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Journal Article
R. Goyal, Sarkar, B., Lucas, N., and Bordoloi, A., Acid-base cooperative catalysis over mesoporous nitrogen-rich carbon, ChemCatChem, vol. 6, no. 11, pp. 3091-3095, 2014.
R. Belgamwar, Rankin, A. G. M., Maity, A., Mishra, A. Kumar, Gomez, J. S., Trebosc, J., Vinod, C. P., Lafon, O., and Polshettiwar, V., Boron nitride and oxide supported on dendritic fibrous nanosilica for catalytic oxidative dehydrogenation of propane, ACS Sustainable Chemistry & Engineering, vol. 8, no. 43, pp. 16124-16135, 2020.
S. Shenoy, Jang, E., Park, T. Joo, Gopinath, C. S., and Sridharan, K., Cadmium sulfide nanostructures: influence of morphology on the photocatalytic degradation of erioglaucine and hydrogen generation, Applied Surface Science, vol. 483, pp. 696-705, 2019.
S. C. Navale, Gosavi, S. W., and Mulla, I. S., Controlled synthesis of ZnO from nanospheres to micro-rods and its gas sensing studies, Talanta, vol. 75, no. 5, pp. 1315-1319, 2008.
R. R. Tiwari and Natarajan, U., Effect of organic modification on the intercalation and the properties of poly(phenylene oxide)/polystyrene blend-clay nanocomposites, Journal of Thermoplastic Composite Materials, vol. 26, no. 3, pp. 392-415, 2013.
D. B. Shinde and Pillai, V. K., Electrochemical preparation of luminescent graphene quantum dots from multiwalled carbon nanotubes, Chemistry-A European Journal, vol. 18, no. 39, pp. 12522-12528, 2012.
M. B. Erande, Suryawanshi, S. R., More, M. A., and Late, D. J., Electrochemically exfoliated black phosphorus nanosheets - prospective field emitters, European Journal of Inorganic Chemistry, no. 19, pp. 3102-3107, 2015.
M. V. Limaye, Singh, S. B., Date, S. K., Gholap, R. S., and Kulkarni, S. K., Epitaxially grown zinc-blende structured Mn doped ZnO nanoshell on ZnS nanoparticles, Materials Research Bulletin, vol. 44, no. 2, pp. 339-344, 2009.
D. Chakravarty and Late, D. J., Exfoliation of bulk inorganic layered materials into nanosheets by the rapid quenching method and their electrochemical performance, European Journal of Inorganic Chemistry, no. 11, pp. 1973-1980, 2015.
S. C. Navale, Sheini, F. Jamali, Patil, S. S., Mulla, I. S., Joag, D. S., More, M. A., and Gosavi, S. W., Field emission properties of Al-doped ZnO nanostructures, Journal of Nano Research, vol. 5, pp. 231-237, 2009.
A. A. Al-Tabbakh, More, M. A., Joag, D. S., Mulla, I. S., and Pillai, V. K., Fowler-nordheim plot behavior and mechanism of field electron emission from ZnO tetrapod structures , ACS Nano, vol. 4, no. 10, pp. 5585-5590, 2010.
M. Hudlikar, Joglekar, S., Dhaygude, M., and Kodam, K. M., Green synthesis of TiO2 nanoparticles by using aqueous extract of Jatropha curcas L. latex, Materials Letters, vol. 75, pp. 196-199, 2012.
R. R. Hawaldar, Mulik, U. P., Patil, K., Pasricha, R., Sathaye, S., Lewis, A., and Amalnerkar, D. P., Growth of PbS nanopyramidal particulate films for potential applications in quantum-dot photovoltaics and nanoantennas, Materials Research Bulletin , vol. 40, no. 8, pp. 1353-1360, 2005.
S. L. Darshane and Mulla, I. S., Influence of palladium on gas-sensing performance of magnesium ferrite nanoparticles, Materials Chemistry and Physics, vol. 119, no. 1-2, pp. 319-323, 2010.
D. G. Desai, Swarali, H., Navale, G. R., Prabhune, A., Late, D. J., Dharne, M. S., and Walke, P. S., Inhibition of quorum sensing, motility and biofilm formation ofpseudomonas aeruginosaby copper oxide nanostructures, Journal of Cluster Science, vol. 32, no. 6, pp. 1531 - 1541, 2020.
M. V. Vaishampayan, Mulla, I. S., and Joshi, S. S., Low temperature pH dependent synthesis of flower-like ZnO nanostructures with enhanced photocatalytic activity, Materials Research Bulletin, vol. 46, no. 5, pp. 771-778, 2011.
S. Verma and Joy, P. Alias, Low temperature synthesis of nanocrystalline lithium ferrite by a modified citrate gel precursor method, Materials Research Bulletin, vol. 43, no. 12, pp. 3447-3456, 2008.
A. B. Nawale, Kanhe, N. S., Patil, K. R., Reddy, V. R., Gupta, A., Kale, B. B., Bhoraskar, S. V., Mathe, V. L., and Das, A. K., Magnetic properties of nanocrystalline CoFe2O4 synthesized by thermal plasma in large scale, Materials Chemistry and Physics, vol. 137, no. 2, pp. 586-595, 2012.
C. Sekhar Rout, Khare, R. T., Kashid, R. V., Joag, D. S., More, M. A., Lanzillo, N. A., Washington, M., Nayak, S. K., and Late, D. J., Metallic few-layer flowerlike VS2 nanosheets as field emitters, European Journal of Inorganic Chemistry, no. 31, pp. 5331-5336, 2014.
R. G. Deshmukh, Badadhe, S. S., and Mulla, I. S., Microwave-assisted synthesis and humidity sensing of nanostructured alpha-Fe2O3, Materials Research Bulletin, vol. 44, no. 5, pp. 1179-1182, 2009.
D. Chakravarty, Kumar, P., Ugale, V. S., and Late, D. J., Microwave-assisted synthesis of few-layered TaTe2 and its application as supercapacitor, European Journal of Inorganic Chemistry, pp. 1598-1603, 2015.
K. G. Kanade, Amalnerkar, D. P., Potdar, H. S., and Kale, B. B., Nanocrystalline Mn-Zn-ferrite by novel oxalato-hydrazinated complex method, Materials Chemistry and Physics, vol. 117, no. 1, pp. 187-191, 2009.
S. Dhar, E. Reddy, M., Shiras, A., Pokharkar, V., and Prasad, B. L. V., Natural gum reduced/stabilized gold nanoparticles for drug delivery formulations, Chemistry-A European Journal, vol. 14, no. 33, pp. 10244-10250, 2008.
B. A. Kakade, Patil, S., Sathe, B., Gokhale, S., and Pillai, V., Near-complete phase transfer of single-wall carbon nanotubes by covalent functionalization, Journal of Chemical Sciences, vol. 120, no. 6, pp. 599-606, 2008.
B. Mishra, Agarkar, S. A., and Khushalani, D., Novel precursors for anatase nanorods and their application in DSSCs, Materials Chemistry and Physics, vol. 147, no. 3, pp. 1110-1116, 2014.
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. 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.
P. K. Khanna, Gokhale, R., Subbarao, V. V. V. S., Vishwanath, A. K., Das, B. K., and Satyanarayana, C. V. V., PVA stabilized gold nanoparticles by use of unexplored albeit conventional reducing agent, Materials Chemistry and Physics, vol. 92, no. 1, pp. 229-233, 2005.
A. Deshpande, Madras, G., and Gupta, N. M., Role of lattice defects and crystallite morphology in the UV and visible-light-induced photo-catalytic properties of combustion-prepared TiO2, Materials Chemistry and Physics, vol. 126, no. 3, pp. 546-554, 2011.
M. V. Limaye, Singh, S. B., Das, R., Poddar, P., and Kulkarni, S. K., Room temperature ferromagnetism in undoped and Fe doped ZnO nanorods: microwave-assisted synthesis, Journal of Solid State Chemistry, vol. 184, no. 2, pp. 391-400, 2011.
B. Singh, Mote, K. R., Gopinath, C. S., Madhu, P. K., and Polshettiwar, V., SBA-15-oxynitrides as a solid-base catalyst: effect of nitridation temperature on catalytic activity, Angewandte Chemie-International Edition, vol. 54, no. 20, pp. 5985-5989, 2015.
S. Datar, Chaudhary, M. V., Sastry, M., and Dharmadhikari, C. V., Scanning tunneling microscopy/spectroscopy on Au nanoparticles assembled using lauryl amine (LAM) and octadecane thiol (ODT), Applied Surface Science, vol. 253, no. 11, pp. 5109-5115, 2007.
K. J. Betsy, Nayak, C., Lazar, A., Krishnan, A., Bhattacharyya, D., Jha, S. N., and Vinod, C. P., Selective oxidation of cyclohexane to cyclohexanone using chromium oxide supported mesoporous MCM-41 nanospheres: probing the nature of catalytically active chromium sites, ChemCatChem, vol. 10, no. 15, pp. 3291-3298, 2018.
A. Apte, Bhaskar, P., Das, R., Chaturvedi, S., Poddar, P., and Kulkarni, S., Self-assembled vertically aligned gold nanorod super-lattices for ultra-high sensitive detection of molecules, Nano Research, vol. 8, no. 3, pp. 907-919, 2015.
R. R. Hawaldar, Kanade, K. G., Patil, K. R., Sathaye, S. D., Mulik, U. P., and Amalnerkar, D. P., Self-assembly of nanostructured PbS for solar photovoltaic applications, Materials Chemistry and Physics, vol. 91, no. 2-3, pp. 447-453, 2005.
V. E. Gopalan, Joy, P. Alias, Al-Omari, I. A., D. Kumar, S., Yoshida, Y., and Anantharaman, M. R., On the structural, magnetic and electrical properties of sol-gel derived nanosized cobalt ferrite, Journal of Alloys and Compounds, vol. 485, no. 1-2, pp. 711-717, 2009.
M. I. Zaki, Mekhemer, G. A. H., Fouad, N. E., Jagadale, T. C., and Ogale, S. B., Surface texture and specific adsorption sites of sol-gel synthesized anatase TiO2 nanoparticles, Materials Research Bulletin, vol. 45, no. 10, pp. 1470-1475, 2010.
G. Sharma, Patil, K. R., and Gosavi, S. W., Synthesis and luminescence of graphene-nano calcium sulphide composite, Materials Chemistry and Physics, vol. 147, no. 1-2, pp. 57-64, 2014.
P. Borade, Joshi, K. U., Gokarna, A., Lerondel, G., Walke, P., Late, D. J., and Jejurikar, S. M., Synthesis and self-assembly of dumbbell shaped ZnO sub-micron structures using low temperature chemical bath deposition technique, Materials Chemistry and Physics, vol. 169, pp. 152-157, 2016.
B. Sinha, Late, D., and Jejurikar, S. M., Ultrananocrystalline diamond decoration on to the single wall carbon nano tubes, Applied Surface Science, vol. 418, pp. 401-405, 2017.
V. V. Nikesh, Mandale, A. B., Patil, K. R., and Mahamuni, S., X-ray photoelectron spectroscopic investigations of Cu2O nanoparticles, Materials Research Bulletin , vol. 40, no. 4, pp. 694-700, 2005.
T. Palaniselvam, Biswal, B. P., Banerjee, R., and Kurungot, S., Zeolitic imidazolate framework (ZIF)-derived, hollow-core, nitrogen-doped carbon nanostructures for oxygen-reduction reactions in PEFCs, Chemistry-A European Journal, vol. 19, no. 28, pp. 9335-9342, 2013.