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Y. Harima, Jiang, X., Patil, R., Komaguchi, K., and Mizota, H., Influence of film structure on mobilities of charge carriers in conducting polymers, Electrochimica Acta, vol. 52, no. 82, pp. 8088-8095, 2007.
H. A. Babrekar, Kulkarni, N. V., Jog, J. Prakash, Mathe, V. L., and Bhoraskar, S. V., Influence of filler size and morphology in controlling the thermal emissivity of aluminium/polymer composites for space applications, Materials Science and Engineering B-Advanced Functional Solid-State Materials, vol. 168, no. 1-3, pp. 40-44, 2010.
Y. Harima, Kim, D. H., Tsutitori, Y., Jiang, X., Patil, R., Ooyama, Y., Ohshita, J., and Kunai, A., Influence of extended pi-conjugation units on carrier mobilities in conducting polymers, Chemical Physics Letters, vol. 420, no. 4-6, pp. 387-390, 2006.
K. D. Pawar, Yadav, A. V., Shouche, Y. S., and Thengane, S. Ratnakar, Influence of endophytic fungal elicitation on production of inophyllum in suspension cultures of Calophyllum inophyllum L., Plant Cell Tissue and Organ Culture, vol. 106, no. 2, pp. 345-352, 2011.
C. V. Ramana, Induvadana, B., Srinivas, B., Yadagiri, K., Deshmukh, M. N., and Gonnade, R. G., Influence of electronic factors on pd-mediated cycloisomerization: a systematic investigation of competitive 6-exo-dig versus 7-endo-dig cyclizations of sugar alkynols, Tetrahedron, vol. 65, no. 47, pp. 9819-9832, 2009.
C. V. Ramana, Mallik, R., and Gonnade, R. G., Influence of electronic factors on palladium-mediated cycloisomerization: a systematic investigation of competitive 5-exo-dig versus 6-endo-dig cyclizations of sugar alkynols, Tetrahedron, vol. 64, no. 1, pp. 219-233, 2008.
R. Kar, Chandrakumar, K. R. S., and Pal, S., Influence of electric field on the global and local reactivity descriptors: reactivity and stability of weakly bonded complexes, Journal of Physical Chemistry A, vol. 111, no. 2, pp. 375-383, 2007.
A. Adhikari, Radhakrishnan, S., and Patil, R., Influence of dopant ions on properties of conducting polypyrrole and its electrocatalytic activity towards methanol oxidation, Synthetic Metals, vol. 159, no. 15-16, pp. 1682-1688, 2009.
S. M. Dar, Dholakia, B. B., Kulkarni, A. P., Oak, P. S., Shanmugam, D., Gupta, V. S., and Giri, A. P., Influence of domestication on specialized metabolic pathways in fruit crops, Planta, vol. 253, no. 2, p. 61, 2021.
K. Sreenivas, Pol, H. V., and Kumaraswamy, G., Influence of DMDBS on the morphology and mechanical properties of polypropylene cast films, Polymer Engineering and Science, vol. 51, no. 10, pp. 2013-2023, 2011.
K. Rao Vankudoth, Influence of different species of Penicillium and their culture filtrates on seed germination and seedling growth of sorghum, Journal of Biochemical Technology, vol. 5, no. 4, pp. 832 - 837, 2014.
S. Penugonda, Rao, V. Koteswara, Sivadevuni, G., and Reddy, S. Madhusudha, Influence of different fusarium species on seed germination and seedlings growth of finger millet (Eleusine coracana L.), Indian Journal of Biotechnology, vol. 11, no. 3, pp. 81-89, 2015.
C. Hubert Geerkens, Miller-Rostek, P., Matejka, A. Elisabeth, Nene, S., Kammerer, D. Rolf, Carle, R., and Schweiggert, R. Martin, Influence of cultivar, ripeness, blanching, drying, irradiation, and pectin recovery on alk(en)ylresorcinols in mango peels, European Food Research and Technology, vol. 240, no. 6, pp. 1235-1245, 2015.
S. Menon and Sengupta, N., Influence of crowding and surfaces on protein amyloidogenesis: A thermo-kinetic perspective , Biochimica ET Biophysica Acta-Proteins and Proteomics, vol. 1867, no. 10, pp. 941-953, 2019.
A. Kumar, Sakpal, T., Linga, P., and Kumar, R., Influence of contact medium and surfactants on carbon dioxide clathrate hydrate kinetics, Fuel, vol. 105, pp. 664-671, 2013.
S. Malwadkar, Bera, P., and Satyanarayana, C. V. V., Influence of cobalt on performance of Cu-CeO2 catalysts for preferential oxidation of CO, Journal of Rare Earths, vol. 38, no. 9, pp. 941-950, 2020.
D. Manzoor, Pal, S., and Krishnamurty, S., Influence of charge and ligand on the finite temperature behavior of gold clusters: a BOMD study on Au-6 cluster, Journal of Physical Chemistry C, vol. 117, no. 40, pp. 20982-20990, 2013.
A. Dadwal and Dadwal, A., Influence of chain length of long-chain fatty acid surfactant on the thermal conductivity of magnetite nanofluids in a magnetic field, Colloids and Surfaces A-Physicochemical and Engineering Aspects, vol. 555, pp. 525-531, 2018.
R. Pandya, Mane, R., and Rode, C., Influence of catalyst reduction temperature on autogenous glycerol hydrogenolysis over NiAl catalyst, Asian Journal of Organic Chemistry, vol. 11, no. 2, p. e202100704, 2022.
H. Xu, Lele, A. K., and Rastogi, S., Influence of carbon-based nanofillers on the melt flow singularity of linear polyethylene, Polymer, vol. 52, no. 14, pp. 3163-3174, 2011.
R. B. Mane, Patil, S., Shirai, M., Rayalu, S. S., and Rode, C. V., Influence of carbon based supports on selectivity behavior of diols and propanol in Ru catalyzed glycerol hydrogenolysis, Applied Catalysis B: Environmental, vol. 204, 2017.
V. Sharma, Prasad, M., Jadkar, S., and Pal, S., Influence of carbon and phosphorus doping on electronic properties of ZnO, Journal of Materials Science-Materials in Electronics, vol. 27, no. 12, pp. 12318-12322, 2016.
S. Penugonda, Rao, V. Koteswara, K. Rao, N., Sivadevuni, G., and Reddy, S. Madhusudha, Influence of carbon and nitrogen source on growth, DON and NIV production by two species of fusarium isolated from finger millets, International Journal of Pharmacy and Pharmaceutical Sciences, vol. 7, no. 3, pp. 136-139, 2015.
J. Kim, Singh, N., and L. Lyon, A., Influence of ancillary binding and nonspecific adsorption on bioresponsive hydrogel microlenses, Biomacromolecules, vol. 8, no. 4, pp. 1157-1161, 2007.
V. H. Rane, Chaudhari, S. T., and Choudhary, V. R., Influence of alkali metal doping on surface properties and catalytic activity/selectivity of CaO catalysts in oxidative coupling of methane, Journal of Natural Gas Chemistry, vol. 17, no. 4, pp. 313-320, 2008.
M. M. Telkar, Rode, C. V., Rane, V. H., and Chaudhari, R., Influence of alkali metal doping on selectivity behaviour of platinum catalysts for hydrogenation of 2-butyne-1,4-diol, Catalysis Communications, vol. 6, no. 11, pp. 725-730, 2005.
P. S. Niphadkar, Joshi, P. N., Deshpande, S. S., and Bokade, V. V., Influence of Al3+ insertion in the stannosilicate MFI framework on the catalytic performance in vapor phase aniline N-methylation, Applied Catalysis A-General, vol. 401, no. 1-2, pp. 182-188, 2011.
K. D. Pawar and Thengane, S. Ratnakar, Influence of abiotic elicitation on production of dipyranocoumarins in suspension cultures of calophyllum inophyllum L., Acta Physiologiae Plantarum, vol. 33, no. 6, pp. 2149-2158, 2011.
P. Lokhande, Sonone, K., and Dhepe, P. L., Industry-oriented method for the aqueous phase oxidation of crude 5-hydroxymethyl furfural (HMF) to 2,5-furandicarboxylic acid (FDCA), New Journal of Chemistry, vol. 47, no. 32, pp. 15325-15335, 2023.
V. M. Bhandari, Sorokhaibam, L. Gayatri, and Ranade, V. V., Industrial wastewater treatment for fertilizer industry a case study, Desalination and Water Treatment, vol. 57, no. 57, pp. 27934-27944, 2016.
B. P. Bhusare, John, C. K., Bhatt, V. P., and Nikam, T. D., Induction of somatic embryogenesis in leaf and root explants of Digitalis lanata Ehrh.: direct and indirect method, South African Journal of Botany, vol. 130, pp. 356-365, 2020.
S. Karak, Dey, K., Torris, A., Halder, A., Bera, S., Kanheerampockil, F., and Banerjee, R., Inducing disorder in order: hierarchically porous covalent organic framework nanostructures for rapid removal of persistent organic pollutants, Journal of the American Chemical Society, vol. 141, no. 18, pp. 7572-7581, 2019.
A. Kumar Rath and Pal, A. J., Induce negative differential resistance in organic devices through a ferroelectric polymer, Organic Electronics, vol. 10, no. 6, pp. 1116–1119, 2009.
R. A. Mashelkar, Indovation' for affordable excellence, Current Science, vol. 108, no. 1, pp. 7-8, 2015.
A. Kumar Singh and Nithyanandhan, J., Indoline-based donor-pi-acceptor visible-light responsive organic dyes for dye-sensitized solar cells: co-sensitization with squaraine dye for panchromatic IPCE response, ACS Applied Energy Materials, vol. 5, no. 2, pp. 1858-1868, 2022.
V. Chavan, Achuthankutty, C. T., E. Berghe, V., and Wafar, M., IndOBIS, an ocean biogeographic information system for assessment and conservation of indian ocean biodiversity, Indian Journal of Marine Sciences, vol. 34, no. 1, pp. 120-127, 2005.
R. Anant Mashelkar, India's science for all academy, Science, vol. 335, no. 6071, p. 891, 2012.
R. Bisht, Kavungathodi, M. Fairoos Me, and Nithyanandhan, J., Indenoquinaldine-based unsymmetrical squaraine dyes for near-infrared absorption: investigating the steric and electronic effects in dye-sensitized solar cells, Chemistry-A European Journal, vol. 24, no. 61, pp. 16368-16378, 2018.
V. Chavan, Rane, N. S., Ghate, H. V., and Krishnan, S., IndCollections: biological specimens in Indian collections, Current Science, vol. 89, pp. 1454-1455, 2005.
A. Suryawanshi, Mhamane, D., Nagane, S., Patil, S., Aravindan, V., Ogale, S., and Srinivasan, M., Indanthrone derived disordered graphitic carbon as promising insertion anode for sodium ion battery with long cycle life, Electrochimica Acta, vol. 146, pp. 218-223, 2014.
J. P. Amoureux, Delevoye, L., Steuernagel, S., Gan, Z., Ganapathy, S., and Montagne, L., Increasing the sensitivity of 2D high-resolution NMR methods applied to quadrupolar nuclei, Journal of Magnetic Resonance, vol. 172, no. 2, pp. 268-278, 2005.
D. Kataria, Krishnamoorthy, K., and S. Iyer, S. Kumar, Increasing light coupling in a photovoltaic film by tuning nanoparticle shape with substrate surface energy, Materials Research Express, vol. 4, no. 8, p. Article Number: 085022, 2017.
S. Thombre and Gadgil, M., Increase in efficiency of media utilization for recombinant protein production in Chinese hamster ovary culture through dilution, Biotechnology and Applied Biochemistry, vol. 58, no. 1, pp. 25-31, 2011.
S. Ravindranathan, Oberstrass, F. C., and Allain, F. H. T., Increase in backbone mobility of the VTS1p-SAM domain on binding to SRE-RNA, Journal of Molecular Biology, vol. 396, no. 3, pp. 732-746, 2010.
J. N. Ganguli, Chakrabortty, D., and Satyanarayana, C. V. V., Incorporation of zirconium in medium-pore aluminophosphate molecular sieves with AEL framework, Microporous and Mesoporous Materials, vol. 108, no. 1-3, pp. 223-229, 2008.
D. Chakrabortty, Ganguli, J. N., and Satyanarayana, C. V. V., Incorporation of zirconium in medium-pore aluminophosphate molecular sieves with AFO framework, Microporous and Mesoporous Materials, vol. 137, no. 1-3, pp. 65-71, 2011.
M. Sasidharan, Kiyozumi, Y., Mal, N. K., Paul, M., Rajamohanan, P. R., and Bhaumik, A., Incorporation of tin in different types of pores in SBA-15: synthesis, characterization and catalytic activity, Microporous and Mesoporous Materials, vol. 126, no. 3, pp. 234-244, 2009.
S. V. Shaligram, Rewar, A. S., Wadgaonkar, P. P., and Kharul, U. K., Incorporation of rigid polyaromatic groups in polybenzimidazole-based polymeric ionic liquids: assertive effects on gas permeation properties, Polymer, vol. 93, pp. 30-36, 2016.
M. Dohade, Incorporation of carbon nanofibers into a matrimid polymer matrix: effects on the gas permeability and selectivity properties, Applied Polymer, vol. Volume 135 , no. Issue 12 , 2018.
S. Haldar, Rase, D., Shekhar, P., Jain, C., Vinod, C. Prabhakara, Zhang, E., Shupletsov, L., Kaskel, S., and Vaidhyanathan, R., Incorporating conducting polypyrrole into a polyimide COF for carbon-free ultra-high energy supercapacitor, Advanced Energy Materials, vol. 12, no. 34, p. 2200754, 2022.
C. V. Suneel Kumar, Puranik, V. G., and Ramana, C. V., InCl3-mediated addition of indole to isatogens: an expeditious synthesis of 13-deoxy-isatisine A, Chemistry-A European Journal, vol. 18, no. 31, pp. 9601-9611, 2012.
D. De, Dutta, D., Kundu, M., Mahato, S., Schiavone, M. T., Chaudhuri, S., Giri, A. P., Gupta, V., and Bhattacharya, S. K., Inactive enzymatic mutant proteins (phosphoglycerate mutase and enolase) as sugar binders for ribulose-1,5-bisphosphate regeneration reactors, Microbial Cell Factories, vol. 4, p. Article No. 5, 2005.
S. K. Niture, Kumar, A. R., Parab, P. B., and Pant, A., Inactivation of polygalacturonase and pectate lyase produced by pH tolerant fungus Fusarium moniliforme NCIM 1276 in a liquid medium and in the host tissue, Microbiological Research, vol. 163, no. 1, pp. 51-62, 2008.
S. Rajaambal, Mapa, M., and Gopinath, C. S., In1-XGaXN@ZnO: a rationally designed and quantum dot integrated material for water splitting and solar harvesting applications, Dalton Transactions, vol. 43, no. 33, pp. 12546-12554, 2014.
R. Prasad, Agawane, S. B., Chauhan, D. S., Srivastava, R., and Selvaraj, K., In vivo examination of folic acid-conjugated gold-silica nanohybrids as contrast agents for localized tumor diagnosis and biodistribution, Bioconjugate Chemistry, vol. 29, no. 12, pp. 4012-4019, 2018.
V. A. Tamhane, Chougule, N. P., Giri, A. P., Dixit, A. R., Sainani, M. N., and Gupta, V. S., In vivo and in vitro effect of capsicum annum proteinase inhibitors on helicoverpa armigera gut proteinases, Biochimica Et Biophysica Acta-General Subjects, vol. 1722, no. 2, pp. 156-167, 2005.
B. Mohan Panda and Hazra, S., In vitro regeneration of semecarpus anacardium L. from axenic seedling-derived nodal explants, Trees-Structure and Function, vol. 24, no. 4, pp. 733-742, 2010.
S. Kant Joshi, Bisht, V., Dhar, U., Joshi, M., and Bisht, A. Kumar, In vitro regeneration of `Green Sweet' apple via nucellus-raised callus, Journal of Horticultural Science & Biotechnology, vol. 83, no. 4, pp. 447-452, 2008.
B. Bhusare, John, C. K., Bhatt, V. P., and Nikam, T. D., In vitro propagation of Digitalis lanata Ehrh. through direct shoot regeneration - A source of cardiotonic glycosides, Industrial Crops and Products, vol. 121, pp. 313-319, 2018.
B. Mohan Panda and Hazra, S., In vitro morphogenic response in cotyledon explants of semecarpus anacardium L., Plant Biotechnology Reports, vol. 6, no. 2, pp. 141-148, 2012.
A. Ayoobul Ansary, Khan, M. I., and Gaikwad, S. M., In vitro enzyme mediated synthesis of metal sulfide nanoparticles: control of particle size of CdS, Ni7S6, PbS, Co3S4 nanoparticles using synthetic peptides, Science of Advanced Materials, vol. 4, no. 1, pp. 179-186, 2012.
R. Seth, Kendurkar, S. V., and Nadgauda, R., In vitro clonal propagation of Casuarina equisetifolia forst. from mature tree-derived explants, Current Science, vol. 92, no. 3, pp. 287-290, 2007.
V. Honmore, Kalyankar, V., Natu, A., Khedkar, V., Sarkar, D., and Rojatkar, S., In vitro antitubercular screening and in silico study of germacradienolide from blainvillea latifolia, Asian Journal of Chemistry, vol. 33, no. 12, pp. 3129-3133, 2021.
A. Khan, Pradeep, S., and Dastager, S. G., In vitro anticancer evaluation of enceleamycin A and its underlying , RSC Advances , vol. 13, no. 48, pp. 34183-34193, 2023.
S. Nikte, Gahankari, A., Mulla, J., Sengupta, D., Joshi, M., and Tamhane, V., In vitro and in silico studies on membrane interactions of diverse Capsicum annuum flower gamma-thionin peptides, Proteins-Structure Function and Bioinformatics, 2019.
V. S. Honmore, Rojatkar, S. R., Nawale, L. U., Arkile, M. A., Khedkar, V. M., Natu, A. D., and Sarkar, D., In vitro and ex vivo antitubercular activity of diarylheptanoids from the rhizomes of alpinia officinarum hance, Natural Product Research, vol. 30, no. 24, pp. 2825-2830, 2016.
T. Agarwal, Roy, S., Kumar, S., Chakraborty, T. Kanti, and Maiti, S., In the sense of transcription regulation by G-quadruplexes: asymmetric effects in sense and antisense strands, Biochemistry, vol. 53, no. 23, pp. 3711-3718, 2014.
S. Velu, Suzuki, K., Vijayaraj, M., Barman, S., and Gopinath, C. S., In situ XPS investigations of Cu1-xNixZnAl-mixed metal oxide catalysts used in the oxidative steam reforming of bio-ethanol, Applied Catalysis B - Environmental, vol. 55, no. 4, pp. 287-299, 2005.
P. Murawala, Tirmale, A., Shiras, A., and Prasad, B. L. V., In situ synthesized BSA capped gold nanoparticles: effective carrier of anticancer drug methotrexate to MCF-7 breast cancer cells, Materials Science & Engineering C-Materials For Biological Applications, vol. 34, pp. 158-167, 2014.
P. Murawala, Phadnis, S. M., Bhonde, R. R., and Prasad, B. L. V., In situ synthesis of water dispersible bovine serum albumin capped gold and silver nanoparticles and their cytocompatibility studies, Colloids and Surfaces B-Biointerfaces, vol. 73, no. 2, pp. 224-228, 2009.
A. K. Prashar, Hodgkins, R. P., Kumar, R., and R. Devi, N., In situ synthesis of Pt nanoparticles in SBA-15 by encapsulating in modified template micelles: size restricted growth within the mesochannels, Journal of Materials Chemistry, vol. 18, no. 15, pp. 1765-1770, 2008.
R. S. Mehare, Ranganath, S. P., Chaturvedi, V., Badiger, M. V., and Shelke, M. V., In situ synthesis of nitrogen- and sulfur-enriched hierarchical porous carbon for high-performance supercapacitor, Energy & Fuels, vol. 32, no. 1, pp. 908-915, 2018.
D. Singh and Poddar, P., In situ synthesis of metal (Bi0)-semiconductor [BiOX (X = Cl, Br, and I)] nanocomposites as a highly effective catalyst for the reduction of 4-nitrophenol to 4-aminophenol, New Journal of Chemistry , vol. 48, no. 21, pp. 9840-9855, 2024.
M. B. Kasture, Patel, P., Prabhune, A., Ramana, C. V., Kulkarni, A. A., and Prasad, B. L. V., In situ synthesis of ligand reduced/capped silver nanoparticles and the effect of temperature and ligand structure on the size of silver nanoparticles, Journal of Chemical Sciences, vol. 120, no. 6, pp. 515-520, 2008.
D. K. Singh, Jagannathan, R., Khandelwal, P., Abraham, P. Mary, and Poddar, P., In situ synthesis and surface functionalization of gold nanoparticles with curcumin and their antioxidant properties: an experimental and density functional theory investigation, Nanoscale, vol. 5, no. 5, pp. 1882-1893, 2013.
S. Kumar Gautam, Singh, J., Singh, R. Gopal, Gautam, N., Trivedi, P., and Singh, F., In situ study of radiation stability and associated conduction mechanisms of Nb-Doped TiO2/p-Si heterojunction diode under swift heavy ion irradiation, IEEE Transactions on Electron Devices, vol. 66, no. 3, pp. 1475-1481, 2019.
P. K. Gangadharan, Vijayakumar, V., Nediyirakkal, S. A., Fernandez, R. Tresa, V. Siddharthan, A., and Kurungot, S., In situ preparation of ionomer as a tool for triple-phase boundary enhancement in 3D graphene supported Pt catalyst, Advanced Sustainable Systems, vol. 5, no. 1, p. 2000125, 2021.
V. Vijayakumar, Anothumakkool, B., Kurungot, S., Winter, M., and Nair, J. Ravi, In situ polymerization process: an essential design tool for lithium polymer batteries dagger, Energy & Environmental Science, vol. 14, no. 5, pp. 2708-2788, 2021.
S. Ray, Galgali, G., Lele, A. C., and Sivaram, S., In situ polymerization of ethylene with bis(imino)pyridine iron(II) catalysts supported on clay: the synthesis and characterization of polyethylene-clay nanocomposites, Journal of Polymer Science Part A-Polymer Chemistry, vol. 43, no. 2, pp. 304-318, 2005.
W. - K. Jo, Kumar, S., Yadav, P., and Tonda, S., In situ phase transformation synthesis of unique Janus Ag2O/Ag2CO3 heterojunction photocatalyst with improved photocatalytic properties, Applied Surface Science, vol. 445, pp. 555-562, 2018.
R. Sanil, Maralingannavar, V., and Gadgil, M., In situ pH management for microbial culture in shake flasks and its application to increase plasmid yield, Journal of Industrial Microbiology & Biotechnology, vol. 41, no. 4, pp. 647-655, 2014.
K. Pradhan, Pant, T., and Gadgil, M., In situ pH maintenance for mammalian cell cultures in shake flasks and tissue culture flasks, Biotechnology Progress, vol. 28, no. 6, pp. 1605-1610, 2012.
I. Banerjee, Joshi, N. K., Sahasrabudhe, S. N., Kulkarni, N. V., Karmakar, S., Pasricha, R., Ghorui, S., Tak, A. K., Murthy, S. P. S. S., Bhoraskar, S. V., and Das, A. K., In situ optical emission spectroscopic investigations during arc plasma synthesis of iron oxide nanoparticles by thermal plasma, IEEE Transactions on Plasma Science, vol. 34, no. 4, pp. 1175-1182, 2006.
R. Vysabhattar and Ganesh, K. N., In situ, on-resin synthesis of 8-Br/NH2 adeninyl peptide nucleic acid (PNA) oligomers and complementation studies with DNA, Tetrahedron Letters, vol. 51, no. 50, pp. 6560-6564, 2010.
R. Jagannathan, Parmar, A. Singh, Adyanthaya, S. D., Prabhune, A., Muschol, M., and Poddar, P., In situ observation of antibiotic mediated concurrent growth of two distinct homogeneous populations of gold nanoparticles in solution phase, Journal of Physical Chemistry C, vol. 113, no. 9, pp. 3478-3486, 2009.
A. V. Pansare, Khairkar, S. R., Shedge, A. A., Chhatre, S. Y., Patil, V. R., and Nagarkar, A. A., In situ nanoparticle embedding for authentication of epoxy composites, Advanced Materials, vol. 30, no. 33, p. 1801523, 2018.
C. Hareendran, Alsirawan, B., Paradkar, A., and Ajithkumar, T. G., In situ monitoring of competitive coformer exchange reaction by 1H MAS solid-state NMR, Molecualr Pharmaceutics, vol. 21, no. 3, pp. 1479-1489, 2024.
D. Nagaraju, Bhagat, D. G., Banerjee, R., and Kharul, U. K., In situ growth of metal-organic frameworks on a porous ultrafiltration membrane for gas separation, Journal of Materials Chemistry A, vol. 1, no. 31, pp. 8828-8835, 2013.
B. J. Waghmode, Bhange, S. N., Unni, S. K. M., Patil, K. R., and Malkhede, D. D., In situ grown nickel nanoparticles in a calixarene nanoreactor on a graphene-MoS2 support for efficient water electrolysis, Sustainable Energy & Fuels, vol. 1, no. 6, pp. 1329-1338, 2017.
V. R. Choudhary and Jana, P., In situ generation of hydrogen peroxide from reaction of O-2 with hydroxylamine from hydroxylammonium salt in neutral aqueous or non-aqueous medium using reusable Pd/Al2O3 catalyst, Catalysis Communications, vol. 8, no. 11, pp. 1578-1582, 2007.
R. P. Panmand, Sethi, Y. A., Deokar, R. S., Late, D. J., Gholap, H. M., Baeg, J. - O., and Kale, B. B., In situ fabrication of highly crystalline CdS decorated Bi2S3 nanowires (nano-heterostructure) for visible light photocatalyst application, RSC Advances, vol. 6, no. 28, pp. 23508-23517, 2016.
S. Ghosh, Jijil, C. P., and R. Devi, N., In situ encapsulation of ultra small ceria nanoparticles stable at high temperatures in the channels of mesoporous silica, Microporous and Mesoporous Materials, vol. 155, pp. 215-219, 2012.
A. K. Prashar, Mayadevi, S., Rajamohanan, P. R., and R. Devi, N., In situ encapsulation of Pt nanoparticles in mesoporous silica: synthesis, characterisation and effect of particle size on CO oxidation, Applied Catalysis A-General, vol. 403, no. 1-2, pp. 91-97, 2011.
A. K. Prashar, Hodgkins, R. P., Chandran, J. N., Rajamohanan, P. R., and R. Devi, N., In situ encapsulation of pt nanoarchitectures of varying morphologies in mesoporous compounds, Chemistry of Materials, vol. 22, no. 5, pp. 1633-1639, 2010.
B. Busupalli, Battu, S., Haram, S. K., and Prasad, B. L. V., In situ electrochemical transformation of Ni3S2 and Ni3S2-Ni from sheets to nanodisks: towards efficient electrocatalysis for hydrogen evolution reaction (HER), Chemistryselect, vol. 1, no. 21, pp. 6708-6712, 2016.
J. Debgupta, Shinde, D. B., and Pillai, V. K., In situ electrochemical organization of CdSe nanoclusters on graphene during unzipping of carbon nanotubes, Chemical Communications, vol. 48, no. 25, pp. 3088-3090, 2012.
R. Karamchand Bed, Ravi-Kumar, A., and V. Kumar, R., In situ direct transesterification process optimization for biodiesel production from aspergillus terreus wet biomass, Journal of the American Oil Chemists Society, vol. 99, pp. 52-53, 2022.
V. Vijayakumar, Ghosh, M., Kurian, M., Torris, A., Dilwale, S., V. Badiger, M., Winter, M., Nair, J. Ravi, and Kurungot, S., In situ cross-linked nonaqueous polymer electrolyte for zinc-metal polymer batteries and hybrid supercapacitors, Small, vol. 16, no. 35, p. 2002528, 2020.
S. Walia, Nili, H., Balendhran, S., Late, D. J., Sriram, S., and Bhaskaran, M., In situ characterisation of nanoscale electromechanical properties of quasi-two-dimensional MoS2 and MoO3, arXiv preprint arXiv, Condensed Matter Materials Science, vol. 1, 2014.
V. Maralingannavar, Shenoy, B. R., Hazarika, J., Unnikrishnan, D., Prabhu, A., Maity, S., and Gadgil, M., In situ base release for pH maintenance can allow shake flasks to better mimic bioreactor performance for CHO cell culture, Journal of Chemical Technology & Biotechnology, vol. 93, no. 10, pp. 2842-2850, 2018.

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