, R., and Gupta, N. M., Photocatalytic mineralization of benzene over gold containing titania nanotubes: role of adsorbed water and nanosize gold crystallites, Catalysis Today, vol. 141, no. 1-2, pp. 144-151, 2009.
S. Saha, Das, G., Thote, J., and Banerjee, R., Photocatalytic metal-organic framework from cds quantum dot incubated luminescent metallohydrogel, Journal of the American Chemical Society, vol. 136, no. 42, pp. 14845-14851, 2014.
A. M. Raja, Vijayarengan, P., Pal, Y., Nalajala, N., and Gopinath, C., Photocatalytic hydrogen production from H2S using nanostructured CNT blended CdZnS/Fe2O3 thin film on glass substrate, Journal of Physics Conference Series, vol. 1495. IOP Publishing Ltd, 2020.
S. A. Rawool, Samanta, A., Ajithkumar, T. G., Kar, Y., and Polshettiwar, V., Photocatalytic hydrogen generation and CO2 conversion using g-C3N4 decorated dendritic fibrous nanosilica: role of interfaces between silica and g-C3N4, ACS Applied Energy Materials, vol. 3, no. 9, pp. 8150-8158, 2020.
S. B. Narendranath, Yadav, A. Kumar, Bhattacharyya, D., Jha, S. Nath, and R. Devi, N., Photocatalytic H-2 evolution from water-methanol system by anisotropic InFeO3(ZnO)(m) oxides without cocatalyst in visible light, ACS Applied Materials & Interfaces, vol. 6, no. 15, pp. 12321-12327, 2014.
S. B. Narendranath, Thekkeparambil, S. V., George, L., Thundiyil, S., and R. Devi, N., Photocatalytic H-2 evolution from water-methanol mixtures on InGaO3(ZnO)(m) with an anisotropic layered structure modified with CuO and NiO cocatalysts, Journal of Molecular Catalysis A-Chemical, vol. 415, pp. 82-88, 2016.
P. V. Korake, Sridharkrishna, R., Hankare, P. P., and Garadkar, K. M., Photocatalytic degradation of phosphamidon using Ag-doped ZnO nanorods, Toxicological and Environmental Chemistry, vol. 94, no. 6, pp. 1075-1085, 2012.
P. A. Mangrulkar, Kamble, S. P., Joshi, M. M., Meshram, J. S., Labhsetwar, N. K., and Rayalu, S. S., Photocatalytic degradation of phenolics by N-doped mesoporous titania under solar radiation, International Journal of Photoenergy, p. Article No. 780562, 2012.
R. Shetty, Chavan, V. B., Kulkarni, P. Shripad, Kulkarni, B. D., and Kamble, S. P., Photocatalytic degradation of pharmaceuticals pollutants using N-doped TiO 2 photocatalyst: identification of CFX degradation intermediates, Indian Chemical Engineer, vol. 59, no. 3, 2017.
C. Hariharan, Photocatalytic degradation of organic contaminants in water by ZnO nanoparticles: revisited, Applied Catalysis A-General, vol. 304, no. 1, pp. 55-61, 2006.
P. D. Bhange, Awate, S. V., Gholap, R. S., Gokavi, G. S., and Bhange, D. S., Photocatalytic degradation of methylene blue on Sn-doped titania nanoparticles synthesized by solution combustion route, Materials Research Bulletin, vol. 76, pp. 264-272, 2016.
T. Telang, Deosarkar, M. P., Shetty, R., and Kamble, S. P., Photocatalytic degradation of herbicide by using aeroxide®P-90 TiO2 photocatalyst and photo-fenton process in the presence of artificial and solar radiation, in Novel water treatment and separation methods: simulation of chemical processes, 1st ed., New York: CRC Press, 2017, pp. 1-18.
R. Shetty, Kothari, G., Tambe, A. S., Kulkarni, B. D., and Kamble, S. P., Photocatalytic degradation of ciprofloxacin center dot HCl using Aeroxide (R) P-25 TiO2 photocatalyst: comparative evaluation of solar and artificial radiation, Indian Journal of Chemistry Section A-Inorganic Bio-Inorganic Physical Theoretical & Analytical Chemistry, vol. 55, no. 1, pp. 16-22, 2016.
T. C. Jagadale, Kulkarni, M., Pravarthana, D., Ramadan, W., and Thakur, P., Photocatalytic degradation of Azo dyes using Au:TiO2, gamma-Fe2O3:TiO2 functional nanosystems, Journal of Nanoscience and Nanotechnology, vol. 12, no. 2, pp. 928-936, 2012.
V. Ramaswamy, Jagtap, N., Vijayanand, S., Bhange, D. S., and Awati, P., Photocatalytic decomposition of methylene nanocrystalline titania prepared by different blue on methods, Materials Research Bulletin, vol. 43, no. 5, pp. 1145-1152, 2008.
P. Yadav, Kumar, S., Velankanni, N., Kuehne, T. D., Gosavi, S., Raghupathy, R. Kormath Ma, Bhosale, R., Held, G., Shelke, M., and Ogale, S., Photocatalytic CO2 reduction to syngas using nickel phosphide-loaded CdS under visible light irradiation, Journal of Physics-Energy, vol. 6, no. 2, p. 025019, 2024.
J. Li, Liu, T., Singh, N., Huang, Z., Ding, Y., Huang, J., Sudarsanam, P., and Li, H., Photocatalytic C-N bond construction toward high-value nitrogenous chemicals, Chemical Communications, vol. 59, no. 97, pp. 14341-14352, 2023.
A. B. Gambhire, Lande, M. K., Mandale, A. B., Patil, K. R., and Arbad, B. R., Photocatalytic activity and characterization of sol-gel-derived Cr(III)-doped TiO(2)-coated active carbon composites, Philosophical Magazine, vol. 88, no. 5, pp. 767-779, 2008.
M. K. Sahoo, Saravanakumar, K., Jaiswal, G., and Balaraman, E., Photocatalysis enabling acceptorless dehydrogenation of diaryl hydrazines at room temperature, ACS Catalysis, vol. 8, no. 8, pp. 7727-7733, 2018.
P. A. Kumar, Pandey, J. K., Kumar, B., and Singh, R. P., Photo-bio-degradability of agro waste and ethylene-propylene copolymers composites under abiotic and biotic environments, Journal of Polymers and the Environment, vol. 14, no. 2, pp. 203-212, 2006.
A. Ghosh, Das, P., Gill, M. R., Kar, P., Walkar, M. G., Thomas, J. A., and Das, A., Photoactive RuII-polypyridyl complexes that display sequence selectivity and high-affinity binding to duplex DNA through groove binding, Chemistry A European Journal, vol. 17, no. 7, pp. 2089–2098, 2011.
A. Jha, Mote, K. R., Chandra, S., Madhu, P. K., and Dasgupta, J., Photoactive anthraquinone-based host-guest assembly for long-lived charge separation, Journal of Physical Chemistry C , vol. 125, no. 20, pp. 10891-10900, 2021.
R. Tiwari, Shinde, P. S., Sreedharan, S., Dey, A. Kumar, Vallis, K. A., Mhaske, S. B., Pramanik, Skumar, and Das, A., Photoactivatable prodrug for simultaneous release of mertansine and CO along with a BODIPY derivative as a luminescent marker in mitochondria: a proof of concept for NIR image-guided cancer therapy, Chemical Science, vol. 12, no. 7, pp. 2667-2673, 2021.
D. J. Late, Bhat, A., and Rout, C. Sekhar, Photo sensor based on 2D materials, in Fundamentals and Sensing Applications of 2D Materials, Elsevier, 2019, pp. 465-479.
M. H. Bhure, Kumar, I., Natu, A. D., Chikate, R. C., and Rode, C. V., Phosphotungstic acid on silica with modified acid sites as a solid catalyst for selective cleavage of tert-butyldimethylsilyl ethers, Catalysis Communications, vol. 9, no. 9, pp. 1863-1868, 2008.
M. H. Bhure, Rode, C. V., Chikate, R. C., Patwardhan, N., and Patil, S., Phosphotungstic acid as an efficient solid catalyst for intramolecular rearrangement of benzyl phenyl ether to 2-benzyl phenol, Catalysis Communications, vol. 8, no. 2, pp. 139-144, 2007.
T. Tewari, Kumar, R., Chandanshive, A. C., and Chikkali, S. H., Phosphorus ligands in hydroformylation and hydrogenation: a personal account, Chemical Record, 2021.
S. Maity, Ram, F., and Dhar, B. Bijayi, Phosphorous-doped graphitic material as a solid acid catalyst for microwave-assisted synthesis of beta-ketoenamines and baeyer-villiger oxidation, ACS Omega, vol. 5, no. 26, pp. 15962-15972, 2020.
S. Chandra, Kundu, T., Kandambeth, S., BabaRao, R., Marathe, Y. N., Kunjir, S. M., and Banerjee, R., Phosphoric acid loaded azo (-N=N-) based covalent organic framework for proton conduction, Journal of the American Chemical Society, vol. 136, no. 18, pp. 6570-6573, 2014.
K. Y. Nandiwale, Gopal, G. C., and Bokade, V. V., Phosphonated USY, a promising catalyst for the development of environmentally benign biodiesel (methyl acetate) process, Journal of Energy Chemistry, vol. 24, no. 3, pp. 285-290, 2015.
S. Eknath Desale and Chinnathambi, S., Phosphoinositides signaling modulates microglial actin remodeling and phagocytosis in Alzheimer's disease, Cell Communication and Signaling, vol. 19, no. 1, p. 28, 2021.
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