Dr. Menaka  Jha
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Dr. Menaka Jha

Lecturer
Institute of Nanoscience and Technology, Mohali, India


Highest Degree
Ph.D. in Chemistry from Indian Institute of Technology, Kanpur, India.

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Area of Interest:

Chemistry
100%
Heterocyclic Chemistry
62%
Organometallic Chemistry
90%
Solid State Chemistry
75%
Crystal Engineering
55%

Research Publications in Numbers

Books
0
Chapters
0
Articles
0
Abstracts
0

Selected Publications

  1. Nishanthi, S.T., A. Baruah, K.K. Yadav, D. Sarker, S. Ghosh, A.K. Ganguli and M. Jha, 2019. New low temperature environmental friendly process for the synthesis of tetragonal MoO2 and its field emission properties. Applied Surface Sci., 467: 1148-1156.
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  2. Gaikwad, V.M., K.K. Yadav, S.E. Lofland, K.V. Ramanujachary, S. Chakraverty, A.K. Ganguli and M. Jha, 2019. New low temperature process for stabilization of nanostructured La2NiMnO6 and their magnetic properties. J. Magnet. Magnet. Mater., 471: 8-13.
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  3. Devi, M.M., W. Koshibae, G. Sharma, R. Tomar and V.M. Gaikwad et al., 2019. The limit to realize an isolated magnetic single skyrmionic state. J. Mater. Chem. C, 7: 1337-1344.
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  4. Devi, M.M., K.N. Ojha, A.K. Ganguli and M. Jha, 2019. Transformation of waste tin-plated steel to iron nanosheets and their application in generation of oxygen. Int. J. Environ. Sci. Technol., 16: 3669-3678.
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  5. Devi, M.M., H. Singh, K. Kaur, A. Gupta and S.T. Nishanthi et al., 2019. New approach for the transformation of metallic waste into nanostructured Fe3O4 and SnO2-Fe3O4 heterostructure and their application in treatment of organic pollutant. Waste Manage., 87: 719-730.
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  6. Dabas, N., K.K. Yadav, A.K. Ganguli and M. Jha, 2019. New process for conversion of hazardous industrial effluent of ceramic industry into nanostructured sodium carbonate and their application in textile industry. J. Environ. Manage., 240: 352-358.
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  7. Singh, S., S. Sharma, A. Umar, M. Jha, S.K. Mehta and S.K. Kansal, 2018. Nanocuboidal-shaped zirconium based metal organic framework for the enhanced adsorptive removal of nonsteroidal anti-inflammatory drug, ketorolac tromethamine, from aqueous phase. New J. Chem., 42: 1921-1930.
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  8. Mishra, J., M. Jha, N. Kaur and A.K. Ganguli, 2018. Room temperature synthesis of urea based imidazole functionalised ZnO nanorods and their photocatalytic application. Mater. Res. Bull., 102: 311-318.
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  9. Jha, M., S. Kumar, N. Garg, K.V. Ramanujachary, S.E. Lofland and A.K. Ganguli, 2018. Microemulsion based approach for nanospheres assembly into anisotropic nanostructures of NiMnO3 and their magnetic properties. J. Solid State Chem., 258: 722-727.
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  10. Yadav, K.K., A. Gupta, M. Sharma, N. Dabas, A.K. Ganguli and M. Jha, 2017. Low temperature synthesis process of stabilization of cubic Yttria stabilized zirconia spindles: An important high temperature ceramic material. Mater. Res. Express, Vol. 4. 10.1088/2053-1591/aa9231.
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  11. Sreekanth, M., S. Ghosh, S.K. Mehta, A.K. Ganguli and M. Jha, 2017. Investigation of the growth mechanism of the formation of ZnO nanorods by thermal decomposition of zinc acetate and their field emission properties. CrystEngComm, 19: 2264-2270.
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  12. Devi, M.M., M. Jha, A.K. Ganguli and S. Chakraverty, 2017. Efficient synthesis and characterization of Cu2OSeO3 nanoparticles via hydrothermal route. Mater. Res. Express, Vol. 4. 10.1088/2053-1591/aa9448.
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  13. Jha, M., R. Dharmadasa, G.L. Draper, A. Sherehiy, G. Sumanasekera, D. Amos and T. Druffel, 2015. Solution phase synthesis and intense pulsed light sintering and reduction of a copper oxide ink with an encapsulating nickel oxide barrier. Nanotechnology, Vol. 26. .
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  14. Baruah, A., M. Jha, S. Kumar and A.K. Ganguli, 2015. Enhancement of photocatalytic efficiency using heterostructured SiO2-Ta2O5 thin films. Mater. Res. Exp., Vol. 2. .
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  15. Patra, R., S. Ghosh, E. Sheremet, M. Jha and R.D. Rodriguez et al., 2014. Enhanced field emission from lanthanum hexaboride coated multiwalled carbon nanotubes: Correlation with physical properties. J. Applied Phys., Vol. 116. 10.1063/1.4898352.
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  16. Patra, R., S. Ghosh, E. Sheremet, M. Jha and R.D. Rodriguez et al., 2014. Enhanced field emission from cerium hexaboride coated multiwalled carbon nanotube composite films: A potential material for next generation electron sources. J. Applied Phys., Vol. 115. 10.1063/1.4866990.
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  17. Dharmadasa, R., T. Druffel and M. Jha, 2014. Ambient temperature synthesis and sintering of conductive aqueous copper inks. Nanotechnology, 1: 151-153.
  18. Kumar, B., S. Kumar and A.K. Ganguli, 2013. Surface decoration through electrostatic interaction leading to enhanced reactivity: Low temperature synthesis of nanostructured chromium borides (CrB and CrB2). J. Solid State Chem., 200: 117-122.
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  19. Jha, M., R. Patra, S. Ghosh and A.K. Ganguli, 2013. Vertically aligned nanorods of lanthanum hexaboride with efficient field emission properties. Solid State Communi., 153: 35-39.
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  20. Ja, M. and A.K. Ganguli, 2013. Novel Chemical Process for Obtaining Vertically Aligned Metal Hexaborides (LaB6 and CeB6) Nanorods for Field Emission Properties. In: Modern Aspects of Functional Materials, Raj, B., S.C. Sharma and W. Cantwell (Eds.)., Tumkur University, India, pp: 47-60.
  21. Garg, N., K.V. Ramanujachary, S.E. Lofland and A.K. Ganguli, 2013. Nanostructured dimagnesium manganese oxide (Spinel): Control of size, shape and their magnetic and electro catalytic properties. J. Solid State Chem., 197: 392-397.
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  22. Dharmadasa, R., M. Jha, D.A. Amos and T. Druffel, 2013. Room temperature synthesis of a copper ink for the intense pulsed light sintering of conductive copper films. ACS Applied Mater. Interfaces, 5: 13227-13234.
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  23. Patra, R., S. Ghosh and A.K. Ganguli, 2012. Novel borothermal route for the synthesis of lanthanum cerium hexaborides and their field emission properties. J. Solid State Chem., 194: 173-178.
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  24. Patra, R., S. Ghosh and A.K. Ganguli, 2012. Manipulating the anisotropy and field emission of lanthanum hexaboride nanorods. RSC Adv., 2: 7875-7885.
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  25. Marka, S., A.K. Ganguli and M.G. Krishna, 2012. Effect of substrate and film thickness on the growth, structure, mechanical and optical properties of chromium diboride thin films. Surf. Coat. Technol., 209: 23-31.
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  26. Jha, M., S. Marka, M.G. Krishna and A.K. Ganguli, 2012. Multifunctional nanocrystalline chromium boride thin films. Mater. Lett., 73: 220-222.
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  27. Jha, M., R. Patra, S. Ghosh and A.K. Ganguli, 2012. Vertically aligned cerium hexaboride nanorods with enhanced field emission properties. J. Mater. Chem., 22: 6356-6366.
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  28. Garg, N., S. Kumar, D. Kumar, K.V. Ramanujachary, S.E. Lofland and A.K. Ganguli, 2012. Nanostructured nickel manganese oxide: aligned nanostructures and their magnetic properties. J. Mater. Chem., 22: 18447-18453.
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  29. Samal, S.L., K.V. Ramanujachary, S.E. Lofland and A.K. Ganguli, 2011. Stabilization of Mn (IV) in nanostructured zinc manganese oxide and their facile transformation from nanospheres to nanorods. J. Mater. Chem., 21: 8566-8573.
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  30. Menaka, M., S. Sharma, K.V. Ramanujachary, S.E. Lofland and A.K. Ganguli, 2011. Controlling the size and morphology of anisotropic nanostructures of nickel borate using microemulsions and their magnetic properties. J. Colloid Interface Sci., 360: 393-397.
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  31. Jha, M., S.D. Kshirsagar, M.G. Krishna and A.K. Ganguli, 2011. Growth and optical properties of chromium borate thin films. Solid State Sci., 13: 1334-1338.
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  32. Jha, M., K.V. Ramanujachary, S.E. Lofland, G. Gupta and A.K. Ganguli, 2011. Novel borothermal process for the synthesis of nanocrystalline oxides and borides of niobium. Dalton Trans., 40: 7879-7888.
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  33. Menaka, S.E. Lofland, K.V. Ramanujachary and A.K. Ganguli, 2010. A new low temperature methodology to obtain pure nanocrystalline nickel borate. J. Organometallic Chem., 695: 1002-1005.
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  34. Qamar, M., S.E. Lofland, K.V. Ramanujachary and A.K. Ganguli, 2009. Magnetic and photocatalytic properties of nanocrystalline ZnMn2O4. Bull. Mater. Sci., 32: 231-237.
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  35. Ahmed, J. and A.K. Ganguli, 2009. Controlled growth of nanocrystalline rods, hexagonal plates and spherical particles of the vaterite form of calcium carbonate. Cryst. Eng. Comm., 11: 927-932.
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