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Mukesh Bhardwaj
Mukesh Bhardwaj Assistant Professor +91 1332 28 5074
Areas of Interest
  • Research methodologies, Automation tools like potentiostat programming, Latex and planning tools to do reseach efficiently
  • Nano grain sized metallic materials, Nano Nickel and Nano copper coatings
  • Nano composites, Nano ceramic metal matrix coating
  • Weldments, Corrosion protection of weldments
  • Electrocatalysis, Synthesis and characterization of an electrocatalyst for hydrogen evolution reaction
  • Energy materials, Microporous coatings of Nickel for hydrogen evolution
  • Modelling and simulation, Simulation of iron and steel making processes
Professional Background
2009presentAssistant ProfessorIIT Roorkee
20072009Assistant ProfessorNIT Durgapur
20002003Team LeaderNetwork Programs India Noida
20002000Senior Software EngineerInformix Software Mumbai
19962000Assistant ManagerTata Steel Jamshedpur
Educational Details
PhDMetallurgyIIT Kanpur2008
MEMetallurgyIISc Bangalore1996
BEMetallurgyREC Durgapur1994
Administrative Background
20102013Officer in charge MTech ClassesIIT Roorkee
2014presentAssociated NCC officerIIT Roorkee
20142016Officer in Charge B.Tech ProjectIIT Roorkee
2016presentOfficer in charge PG and PHD attendanceIIT Roorkee
Sponsored Research Projects
TopicFunding AgencyYear
Porous copper electrodeposits as a substrate for electrocatalytic materialsScience and Engineering Research Board, DST2012
Pulsed current electrodeposition of porous copper as substrate material electrochemical applicationsIIT Roorkee2010
  • Indian Institute of Metals, Life Member
Teaching Engagements
TitleCourse CodeClass NameSemester
Computer systems and ApplicationsEC101ABTech I yearAutumn
Corrosion Protection MethodsMTN-532MTech IndustrialSpring
Steel MakingMT403BTech IV yearAutumn
Corrosion LabMTN-302BTech third yearSpring
Iron MakingMT304BTech III yearSpring
Materials ScienceMT201BSecond yearSpring
Metallurgical and Instrumental AnalysisMT208Second yearSpring
Projects and Thesis Supervised
Title of ProjectNames of Students
Porous copper electrodeposits as a substrate for electrocatalytic materials..
Participation in short term courses
Couse NameSponsored ByDate
Comprehensive ElectrocardiographyMHRD (GYAN)23.2.2016
Refereed Journal Papers

1. Singh H., Dheeraj P.B., Singh Y.P., Rathore G., Bhardwaj M. (2017). Electrodeposition of porous copper as a substrate for electrocatalytic material. Volume-785. 1-7. DOI- 10.1016/j.jelechem.2016.12.013. EID- 2-s2.0-85007179583

2. Singh A.K., Nath S.K., Bhardwaj M., Pancholi V., Chaudhari G.P. (2012). Microstructural studies on thermomechanically processed plain carbon dual phase. Volume-2.  659-665. EID- 2-s2.0-84860721625

3. Bhardwaj M., Balani K., Balasubramaniam R., Pandey S., Agarwal A. (2011). Effect of current density and grain refining agents on pulsed electrodeposition of nanocrystalline nickel. Volume-27. Issue-9. 642-648. DOI- 10.1179/026708410X12683118611185. EID- 2-s2.0-80155126712

4. Bhardwaj M. (2009). Enhancement of uncoupled nonlinear equations method for determining kinetic parameters in case of hydrogen evolution reaction after dropping two assumptions. Volume-34. Issue-4. 1655-1663. DOI- 10.1016/j.ijhydene.2008.12.017. EID- 2-s2.0-59649089557

5. Bhardwaj M., Balasubramaniam R. (2008). Influence of material structure on the electrochemical behavior of nickel-titanium carbonitride composites. Volume-59. Issue-10. 1474-1480. DOI- 10.1016/j.matchar.2008.01.009. EID- 2-s2.0-49949108274

6. Bhardwaj M., Balasubramaniam R. (2008). A direct method to determine transfer function parameters in case of hydrogen evolution reaction. Volume-33. Issue-16. 4255-4259. DOI- 10.1016/j.ijhydene.2008.05.064. EID- 2-s2.0-50449105075

7. Bhardwaj M., Balasubramaniam R. (2008). Uncoupled non-linear equations method for determining kinetic parameters in case of hydrogen evolution reaction following Volmer-Heyrovsky-Tafel mechanism and Volmer-Heyrovsky mechanism. Volume-33. Issue-9. 2178-2188. DOI- 10.1016/j.ijhydene.2008.02.027. EID- 2-s2.0-42749085621

8. Bhardwaj M., Balasubramaniam R. (2008). A new method for determining kinetic parameters by simultaneously considering all the independent conditions at an overpotential in case of hydrogen evolution reaction following Volmer-Heyrovsky-Tafel. Volume-33. Issue-1. 248-251. DOI- 10.1016/j.ijhydene.2007.09.017. EID- 2-s2.0-38349087616