Haolei Mou | Materials Science | Best Researcher Award

Haolei Mou | Materials Science | Best Researcher Award

Dr. Haolei Mou, Civil Aviation University, China.

Dr. Palaniappan Nagarajan | Material synthesis and characterization | Best Researcher Award

Dr. Palaniappan Nagarajan | Material synthesis and characterization | Best Researcher Award

Dr. Palaniappan Nagarajan , Cecri , IndiaΒ 

Dr. Felipe Caballero-Briones is a distinguished researcher and academic specializing in materials science and corrosion inhibition. He holds the position of Researcher at Instituto Politecnico Nacional, CICATA Altamira, Mexico. His expertise lies in the development and application of advanced materials, particularly in their role as corrosion inhibitors in various environments. Dr. Caballero-Briones has made significant contributions to the field, focusing on enhancing the durability and performance of metallic alloys through innovative material coatings and surface treatments.

Profile:

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Education Details:

  • Ph.D (Chemistry): Central University of Gujarat, Gandhinagar, Gujarat
  • M.Phil – Ph.D (Chemistry): Bharathidasan University (affiliated), awarded in 2020
  • M.Phil (Chemistry): Bharathidasan University, completed between 2006-2008
  • M.Sc (Chemistry): Completed between 2004-2006
  • B.Sc (Chemistry): Completed between 2001-2004
  • 12th Grade: Tamil Nadu Board, completed in 2000
  • 10th Grade: Completed in 1999

Work Experience:

  • Research Associate: IIT Bombay, from February 22, 2021, to December 31, 2021
    • Project: Involved in the development of sodium ion battery cathodes and anodes electrode materials.

Skills:

  • Instrumentation Handling: HPLC, Galvano Static and Potential Static HRTEM, FESEM, AFM, Ellipsometer, UV cell – 2, CHI 920DSECM
  • Spectrum Interpretation: NMR, IR, UV, ELLIPSOMETER, Contact Angles, Profilometer, XPS, AFM, FESEM, XRD HRTEM, TGA, cyclic voltammetry, impedance spectroscopy, Tafel
  • Application Packages: Gaussian 09 Program Package, Origin

Projects:

  • PG Project: Studied the effect of temperature and electrolyte concentration on the dyeing of cotton using direct dye.
  • M.Phil Project: Investigated Galvano Static reduction of glucose and fumaric acid in 1M H2SO4 at a Ti / ceramic TiO2 cathode, conducted at Central Electrochemical Research Center, Karaikudi under the supervision of D. Vasudevan.

Publication Top Notes :

Experimental and computational studies of graphene oxide covalently functionalized by octylamine: Electrochemical stability, hydrogen evolution, and corrosion inhibition of the AZ13 Mg alloy in 3.5% NaCl

Citation -50

Experimental and DFT studies on the ultrasonic energy-assisted extraction of the phytochemicals of: Catharanthus roseus as green corrosion inhibitors for mild steel in NaCl medium

Citation -39

Rapid investigation expiry drug green corrosion inhibitor on mild steel in NaCl medium

Citation -33

Experimental and DFT studies of porous carbon covalently functionalized by polyaniline as a corrosion inhibition barrier on nickel-based alloys in acidic media

Citation -9

Experimental and DFT studies of gadolinium decorated graphene oxide materials for their redox properties and as a corrosion inhibition barrier layer on Mg AZ13 alloy in a 3.5% NaCl environment

Citation -7

 

Prof. QINGYOU LU | CONDENSE MATTER Award | Best Researcher Award

Prof. QINGYOU LU | CONDENSE MATTER Award | Best Researcher Award

Prof. QINGYOU LU ,University of Science and Technology of China , China

🌟 Qingyou Lu (陆轻铀), born on March 22, 1969, in Changchun, Jilin Province, is a distinguished physicist specializing in condensed matter physics. With a B.S. (with High Honors) and a Ph.D. from the University of Texas at Austin, his groundbreaking dissertation focused on magnetic force microscopy of colossal magneto-resistive materials and superconductors. Lu has held significant roles, including Senior Engineer at Cypress Semiconductor and Professor of Physics at the University of Science and Technology of China (USTC) and the High Magnetic Field Laboratory of CAS. His accolades include being Chief Scientist of the National Key R&D Program (2017-2022, 2023-2028), Chair Professor at USTC, and multiple awards for scientific achievements, highlighting his substantial contributions to the field of physics. 🌟

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πŸŽ“ Education

  • B.S. in Physics (with High Honors): University of Texas at Austin (February 1993 – December 1995)
  • Ph.D. in Condensed Matter Physics (with University Fellowship): University of Texas at Austin (January 1996 – July 2000)
    • Ph.D. Dissertation Title: MAGNETIC FORCE MICROSCOPY OF COLOSSAL MAGNETO-RESISTIVE MATERIALS AND SUPERCONDUCTORS

πŸ’Ό Work Experience

  • Senior Engineer, Staff Engineer, Project Leader: Cypress Semiconductor Inc., Bloomington, Minnesota, U.S.A. (September 2000 – April 2005)
  • Professor of Physics: University of Science and Technology of China, Hefei, Anhui, P.R. China (June 2005 – Present)
  • Professor of Physics (Double hire): High Magnetic Field Laboratory of the Chinese Academy of Sciences (CAS), Hefei, Anhui, P.R. China (May 2008 – Present)

πŸ† Awards and Honors

  • 2023: Chief Scientist of National Key R&D Program (2023-2028 term)
  • 2022: Chair Professor of University of Science & Technology of China
  • 2021: Government Subsidies from Anhui Province
  • 2020: The Extra Prize for Science & Technology Achievement of Anhui Province
  • 2018: Associate Editor of Review of Scientific Instruments
  • 2017: Chief Scientist of National Key R&D Program (2017-2022 term)
  • 2017: Outstanding Science and Technology Achievement Prize of CAS
  • 2010: Winner of CAS Core Talents for Key Technologies
  • 2005: Winner of Education Ministry’s New Century Excellent Talents

 

Publications Top Notes πŸ“„

Strain-driven charge-ordered state in La0.67Ca0.33MnO3

Citation -201

Observation of magnetic domain behavior in colossal magnetoresistive materials with a magnetic force microscope

Citation -97

Localized measurement of penetration depth for a high Tc superconductor single crystal using a magnetic force microscope

Citation -8

Low-temperature magnetic forcemicroscopy of colossal magnetoresistive films

Citation -9