Education. Research Interest. Honor and Awards. Curriculum Vitae HyungMo Jeong

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1 Curriculum Vitae HyungMo Jeong Current address: Post-doctoral researcher at Lawrence Berkeley National Laboratory and Department of Chemistry, UC Berkeley. 1 Cyclotron Road, Berkeley, California Nationality: Republic of Korea bellisimo@berkeley.edu, hmjeong@lbl.gov Education Ph. D. in Materials Science and Engineering, Korea Advanced Institute of Science and Technology (KAIST), February 2014 B. S. degree in Materials Science and Engineering, Sungkyunkwan University, February 2008 Research Interest Development of energy storage & conversion systems including hydrogen energy, solar cell, and Li-ion battery; Fabrication of nano-structured materials including porous materials, carbon nanotubes, graphenes, semiconductor and oxide nanowires, quantum dot, core/shell structure, and organic hybrid materials Honor and Awards November 2013 February 2012 December st Hanwha Chemical Paper Award Lithiaiton-induced Rescaling of Metal Oxide Nanoparticles Silver Prize from 18 th Samsung Human Technology Paper Award Silicon Nanoparticles Embedded in Porous Nitrogen Doped Carbon Spheres Through a Bottom-up Approach for Highly Robust Lithium Ion Battery Anodes 3 rd Korea Security Technology Award from Korea Minting, Security Printing & ID Card Operating Corp.(KOMSCO), High Security Technology Using Multi-functional Core/Shell Nanoparticles February 2008-January 2010 Research Fellowship from Korea government February 2005-January 2008 Seah Fellowship from Seah Holdings

2 Research Experience September February 2014 In-situ Study of Electrode Materials in Lithium Charge / Discharge September July 2013 January 2012-present July January 2014 May 2012-March 2013 March 2011-Febuary 2012 December 2010-July 2011 July 2010-June 2011 April 2009-December 2013 Lithiation-induced Rescaling for Ultimate Capacitance Enhanced Activity of Photocatalysts for Water Splitting TiO 2 /grapheme composites for Na-ion Battery Nanocrystals of a porous metal-organic framework give high capacitance and Prof. Omar M. Yaghi Silicon@Nitrogen doped Carbon Sphere Anode for High performance Lithium Ion Battery and Prof. JangWook Choi Transition Metal Decorated Graphene for High Power, Capacity Lithium Ion Battery Nitrogen doped Graphene for Ultracapacitor Synthesis of nitrogen doped grapheme Control the doping level of grapheme Fabrication of ultracapacitor system Evaluation of electrochemical performance, Prof. JangWook Choi Metal-Organic Framework as a Template for Ammonia Borane H 2 Storage Preparation of MOF-5 using chemical method Evaluation of H 2 releasing property using thermogravimetric analysis/mass spectra Filling transition metals (Ni, Co, Pt) in MOF-5 structure Evaluation of H 2 storage property under high pressure January 2009-May 2010 Transition Metal Decorated Carbon Nanotubes for H 2 storage and H 2 Generation Preparation of carbon nanotubes using plasma enhanced chemical vapor deposition Synthesis of various transition metals on the side wall of carbon nanotubes H 2 absorption and desorption analysis using PCT and TPD. Evaluation H 2 generation property of hydrolysis of chemical hydride Elucidating the mechanism using first-principle calculations July 2008-Febuary 2010 Core/Shell Nanomaterials for High Security Materials Preparation of silica nanoparticles using sol-gel methods

3 May-December 2008 Synthesis of superparamagnetic materials and high efficient luminescent materials Synthesis of core/shell materials which contain magnetic property and luminescent property Synthesis of Nitrogen Doped Carbon Nanotubes using DC, RF magnetron sputtering, Microwave PECVD, Thermal CVD apparatus Papers 1. Hyung Mo Jeong, Kyung Min Choi, Dong Ki Lee, Renjia Zhou, and Jeung Ku Kang, Lithiation-induced Rescaling of Metal Oxide Nanoparticles for Ultimate Capacitance, preparation. 2. Hyung Mo Jeong, Weon Ho Shin, Jung Hyo Park, Jeong Hoon. Choi, Yoon. Jeong. Choi, Jeung Ku Kang, Metal-organic framework as a chemical guide to control hydrogen desorption pathways of ammonia borane, Nanoscale., submitted. ( Contributed equally) 3. Se Yun Kim, Jun Ho Kwon, Hyung Mo Jeong, Won Hyuk Suh, Galen D. Stucky, and Jeung Ku Kang, Template-Free Synthesis of Hollow Porous Nickel Carbon Nitride Spheres Having Mesopores and Micropores and Their Supercapacitance Performance, submitted ( Contributed equally) 4. Kyung Min Choi, Hyung Mo Jeong, Jung Hyo Park, Yue-Biao Zhang, Omar M. Yaghi and Jeung Ku Kang, Nanocrystals of a porous metal-organic framework give high capacitance, J. Am. Chem. Soc., in revision 5. Jung Woo Lee, Hyung Mo Jeong, Cafer T. Yavuz, and Jeung Ku Kang, Magnetite Nanoparticles-Carbon Nitride Nanotube Hybrids for the Highly Efficient Water Purification, submitted 6. Hyun Ae Cha, Hyung Mo Jeong, and Jeung Ku Kang, Nitrogen-doped Open Pore Channeled Graphene Facilitating electrochemical Performance of TiO2 nanoparticles as an Anode Material for Sodium Ion Batteries, J. Mater. Chem. A, 2014, 2, 5182, the front cover article ( Contributed equally) 7. Weon Ho Shin, Hyung Mo Jeong, Byung Gon Kim, Jeung Ku Kang, and Jang

4 Wook Choi, Nitrogen-Doped Multiwall Carbon Nanotubes for Lithium Storage with Extremely High Capacity, Nano Lett., 2012, 12, Hyung Mo Jeong, Su Yeon Lee, Weon Ho Shin, Jun Ho Kwon, Abdul Shakoor, Tae Hoon Hwang, Se Yun, Kim, Byung-Seon Kong, Jin-Seok Seo, Yong Min Lee, Jeung Ku Kang and Jang Wook Choi, nitrogen-doped carbon spheres through a bottom-up approach are highly robust lithium-ion battery anodes, RSC Adv., 2012, 2, Jung Woo Lee, Soo Yeon Lim, Hyung Mo Jeong, Tae Hoon Hwang, Jeung Ku Kang and Jang Wook Choi, Extremely Stable Cycling of Ultra-thin V 2 O 5 Nanowire Graphene Electrodes for Lithium Rechargeable Battery Cathodes, Energy Environ. Sci., 2012, DOI: /c2ee22004k 10. Hyung Mo Jeong, Jung Woo Lee, Weon Ho Shin, Yoon Jeong Choi, Hyun Joon Shin, Jeung Ku Kang, and Jang Wook Choi, Nitrogen-Doped Graphene for High- Performance Ultracapacitors and the Importance of Nitrogen-Doped Sites at Basal Planes, Nano Lett., 2011, 11, Weon Ho Shin, Hyung Mo Jung, Yoon Jeong Choi, Keiichi Miyasaka and Jeung Ku Kang, Bimetallic catalysts selectively grown via N-doped carbon nanotubes for hydrogen generation, J. Mater. Chem., 2010, 20, 6544 (Cover) 12. Weon Ho Shin, Seong Ho Yang, Yoon Jeong Choi, Hyung Mo Jung, Cheol Ok Song and Jeung Ku Kang, Charge polarization-dependent activity of catalyst nanoparticles on carbon nitride nanotubes for hydrogen generation, J. Mater. Chem., 2009, 19, 4505, (cover) Patents Holding 1. W. H. Shin, H. M. Jeong, J. W. Choi, J. K. Kang, Development of the Ultrahigh Power Lithium Ion Battery Anode Material Using Dynamically Size Transformable Metal Oxides-Carbon Nanostructure Composites, , KOREA 2. J. K. Kang, W. H. Shin, H. M. Jeong, and Y. J. Choi, Double Metal- Carbonnanotube Hybrid Catalyst and Method for Preparation Thereof, , , KOREA.

5 3. K. M. Choi, J. H. Choi, W. H. Shin, J. W. Lee, H. M. Jeong, J. K. Kang, evaporation-directed nanomaterial patterning method, , , KOREA 4. W. H. Shin, H. M. Jeong, Y. J. Choi, J. K. Kang, Double Metal-Carbonnanotube Hybrid Catalyst and Method for Preparation Thereof, 12/777,180, US Patents Pending 1. H. M. Jeong, J. W. Choi, J. K. Kang, Nitrogen-doped graphene, ultracapacitor using the same and doping methode of the same , KOREA 2. H. M. Jeong, J. W. Choi, J. K. Kang, B. S. Seon Manufacturing method for anode active material of lithium secondary battery comprising carbon composite nano particle with silicon porosity, anode active material of lithium secondary battery manufactured by the same, and lithium secondary battery compris , KOREA 3. K. M. Choi, J. H. Choi, W. H. Shin, J. W. Lee, H. M. Jeong, J. K. Kang, "evaporation-directed nanomaterial patterning method", 13/140,879, , PCT 4. W. H. Shin, H. M. Jeong, J. H. Choi, J. K. Kang, Synthesis of Light Emitting Nanoparticle Using Core/Shell Structure, , KOREA 5. J. K. Kang, W. H. Shin, H. M. Jeong, and Y. J. Choi, Double Metal- Carbonnanotube Hybrid Catalyst and Method for Preparation Thereof, 12/777,180, US Presented at Confference 1. W. H. Shin, H. M. Jeong, and J. K. Kang, Ionic liquid intercalation into single walled carbon nanotube bundles, Conference for electronic structure calculation, H. M. Jeong, W. H. Shin, and J. K. Kang, Facile route to control the electronic band structure of N-doped graphene via nitrogen plasma, Joint Symposium on Materials Science and Engineering for the 21st Century, 2009

6 3. W. H. Shin, H. M. Jeong, and J. K. Kang, Bimetallic Catalysts on N-Doped Carbon Nanotubes: High Catalytic Performance of Hydrogen Generation, MRS 2009 fall meeting 4. H. M. Jeong, W. H. Shin, J. K. Kang, Facile route to control the band structure of the Nitrogen-doped graphene via plasma, MRS 2010 fall meeting 5. H. M. Jeong, W. H. Shin, Y. J. Choi, J. W. Choi, J. K. Kang, Nitrogen doped Graphene for Ultracapacitor, Korean Society for Precision Engineering, H. M. Jeong, W. H. Shin, J. K. Kang, Nitrogen -doped graphene for high performance ultracapacitors and the importance of nitrogen-doped sites at basalplanes, 243rd American Chemical Society, H. M. Jeong, W. H. Shin, J. W. Choi, J. K. Kang, nitrogen-doped carbon spheres through a bottom-up approach are highly robust lithium-ion battery anodes, Material Research Society Spring Meeting, 2013 Instrument Handled DC, RF magnetron sputtering, Microwave Plasma Enhanced CVD, Thermal CVD apparatus, Mechanical ball milling apparatus Thermal annealing and Vacuum annealing apparatus Interpretation of spectra: XRD, SEM, TEM, EDS, TGA, XPS, FT-IR, UV-VIS-IR spectrometer, GC(gas chromatography), PCT, BET, Raman spectroscopy, Electrochemical potentiostat, Solar simulator etc.

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