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1 Curriculum Vitae of Dinesh Singh Rawat 410 West Freeman Apt#4, IL Ph: (618) s: (a) (b) WORK EXPRERIENCE Research Assistant and Teaching Assistant in SIUC. Taught laboratories in Mechanics, Electricity, Magnetism and Modern Physics as Teaching Assistant. (Aug present). Lecturer in SIUC (FA'07, SP'08, and FA'09). Lecturer in a private college at New Delhi and also worked as a consultant for data acquisition and analysis for quality control (Sep1995- Jan 2000) EDUCATION: Ph. D. Applied Physics, at (Expected graduation: Summer 2010). M. S. Physics, at, Dec M. Sc. Physics, J. M. I. University, New Delhi, India, Aug B. Sc. Physics, Delhi University, India, Aug EXPERIMENTAL RESEARCH: Projects Undertaken: Adsorption study of hydrogen on carbon-nanofiber-doped carbon liquid crystals for storage medium. Acid treatment of single-walled carbon nanotubes and plasma treatment of multiwalled carbon nanotubes to enhance uptake capacity. Adsorption studies of linear alkanes to understand effect of carbon chain length on adsorption characteristics. Adsorption study of hydrogen on metal-coated multiwalled carbon nanotubes. Adsorption study of gases on open-ended and closed-ended single-walled carbon nanotubes to study dependence of kinetics of gas adsorption on different geometries. Aug 93- Aug 95: Worked for the final project of M. Sc. The project was about study of effect of moisture on electronic circuits.

2 Experimental Skills Area of expertise: experimental study of volumetric gas adsorption on nano- and micro-porous materials. The measurements conducted involved the use of high-vacuum technology (e.g., mechanical, oil diffusion and turbo-molecular pumps, helium mass spectrometer leak detectors, pressure gauges, etc.), cryogenic and temperature control equipment, a wide range of sensitive pressure monitoring equipment, and handling high-purity gases. The work also required the use computerized data acquisition in a Labview environment. Considerable familiarity with electron microscopy techniques. As part of the doctoral research, conducted TEM (transmission electron microscopy) and SEM (scanning electron microscopy) characterizations of carbon nanotubes and other carbon nanoporous materials. Familiarity with the use of plasma etching equipment for treating carbon samples. COMPUTER SKILLS: Operating systems: MS-DOS, Windows 95/97/2000/XP. Software used: MS Office, Origin for graph Plots. Data acquisition: Labview 6i and Labview 7.1. PROFESSIONAL AFFILIATIONS: Member of American Physical Society. PUBLICATIONS IN PEER-REVIEWED JOURNALS: 1. D. S. Rawat and A. D. Migone Non-monotonic adsorption kinetics of Alkanes adsorbed on HiPco single-walled carbon nanotubes. (Under Review). 2. D. S. Rawat, T. Furuhashi and A. D. Migone Adsorption characteristics of linear alkanes adsorbed on purified HiPco single-walled carbon nanotubes (Under Review). 3. D. S. Rawat, A. D. Migone, F. Romá, A. J. Ramirez-Pastor and J. L. Riccardo Surface area calculation of single walled carbon nanotubes using linear molecules Langmuir 25, (2009). 4. D. S. Rawat, T. Furuhashi and A. D. Migone Study of butane monolayer adsorbed on Single-walled carbon nanotubes Langmuir 25, (2009).

3 5. D. S. Rawat, V, Krungleciciute, L. Heroux, M. Bulut and A. D. Migone Dependence of single-walled carbon nanotubes adsorption kinetic on temperature and binding energy Langmuir 24, (2008). 6. D. S. Rawat, M. M. Calbi and A. D. Migone, Equilibration Time: Kinetics of Gas Adsorption on Closed and Open-ended Single walled Carbon Nanotubes J. Phys. Chem. C 111, (2007). 7. D. S. Rawat and A. D. Migone, Phases of Ethane Adsorbed on Single Walled Carbon Nanotubes Phys. Rev. B 75, (2007). 8. D. S. Rawat, N. Taylor, S. Talapatra, S. K. Dhali, P. M. Ajayan and A. D. Migone, Effect of surface cleaning and functionalization of nanotubes on gas adsorption Phys. Rev. B 74, (2006). (The article was also selected for September 25, 2006 issue of Virtual Journal of Nanoscience & Technology) 9. D. S. Rawat, L. Heroux, V. Krungleviciute and A. D. Migone, Adsorption of Xenon on Purified HiPco Single Walled Carbon Nanotubes Langmuir 22, (2006). 10. D. S. Rawat, S. Talapatra, K. Lafdi and A. D. Migone Use of carbon-nanofiber-doped carbon liquid crystals as suitable adsorbents for hydrogen storage Appl. Phys. A 78, (2004). 11. S. Talapatra, D. S. Rawat and A. D. Migone Possible existence of higher coverage quasi-one-dimensional phase of argon adsorbed on bundles of single-walled carbon nanotubes Journal of Nanoscience and Nanotechnology 2, (2002).

4 PRESENTATIONS: Invited Talks General Motors R&D Materials and Processes Laboratory, Warren, Michigan. Adsorption of Gases on Carbon Nanotubes, June Contributed Talks 1. Hydrogen adsorption on metal coated Multiwalled Carbon Nanotubes, APS March (16-20) Meeting 2009; Pittsburg, Pennsylvania. 2. Study of propane films adsorbed on purified HiPco Carbon Nanotubes, APS March (16-20) Meeting 2009; Pittsburg, Pennsylvania. 3. Alkanes adsorbed on Carbon Nanotubes: Specific surface areas and isothermal adsorption kinetics, APS March (16-20) Meeting 2009; Pittsburg, Pennsylvania. 4. Adsorption Kinetics of CH 4 on Purified HiPco Single-Walled Carbon Nanotubes Bull. Am. Phys. Soc. Vol. 53, No.2, APS March (10-14) Meeting 2008; New Orleans, Louisiana. 5. Study of Butane adsorption on Purified HiPco Carbon Nanotubes, Bull. Am. Phys. Soc. Vol. 53, No.2, APS March (10-14) Meeting 2008; New Orleans, Louisiana. 6. Adsorption Kinetics of Alkanes on Purified HiPco Nanotubes, Bull. Am. Phys. Soc. Vol. 53, No.2, APS March (10-14) Meeting 2008; New Orleans, Louisiana. 7. Dependence of single-walled carbon nanotubes adsorption kinetics on temperature and binding energy Bull. Am. Phys. Soc. Vol. 52, No.1, APS March (5-9) Meeting 2007; Denver, Colorado. 8. Evidence of a possible phase transition in ethane adsorbed on purified HiPco nanotubes Bull. Am. Phys. Soc. Vol. 52, No.1, APS March (5-9) Meeting 2007; Denver, Colorado. 9. Phases of Ethane adsorbed on purified HiPco single walled carbon nanotubes Bull. Am. Phys. Soc. Vol. 51, No.1, APS March (13-17) Meeting 2006; Baltimore, Maryland. 10. Adsorption of Xenon on Purified HiPco single walled carbon nanotubes Bull. Am. Phys. Soc. Vol. 50, No.1, APS March (21-25) Meeting 2005; Los Angeles, California.

5 11. Adsorption of Tetraflouromethane on HiPco Purified SWNTs Bull. Am. Phys. Soc. Vol. 50, No.1, APS March (21-25) Meeting 2005; Los Angeles, California. 12. Use of carbon-nanofiber-doped carbon liquid crystals as suitable adsorbents for hydrogen storage Bull. Am. Phys. Soc. Vol. 48, No.1, APS March (3-7) Meeting 2003; Austin, Texas. 13. Possible existence of higher coverage quasi-one-dimensional phase of argon adsorbed on bundles of single-walled carbon nanotubes Bull. Am. Phys. Soc. Vol. 47, No.1, APS March (18-22) Meeting 2002; Indianapolis, Indiana.

6 REFERENCES 1. Prof. Aldo D. Migone Phone: Prof. Saikat Talapatra Phone: Prof. Mesfin Tsige Phone: Prof. M. Mercedes Calbi Phone: Prof. S. Stadler & Astronomy Louisiana State University Phone:

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