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Halpert, Jonathan E.
2023-05-15 19:35
  • Halpert, Jonathan E.
  • Halpert, Jonathan E. - Assistant Professor-香港科技大学-化学系-个人资料

近期热点

资料介绍

个人简历


Education\r
2003-2008 Ph.D. in Physical Chemistry, Massachusetts Institute of Technology\r
1999-2003 B.S in ACS Chemistry (minor in Mathematics), Tufts University\r
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Experience\r
Jun 2017 - present Assistant Professor Department of Chemistry - The Hong Kong University of Science and Technology (HKUST)\r
Jan 2016-Jun 2017 Senior Lecturer Rutherford Discovery Fellow\r
(Aug 2016) Principal Investigator - MacDiarmid Institute for Advanced Materials & Nanotechnology Victoria University of Wellington - School of Chemical and Physical Sciences, Wellington, New Zealand\r
Oct 2013-Dec 2015 Lecturer\r
(Jan 2015) Rutherford Discovery Fellow\r
(May 2014) Associate Investigator - MacDiarmid Institute for Advanced Materials & Nanotechnology Victoria University of Wellington - School of Chemical and Physical Sciences, Wellington, New Zealand\r
Oct 2011-Sep 2013 Postdoctoral Researcher - OE Group, Cavendish Lab University of Cambridge, Cambridge, UK\r
Jan 2011-Sep 2011 Visiting Fellow - Dan Wang Group, Institute for Process Engineering (IPE) Chinese Academy of Sciences (CAS), Beijing, China\r
Sep 2008 -Nov 2010 Associate D.C. Energy, USA\r
Jun 2008 -Aug 2008 Research Associate - Bawendi Group epartment of Chemistry - Massachusetts Institute of Technology (MIT)Cambridge, MA, USA\r
Sep 2003 -Jun 2008 Research Assistant - Bawendi Group Department of Chemistry - Massachusetts Institute of Technology (MIT) Cambridge, MA, USA\r
Jun 2002 -Aug 2002 NSF REU - Engstrom Group Department of Chemical Engineering - Cornell UniversityIthaca, NY, USA\r
Sep 2002-Aug 2003 Undergraduate Researcher - Utz Group\r
Sep 2001-May 2002 Department of Chemistry - Tufts University Medford, MA, USA

研究领域


"""""Research Area\r
Semiconductor nanocrystals

近期论文


AK Srivastava*, W. Zhang, J. Schneider, J.E. Halpert, A.L. Rogach*, Luminescent Down‐Conversion Semiconductor Quantum Dots and Aligned Quantum Rods for Liquid Crystal Displays, Advanced Science, 2019, 0 (0), 1901345.\r
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C-H Angus Li, Zhicong Zhou, Parth Vashishtha, Jonathan E. Halpert*; The Future is Blue (LEDs): Why Chemistry is the Key to Perovskite Displays, Chemistry of Materials, 2019, 31 (16), 6003-6032.\r
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Long Hu, Shujuang Huang*, Robert J. Patterson, Jonathan E. Halpert*; Enhanced mobility in PbS quantum dot films via PbSe quantum dot mixing for optoelectronic applications, J. Mater. Chem. C, 2019, 7, 4497-4502.\r
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Parth Vashishtha, Michael Ng, Sunil B. Shivarudraiah, Jonathan E. Halpert*; High Efficiency Blue and Green LEDs Using Ruddlesden-Popper Inorganic Mixed Halide Perovskites with Butylammonium Interlayers, Chemistry of Materials, 2019, 31, 83−89.\r
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Ronnie R. Tamming, Justinas Butkus, Michael B. Price, Parth Vashishtha, Shyamal K. K. Prasad, Jonathan E. Halpert, Kai Chen, Justin M. Hodgkiss* ; Ultrafast Spectrally Resolved Photoinduced Complex Refractive Index Changes in CsPbBr3 Perovskites, ACS Photonics, 2019, 6 (2), pp 345–350.\r
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Matthew E. Cryer, Jonathan E. Halpert*; Room Temperature MIR Detection through Localized Surface Vibrational States of SnTe Nanocrystals, ACS Sensors, 2018, 3 (10): 2087-2094.\r
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Long Hu, Zhilong Zhang, Robert J. Patterson, Sunil B Shivarudraiah, Zhicong Zhou, Michael Ng, Shujuang Huang*, Jonathan E. Halpert*; PbSe quantum dot passivated via mixed halide perovskite nanocrystals for solar cells with over 9% efficiency, Solar RRL, 2018, 2, 1800234.\r
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Matthew E. Cryer, Jonathan E. Halpert*; 300 nm Spectral Resolution in the Mid-Infrared with Robust, High Responsivity Flexible Colloidal Quantum Dot Devices at Room Temperature, ACS Photonics, 2018, 5: 3009-3015.\r
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Matthew E. Cryer, Holger Fiedler, Jonathan E. Halpert*; A Photo-Electro-sensitive Memristor Using Oxygen Doping in HgTe Nanocrystal Films, ACS Appl. Mater. Interfaces, 2018, 10 (22): 18927-18934.\r
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Parth Vashishtha, Dani Z. Metin, Matthew E. Cryer, Kai Chen, Justin M Hodgkiss, Nicola Gaston, Jonathan E. Halpert*; Shape-, Size- and Composition-Controlled Thallium Lead Halide Perovskite Nanowires and Nanocrystals with Tuneable Band Gaps, Chemistry of Materials, 2018, 30 (9): 2973-2982.\r
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Vashishtha P, Halpert JE*; Field Driven Ion Migration and Color Instability in Red Emitting Mixed Halide Perovskite Nanocrystal LEDs, Chemistry of Materials, 2017, 29 (14): 5965–5973.\r
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Ma Y, Vashishtha P Chen K, Peach EL, Ohayon D, Hodgkiss JM, Halpert JE*; Controlled Growth of CH3NH3PbI3 Using a Dynamically Dispensed Spin‐Coating Method: Improving Efficiency with a Reproducible PbI2 Blocking Layer, ChemSusChem, 2017, 10 (12): 2677-2684.\r
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Butkus J, Vashishtha P, Chen K, Gallaher JK, Prasad SKK, Metin DZ, Laufersky G, Gaston N, Halpert JE*, Hodgkiss JM*; The Evolution of Quantum Confinement in CsPbBr3 Perovskite Nanocrystals, Chemistry of Materials., 2017, 29 (8): 3644-3652.\r
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McGrath AJ, Yu C, Fiedler H, Butkus J, Hodgkiss JM, Halpert JE*; Dual-Functional Optoelectronic and Magnetic Pyrite/Iron Selenide Core/Shell Nanocrystals, J. Phys. Chem. C, 2017, 121 (14): 8220–8226.\r
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Ma Y, Vashishtha P, Shivarudraiah SB, Chen K, Liu Y, Hodgkiss JM, Halpert JE*; A Hybrid Perovskite Solar Cell Modified with Copper Indium Sulfide Nanocrystals to Enhance Hole Transport and Moisture Stability, Solar RRL, 2017, 1 (8): 1700078.\r
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Price MB, J Butkus, TC Jellicoe, A Sadhanala, A Briane, JE Halpert, K Broch, JM Hodgkiss, RH Friend, F Deschler*; Hot-carrier Cooling and Photoinduced Refractive Index Changes in Organic-inorganic Lead Halide Perovskites, Nature Communications, 2015, 6: 8420.\r
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McVey B, Butkus J, Halpert JE, Hodgkiss JM, RD Tilley*; Solution Synthesis and Optical Properties of Doped Silicon Nanocrystals; J. Phys. Chem. Lett., 2015, 6 (9): 1573–1576.\r
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Chen K†, Barker, AJ†, Morgan FLC, Halpert JE*, Hodgkiss JM*, The Effect of Carrier Thermalization Dynamics on Light Emission and Amplification in Organometal Halide Perovskites, J. Phys. Chem. Lett, 2015, 6: 153-158.\r
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Banger KK, Warwick C, Lang J, Broch K, Halpert JE, Socratous J, Brown A, Leedham T, H Sirringhaus*; Identification of Dipole Disorder in Low Temperature Solution Processed Oxides: Its Utility and Suppression for Transparent High Performance Solution-Processed Hybrid Electronics, Chem. Sci., 2016, 7 (10): 6337-6346.\r
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Halpert JE†, Morgenstern FSF†, Ehrler B, Vaynzof Y, Credgington D, Greenham NC*; Charge Dynamics in Solution-Processed Nanocrystalline CuInS2 Solar Cells, ACS Nano, 2015, 9 (6): 5857–5867.

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