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Journal Article
S. Devotta, Padalkar, A. S., and Sane, N. K., Performance assessment of HCFC-22 window air conditioner retrofitted with R-407C, Applied Thermal Engineering, vol. 25, no. 17-18, pp. 2937-2949, 2005.
K. Raja Puppala, Buddhiwant, P. G., Agawane, S. B., Kadam, A. S., Mote, C. S., Lonkar, V. D., Khire, J. M., and Dharne, M. S., Performance of Aspergillus niger (NCIM 563) phytase based feed supplement for broiler growth and phosphorus excretion, Biocatalysis and Agricultural Biotechnology, vol. 31, p. 101887, 2021.
A. Roy, Das, P. Pratim, Tathavadekar, M., Das, S., and Devi, P. Sujatha, Performance of colloidal CdS sensitized solar cells with ZnO nanorods/nanoparticles, Beilstein Journal of Nanotechnology, vol. 8, pp. 210-221, 2017.
A. Kumar Dutta, Vaval, N., and Pal, S., Performance of the EOMIP-CCSD(2) method for determining the structure and properties of doublet radicals: a benchmark investigation, Journal of Chemical Theory and Computation, vol. 9, no. 10, pp. 4313-4331, 2013.
S. Shylesh, Samuel, P. P., Sisodiya, S., and Singh, A. P., Periodic mesoporous silicas and organosilicas: an overview towards catalysis, Catalysis Surveys from Asia, vol. 12, no. 4, pp. 266-282, 2008.
A. Kumar and Pundle, A., Permeabilization effect of organic solvents on cell bound penicillin v acylase activity of Erwinia aroideae (DSMZ 30186), Journal of Biotechnology, vol. 136, p. S321, 2008.
S. Geetika Surapaneni, Choudhari, S. N., Avhad, S. V., and Ambade, A. V., Permeable polymersomes from temperature and pH dual stimuli-responsive PVCL-b-PLL block copolymers for enhanced cell internalization and lysosome targeting, Biomaterials Advances, vol. 151, p. 213454, 2023.
L. Thukral, Sengupta, D., and Gokhale, R. S., Permeation of lipidated protein in bilayer using unbiased simulations reveals signature motif for protein-membrane binding, Biophysical Journal, vol. 106, no. 2, p. 99A, 2014.
V. Sebastian, Khan, S. A., and Kulkarni, A. A., Perspective article: flow synthesis of functional materials, Journal of Flow Chemistry, vol. 7, no. 3-4, pp. 96-105, 2017.
D. J. Late, Rout, C. S., Chakravarty, D., and Ratha, S., Perspective on atomically thin 2d inorganic layered materials for biosensor, Journal of Nanomedicine Research, vol. 2, no. 1, 2015.
V. Ghormade, Deshpande, M. V., and Paknikar, K. M., Perspectives for nano-biotechnology enabled protection and nutrition of plants, Biotechnology Advances, vol. 29, no. 6, pp. 792-803, 2011.
A. Subramanian and Sarkar, R. Rup, Perspectives on leishmania species and stage-specific adaptive mechanisms, Trends In Parasitology, vol. 34, no. 12, p. 10.1016/j.pt.2018.09.004, 2018.
S. Menon and Sengupta, N., Perturbations in inter-domain associations may trigger the onset of pathogenic transformations in PrPC: insights from atomistic simulations, Molecular Biosystems, vol. 11, no. 5, pp. 1443-1453, 2015.
V. Sabarinathan, Ramasamy, S., and Ganapathy, S., Perturbations to Al-27 electric field gradients in nanocrystalline alpha-Al2O3 studied by high-resolution solid-state NMR, Journal of Physical Chemistry B, vol. 114, no. 5, pp. 1775-1781, 2010.
D. Ghosh, Perturbative approximation to hybrid equation of motion coupled cluster/effective fragment potential method, Journal of Chemical Physics, vol. 140, no. 9, p. 094101, 2014.
A. Kumar Dutta, Pal, S., and Ghosh, D., Perturbative approximations to single and double spin flip equation of motion coupled cluster singles doubles methods, Journal of Chemical Physics, vol. 139, no. 12, p. 124116, 2013.
D. Bhattacharya, Dutta, A. Kumar, Gupta, J., and Pal, S., Perturbative order analysis of the similarity transformed hamiltonian in fock-space coupled cluster theory: difference energy and electric response properties, Molecular Physics, vol. 113, no. 13-14, pp. 2046-2060, 2015.
A. K. Anoop, Agarwal, U. S., Nisal, A., and Joseph, R., PET-SWNT nanocomposites through ultrasound assisted dissolution-evaporation, European Polymer Journal, vol. 43, no. 6, pp. 2279-2285, 2007.
P. Dhasaiyan, Prevost, S., Baccile, N., and Prasad, B. L. V., pH- and time-resolved in situ SAXS study of self-assembled twisted ribbons formed by elaidic acid sophorolipids, Langmuir, vol. 34, no. 5, pp. 2121-2131, 2018.
P. Dubey, Kumar, S., Ravindranathan, S., Vasudevan, S., Aswal, V. K., Rajamohanan, P. R., Nisal, A., and Prabhune, A., pH dependent sophorolipid assemblies and their influence on gelation of silk fibroin protein, Materials Chemistry and Physics, vol. 203, pp. 9-16, 2018.
A. Kulkarni, Gaikwad, S. M., and Rao, M., pH Induced structural alterations in an aspartic protease from Vigna radiata indicating an alkali induced molten globule state, International Journal of Biological Macromolecules, vol. 43, no. 4, pp. 373-376, 2008.
R. Muthusamy and Kulkarni, M. Gopalkrish, pH Sensitive graft copolymers for zero order drug release: a mechanistic analysis, Drug Development and Industrial Pharmacy, vol. 38, no. 1, pp. 73-83, 2012.
R. Das, Balmik, A. Ankur, and Chinnathambi, S., Phagocytosis of full-length Tau oligomers by Actin-remodeling of activated microglia, Journal of Neuroinflammation, vol. 17, no. 1, p. 10, 2020.
G. Bolla and Nangia, A., Pharmaceutical cocrystals: walking the talk, Chemical Communications, vol. 52, no. 54, pp. 8342-8360, 2016.
A. Nangia, Pharmaceutical solids in crystal engineering, Acta Crystallographica A‐Foundation and Advances, vol. 70, p. C12, 2014.
S. Chavan, Tayade, S., Gupta, V., Deshmukh, V., and Sardeshmukh, S., Pharmaceutical standardization and physicochemical characterization of traditional ayurvedic marine drug: incinerated conch shell (shankha bhasma), Marine Drugs, vol. 16, no. 11, 2018.
S. B. Chavan, Gupta, V. S., Deshmukh, V. V., and Sardeshmukh, S. P., Pharmaceutical standardization and physicochemical characterization of traditional ayurvedic mineral drug red ochre roasted in cow's ghee (Shuddha Gairik), Indian Journal of Traditional Knowledge, vol. 21, no. 2, pp. 303-316, 2022.
R. Vyas, Goel, P., Karthikeyan, M., Tambe, S. S., and Kulkarni, B. D., Pharmacokinetic modeling of caco-2 cell permeability using genetic programming (GP) method, Letters in Drug Design & Discovery, vol. 11, no. 9, pp. 1112-1118, 2014.
R. Vyas, Karthikeyan, M., Nainaru, G., and Muthukrishnan, M., Pharmacophore and docking based virtual screening of validated mycobacterium tuberculosis targets, Combinatorial Chemistry & High Throughput Screening, vol. 18, no. 7, pp. 624-637, 2015.
R. Balasaheb Aher and Sarkar, D., Pharmacophore modeling of pretomanid (PA-824) derivatives for antitubercular potency against replicating and non-replicating Mycobacterium tuberculosis, Journal of Biomolecular Structure & Dynamics, vol. 39, no. 3, pp. 889-900, 2021.
P. Prakash, Vijayasarathi, D., Selvam, K., Karthi, S., and Manivasagaperumal, R., Pharmacore maping based on docking, ADME/toxicity, virtual screening on 3,5-dimethyl-1,3,4-hexanetriol and dodecanoic acid derivates for anticancer inhibitors, Journal of Biomolecular Structure & Dynamics, vol. 39, no. 12, pp. 4490-4500, 2021.
M. Krishnat Patil, Gaikwad, S. Hanmant, and Mukherjee, S. Porel, Phase- and morphology-controlled synthesis of tunable plasmonic MoO3-x nanomaterials for ultrasensitive surface-enhanced raman spectroscopy detection, Journal of Physical Chemistry C, vol. 124, no. 38, pp. 21082-21093, 2020.
R. Nanda and Kumar, A., Phase behavior, diffusion, structural characteristics, and pH of aqueous hydrophobic ionic liquid confined media: insights into microviscosity and microporsity in the [C(4)C(4)im][NTf2] + water system, Journal of Physical Chemistry B, vol. 119, no. 4, pp. 1641-1653, 2015.
N. Hiyoshi, Masuda, Y., Sato, O., Yamaguchi, A., Rode, C. V., and Shirai, M., Phase behavior of hydrogenation of 2-tert-butylphenol over a charcoal-supported rhodium catalyst in carbon dioxide solvent, Journal of Chemical and Engineering Data, vol. 54, no. 5, pp. 1610-1612, 2009.
E. Venugopal, Bhat, S. K., Vallooran, J. J., and Mezzenga, R., Phase behavior of lipid-based lyotropic liquid crystals in presence of colloidal nanoparticles, Langmuir, vol. 27, no. 16, pp. 9792-9800, 2011.
M. Kumar and Kumaraswamy, G., Phase behaviour of the ternary system: monoolein-water-branched polyethylenimine, Soft Matter, vol. 11, no. 28, pp. 5705-5711, 2015.
S. Sarkar, Chakraborty, S., and Roy, S., Phase diagram of self-assembled sophorolipid morphologies from mesoscale simulations, Journal of Molecular Liquids, vol. 254, pp. 198-207, 2018.
V. A. Murugan, Samuel, V., Navale, S. C., and Ravi, V., Phase evolution of NiTiO3 prepared by coprecipitation method, Materials Letters, vol. 60, no. 15, pp. 1791-1792, 2006.
K. Sreenivas, Basargekar, R., and Kumaraswamy, G., Phase separation of DMDBS from PP: effect of polymer molecular weight and tacticity, Macromolecules, vol. 44, no. 7, pp. 2358-2364, 2011.
S. Ali Khan and Ahmad, A., Phase, size and shape transformation by fungal biotransformation of bulk TiO2, Chemical Engineering Journal, vol. 230, pp. 367-371, 2013.
N. N. Gupta, Punekar, A. S., Raj, K. Raja E. K., Ghodekar, M. M., Patil, V. S., Gopinath, C. S., and Raja, T., Phase transfer ceria-supported nanocatalyst for nitrile hydration reaction, ACS Omega, vol. 4, no. 14, pp. 16037-16044, 2019.
T. Bala, Swami, A., Prasad, B. L. V., and Sastry, M., Phase transfer of oleic acid capped NicoreAgshell nanoparticles assisted by the flexibility of oleic acid on the surface of silver, Journal of Colloid and Interface Science, vol. 283, no. 2, pp. 422-431, 2005.
A. Ellis, D'Arcy-Galla, J., Vijayamohanan, K., Goswami, R., Ganesan, P. G., Ryu, C., and Ramanath, G., Phase transitions in octanethiol-capped Ag nanocluster microfilm assemblies, Thermochimica Acta, vol. 426, no. 1-2, pp. 207-212, 2005.
T. V. N. Ramachander and Rawal, S. K., PHB synthase from Streptomyces aureofaciens NRRL 2209, FEMS Microbiology Letters, vol. 242, no. 1, pp. 13-18, 2005.
P. Mishra, Patni, D., and Jha, S. Kumar, pH-dependent protein stability switch coupled to the perturbed pKa of a single ionizable residue, Biophysical Chemistry, vol. 274, p. 106591, 2021.
A. V. Nikam, Arulkashmir, A., Krishnamoorthy, K., Kulkarni, A. A., and Prasad, B. L. V., pH-Dependent single-step rapid synthesis of cuo and cu2o nanoparticles from the same precursor, Crystal Growth & Design, vol. 14, no. 9, pp. 4329-4334, 2014.
S. Kushwaha, Marcus, A. K., and Rittmann, B. E., pH-dependent speciation and hydrogen (H-2) control U(VI) respiration by Desulfovibrio vulgaris, Biotechnology and Bioengineering, vol. 115, no. 6, pp. 1465-1474, 2018.
S. Chhatre, Ichake, A., Harpale, K., Patil, S., Deshpande, A., More, M., and Wadgaonkar, P. P., Phenazine-containing poly(phenylenevinylene): a new polymer with impressive field emission properties, Journal of Polymer Research, vol. 25, no. 3, p. Article Number: 61, 2018.
V. Mullapudi, Bhogade, R. B., Deshpande, M. V., and Ramana, C. V., Phenol oxidative dearomatization of modified nucleoside templates: a simple access to the c7-spiroannulated octosyl acid framework, Synthesis-Stuttgart, vol. 49, no. 18, 2017.
B. M. Devassy, Shanbhag, G. V., and Halligudi, S. B., Phenol tert-butylation over zirconia-supported 12-molybdophosphoric acid catalyst, Journal of Molecular Catalysis A-Chemical, vol. 247, no. 1-2, pp. 162-170, 2006.
C. Das, Jain, B., and Krishnamoorthy, K., Phenols from green tea as a dual functional coating to prepare devices for energy storage and molecular separation, Chemical Communications, vol. 51, no. 58, pp. 11662-11664, 2015.
J. K. Salunke, Wong, F. L., Feron, K., Manzhos, S., Lo, M. Fai, Shinde, D., Patil, A., Lee, C. S., Roy, V. A. L., Sonar, P., and Wadgaonkar, P. P., Phenothiazine and carbazole substituted pyrene based electroluminescent organic semiconductors for OLED devices, Journal of Materials Chemistry C, vol. 4, no. 5, pp. 1009-1018, 2016.
S. Nagane, Ichake, A., Agrawal, I., Sadhanala, A., Friend, R. H., Ogale, S., and Wadgaonkar, P. P., Phenothiazine-based D-A-π-A dyes for highly efficient dye sensitized solar cells: effect of internal acceptor and non-conjugated π-spacer on device performance, ChemPlusChem, vol. 82, no. 2, pp. 280-286, 2017.
A. B. Vysakh, Lazar, A., Yadukiran, V., Singh, A. P., and Vinod, C. P., Phenylacetylene hydrogenation on Au@Ni bimetallic core-shell nanoparticles synthesized under mild conditions, Catalysis Science & Technology, vol. 6, no. 3, pp. 708-712, 2016.
R. Jannapu Reddy, Waheed, M., and Krishna, G. Rama, Phenylboronic acid-catalyzed tandem construction of S-S and C-S bonds: a new method for the synthesis of benzyl disulfanylsulfone derivatives from S-benzyl thiosulfonates, Organic & Biomolecular Chemistry, vol. 18, no. 17, pp. 3243-3248, 2020.
C. Dey, Kundu, T., Aiyappa, H. Barike, and Banerjee, R., Phosphate enriched polyoxometalate based ionic salts for proton conduction, RSC Advances, vol. 5, no. 3, pp. 2333-2337, 2015.
P. Sharma and Singh, A. P., Phosphine free SBA-15-EDTA-Pd highly active recyclable catalyst: synthesis characterization and application for suzuki and sonogashira reaction, Catalysis Science & Technology, vol. 4, no. 9, pp. 2978-2989, 2014.
L. Emmanuvel and Sudalai, A., Phosphine ligand and base-free, Pd-catalyzed oxidative cross-coupling reaction of arylboronic acids with arylmercuric acetates, Arkivoc, no. Part No. 14, pp. 126-133, 2007.
V. G. Landge, Pitchaimani, J., Midya, S. P., Subaramanian, M., Madhu, V., and Balaraman, E., Phosphine-free cobalt pincer complex catalyzed Z-selective semi-hydrogenation of unbiased alkynes, Catalysis Science & Technology, vol. 8, no. 2, pp. 428-433, 2018.
V. Yadav, Balaraman, E., and Mhaske, S. B., Phosphine-free manganese(II)-catalyst enables acceptorless dehydrogenative coupling of alcohols with indoles, Advanced Synthesis & Catalysis, vol. 363, no. 18, pp. 4430-4439, 2021.
S. E. Kurhade, Salunkhe, V. T., Siddaiah, V., Bhuniya, D., and D. Reddy, S., Phosphine-mediated synthesis of 1,4-oxazepine- and 1,5-oxazocine-based sugar hybrids from deoxysugar azides, Synthesis-Stuttgart, vol. 21, pp. 3523-3529, 2011.
S. Rani, Dash, S. Ranjan, Bera, A., Alam, M. Nirshad, Vanka, K., and Maity, P., Phosphite mediated asymmetric N to C migration for the synthesis of chiral heterocycles from primary amines, Chemical Science, vol. 12, pp. 8996-9003, 2021.
A. Motaleb, Rani, S., Das, T., Gonnade, R. G., and Maity, P., Phosphite-Catalyzed C-H allylation of azaarenes via an enantioselective [2,3]-Aza-wittig rearrangement , Angewandte Chemie-International Edition, 2019.
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.
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. 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.
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.
T. Tewari, Kumar, R., Chandanshive, A. C., and Chikkali, S. H., Phosphorus ligands in hydroformylation and hydrogenation: a personal account, Chemical Record, 2021.
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.
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.
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.
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.
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.
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.
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.
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.
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.
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.
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.
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.
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.
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.
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.
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.
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.
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. 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. 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.
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.
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.
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.
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.
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.
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. 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.
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.
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.
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.
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.
T. Dubey and Chinnathambi, S., Photodynamic sensitizers modulate cytoskeleton structural dynamics in neuronal cells, Cytoskeleton, vol. 78, no. 6, pp. 232-248, 2021.

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