Dr. Patil  Devidas Ramrao
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Dr. Patil Devidas Ramrao

Acting Principal and Associate Professor
Rani Laxmibai Mahavidyalaya, Parola Dist. Jalgaon, MHS, India, 425111


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Biography

Dr. D. R. Patil (Ph. D. Materials Science) now is the Recognized Research Guide and Director Head of the Bulk and Nanomaterials Research Laboratory, Parola Jalgaon, India. His topics of interest are: semiconducting and ceramic gas sensors, photoconducting and photo luminescent materials, nanomaterials, thin and thick film Physics, food freshness, disease diagnosis, etc.

Area of Interest:

Physical Science Engineering
100%
Solar Cell
62%
Nano Technology
90%
Thick Films
75%
Gas Sensor
55%

Research Publications in Numbers

Books
0
Chapters
6
Articles
79
Abstracts
49

Selected Publications

  1. Powar, R.R., V.G. Parale, V.D. Phadtare, S.B. Wategaonkar and R.K. Mane et al., 2021. Nanocrystalline spinel zinc-substituted cobalt ferrite thick film an efficient ethanol sensor. Mater. Today Chem., Vol. 22. 10.1016/j.mtchem.2021.100607.
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  2. Talegaonkar, J. and D.R. Patil, 2018. Synthesis and characterization of polyaniline-CuO nanocomposites. J. Res. Dev., 8: 156-162.
  3. Shelke, G.B. and D.R. Patil, 2018. Synthesis of nanoropes, nanorods, nanodiscs and nanoflowers of ZrO2 thick films for various applications and their characterizations. Int. Educ. Res. J., 7: 153-158.
  4. Shelke, G.B. and D.R. Patil, 2018. Synthesis and characterizations of pure and surface functionalized nanostructured SnO2 thick films. J. Res. Dev., 8: 141-149.
  5. Talegaonkar, J. and D.R. Patil, 2017. Nanostructured gas sensors: Scope for future research. Res. Journey, 20: 215-223.
  6. Gaikwad, G., P. Patil, D. Patil and J. Naik, 2017. Synthesis and evaluation of gas sensing properties of PANI based graphene oxide nanocomposites. Mater. Sci. Eng.: B, 218: 14-22.
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  7. Talegaonkar, J. and D.R. Patil, 2016. Ammonia gas sensing performance of polyaniline SnO2. Int. J. Eng. Res. Technol., 5: 296-303.
  8. Shelke, G.B., D.R. Patil, Y.B. Patil and R.R. Attarde, 2016. SrO2 modified nanostructured SnO2 thick films as H2S gas sensors operable at room temperature. Int. J. Curr. Res., 8: 32417-32420.
  9. Patil, R.P., B.V. Jadhav, M.R. Kadam, D.R. Patil and P.P. Hankare, 2016. LPG gas sensing application of lithium ferrite. J. Mater. Focus, 5: 46-50.
  10. Patil, P., G. Gaikwad, D.R. Patil and J. Naik, 2016. Synthesis of 1-D ZnO nanorods and polypyrrole/1-D ZnO nanocomposites for photocatalysis and gas sensor applications. Bull. Mater. Sci., 39: 655-665.
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  11. Patil, P., G. Gaikwad, D.R. Patil and J. Naik, 2016. Gas sensitivity study of polypyrrole decorated graphene oxide thick film. J. Inst. Eng. (India): Ser. D, 97: 47-53.
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  12. Pandav, R.S., D.R. Patil, R.P. Patil and P.P. Hankare, 2016. Structural, electrical and magnetic study of nanocrystalline Ti-substituted Zn-Mn ferrospinels. J. Magnet. Magnet. Mater., 405: 259-263.
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  13. Shirke, B.S., H.M. Shinde, K.M. Garadkar and D.R. Patil, 2015. CuO-islands on nanostructured ZrO2 surface act as the ppm level ammonia gas monitor working at room temperature. Weber Adv. Phys., 1: 118-124.
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  14. Shelke, G.B. and D.R. Patil, 2015. Surface functionalized thick films of SnO2 by Bi2O3 as H2S gas sensors. Bionano Front., 8: 41-43.
  15. Patil, S.D., Y.B. Patil, D.R. Patil and S.S. Patel, 2015. Particle size dependent gas sensing performance of ZnO nanorods based thick film resistors. Int. J. Recent Innov. Trends Comput. Commun., 3: 5063-5068.
  16. Patil, R.P., P.N. Nikam, S.D. Delekar, N.M. Patil, D.R. Patil and P.P. Hankare, 2015. Room temperature H2S gas sensing application of Polyol route synthesized nanosized nickel ferrite. Sens. Lett., 13: 314-317.
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  17. Patil, R.P., P.N. Nikam, S.B. Patil, P.D. Talap, D.R. Patil and P.P. Hankare, 2015. Structural, magnetic and gas sensing application of novel polyol route synthesized cobalt ferrite. Sens. Lett., 13: 785-790.
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  18. Patel, S.S. and D.R. Patil, 2015. Synthesis and processing of ZnO nanosized particles for gas sensing using ultrasonication. J. Environ. Res. Dev., 9: 872-877.
  19. Pandav, R.S., A.S. Tapase, P.P. Hankare, G.B. Shelke and D.R. Patil, 2015. Nanocrystalline manganese substituted nickel ferrite thick films as ppm level H2S gas sensors. Int. J. Recent Innov. Trends Comput. Commun., 3: 5152-5156.
  20. Attarde, R.R., G.B. Shelke, Y.B. Patil, S.D. Patil, D.R. Patil and S.S. Patel, 2015. Nanostructured manganese oxide thick film resistors as ethanol gas sensors. J. Res. Dev., 5: 1-7.
  21. Attarde, R.R. and D.R. Patil, 2015. Nanostructured CdO doped MnO2 thick film resistors as ethanol sensors. Int. J. Recent Innov. Trends Comput. Commun., 3: 6194-6199.
  22. Talegaonkar, J.P. and D. R. Patil, 2014. O-anisidine-Ag nanocomposite synthesis by photo induced polymerization for gas sensing applications. Int. J. Basic Applied Res., 4: 276-281.
  23. Patil, R.P., P.N. Nikam, S.D. Delekar, D.R. Patil and P.P. Hankare, 2014. Cr-substituted Zn-Mn ferrospinel thick film gas sensors. Sens. Lett., 12: 1208-1212.
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  24. Patel, S.S., D.R. Patil and B.H. Brahmbhatt, 2014. Development of microcontroller based low cost pH-meter. Int. J. Basic Applied Res., 4: 297-300.
  25. Patel, S.S., D.R. Patil and B.H. Brahmbhatt, 2014. Design of a low cost temperature controller for high temperature furnaces used in crystal growth. Int. J. Res. Eng. Technol., 3: 187-192.
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  26. Shinde, M.S., D.R. Patil and R.S. Patil, 2013. Ammonia gas sensing property of nanocrystalline Cu2S thin films. Int. J. Pure Applied Phys., 51: 713-716.
  27. Patel, S.S., D.R. Patil and B.H. Brahmbhatt, 2013. A simple and reliable improved design of instrumentation based temperature controller. Int. J. Innov. Res. Stud., 2: 419-433.
  28. Hankare, P.P., N.M. Patil, R.P. Patil, D.R. Patil and S.D. Delekar, 2013. Structural, electrical and magnetic properties of copper substituted Zn-Mn ferrites. J. Mater. Sci.: Mater. Electron., 24: 4028-4032.
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  29. Hankare, P.P., K.R. Sanadi, K.M. Garadkar, D.R. Patil and I.S. Mulla, 2013. Synthesis and characterization of nickel substituted cobalt ferrite nanoparticles by sol-gel auto-combustion method. J. Alloys Compounds, 553: 383-388.
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  30. Khamkar, K.A., S.V. Bangale, V.V. Dhapte, D.R. Patil and S.R. Bamne, 2012. A novel combustion route for the preparation of nanocrystalline LaAlO3 oxide based electronic nose sensitive to NH3 at room temperature. Sens. Transducers, 146: 145-155.
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  31. Kapse, S.D., F.C. Raghuwanshi, V.D. Kapse and D.R. Patil, 2012. Characteristics of high sensitivity ethanol gas sensors based on nanostructured spinel Zn1-xCoxAl2O4. Curr. Applied Phys., 12: 307-312.
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  32. Patil, D.R., 2011. Need of gas sensors. J. Everyman’s Sci., 46: 155-161.
  33. Gawas, U.B., V.M.S. Verenkar and D. R. Patil, 2011. Nanostructured ferrite based electronic nose sensitive to ammonia at room temperature. Sens. Transducers, 134: 45-55.
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  34. Garadkar, K.M., B.S. Shirke, P.P. Hankare and D.R. Patil, 2011. Low cost nanostructured anatase TiO2 as a H2S gas sensor synthesized by microwave assisted technique. Sens. Lett., 9: 526-532.
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  35. Bangale, S.V., S.M. Khetre, D.R. Patil and S.R. Bamne, 2011. Simple synthesis of ZnCo2O4 nanoparticles as gas sensing materials. Sens. Transducers, 134: 95-106.
  36. Bangale, S.V., D.R. Patil and S.R. Bamne, 2011. Preparation and electrical properties of nanocrystalline MgFe2O4 oxide by combustion route. Arch. Applies Sci. Res., 3: 506-513.
  37. Bangale, S.V., D.R. Patil and S.R. Bamne, 2011. Nanostructured spinel ZnFe2O4 for the detection of chlorine gas. Sens. Transducers, 134: 107-119.
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  38. Patil, D.R., D.D. Kale, S.R. Patil, K.M. Garadkar, 2009. Novel method for synthesis of ZnO nanorods and its applications as highly selective chlorine sensors working at low temperature. Sens. Lett., 7: 1057-1064.
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  39. Patil, D.R. and L.A. Patil, 2009. Cr2O3-modified ZnO thick film resistors as LPG sensors. Talanta, 77: 1409-1414.
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  40. Garadkar, K.M., B.S. Shirke, Y.B. Patil and D.R. Patil, 2009. Nanostructured ZrO2 thick film resistors as H2-gas sensors operable at room temperature. Sens. Transducers, 110: 17-25.
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  41. Suryawanshi, D.N., D.R. Patil and L.A. Patil, 2008. Fe2O3-activated Cr2O3 thick films as temperature dependent gas sensors. Sens. Actuators B: Chem., 134: 579-584.
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  42. Sonawane, N.B., D.R. Patil and L.A. Patil, 2008. CuO-modified WO3 sensor for the detection of a ppm level H2S gas at room temperature. Sens. Transducers, 93: 82-91.
  43. Baviskar, H.M., D.R. Patil and L.A. Patil, 2008. Study of room temperature H2S gas sensing behavior of CuO-modified BSST thick film resistors. Sens. Transducers, 92: 24-31.
  44. Wagh, M.S., G.H. Jain, D.R. Patil, S.A. Patil and L.A. Patil, 2007. Surface customization of SnO2 thick films using RuO2 as a surfactant for the LPG response. Sens. Actuators B: Chem., 122: 357-364.
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  45. Patil, S.A., L.A. Patil, D.R. Patil, G.H. Jain and M.S. Wagh, 2007. CuO-modified tin titanate thick film resistors as H2-gas sensors. Sens. Actuators B: Chem., 123: 233-239.
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  46. Patil, D.R., L.A. Patil ans P.P. Patil, 2007. Cr2O3-activated ZnO thick film resistors for ammonia gas sensing operable at room temperature. Sens. Actuators B: Chem., 126: 368-374.
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  47. Patil, D.R., L.A. Patil and D.P. Amalnerkar, 2007. Ethanol gas sensing properties of Al2O3-doped ZnO thick film resistors. Bull. Mater. Sci., 30: 553-559.
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  48. Patil, D.R. and L.A. Patil, 2007. Room temperature chlorine gas sensing using surface modified ZnO thick film resistors. Sens. Actuators B: Chem., 123: 546-553.
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  49. Patil, D.R. and L.A. Patil, 2007. Ammonia sensing resistors based on Fe2O3-modified ZnO thick films. IEEE Sensors, 7: 434-439.
  50. Patil, D.R. and L.A. Patil, 2007. Al2O3-modified ZnO based thick film resistors for H2-gas sensing. Sens. Transducers, 81: 1354-1363.
  51. Wagh, M.S., G.H. Jain, D.R. Patil, S.A. Patil and L.A. Patil, 2006. Modified zinc oxide thick film resistors as NH3 gas sensor. Sens. Actuators B: Chem., 115: 128-133.
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  52. Patil, L.A. and D.R. Patil, 2006. Heterocontact type CuO-modified SnO2 sensor for the detection of a ppm level H2S gas at room temperature. Sens. Actuators B: Chem., 120: 316-323.
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  53. Patil, D.R., L.A. Patil, G.H. Jain, M.S. Wagh and S.A. Patil, 2006. Surface activated ZnO thick film resistors for LPG gas sensing. Sens. Transducers, 74: 874-883.
  54. Patil, D.R. and L.A. Patil, 2006. Preparation and study of NH3 gas sensing behavior of Fe2O3 doped ZnO thick film resistors. Sens. Transducers, 70: 661-670.
  55. Jain, G.H., L.A. Patil, M.S. Wagh, D.R. Patil, S.A. Patil and D.P. Amalnerkar, 2006. Surface modified BaTiO3 thick film resistors as H2S gas sensors. Sens. Actuators B: Chem., 117: 159-165.
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