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start [2022/12/08 12:27] – graham | start [2023/04/11 08:03] (current) – graham |
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We investigate energy production and transport at novel material interfaces. To resolve energy production, we require both sub-micron(<10<sup>-6</sup> m) spatial and sub-picosecond (<10<sup>-12</sup> s) time resolution. This enables us to effectively film the electron's journey from initial excitation until the current generation. We apply our unique measurement tools to a host of emerging materials from 1D/2D nanostructure, organic photovoltaics to biological systems. Our goal is to understand and optimize the energy harvesting processes from the scale of molecules to bulk solar Voltaics. | We investigate energy production and transport at novel material interfaces. To resolve energy production, we require both sub-micron(<10<sup>-6</sup> m) spatial and sub-picosecond (<10<sup>-12</sup> s) time resolution. This enables us to effectively film the electron's journey from initial excitation until the current generation. We apply our unique measurement tools to a host of emerging materials from 1D/2D nanostructure, organic photovoltaics to biological systems. Our goal is to understand and optimize the energy harvesting processes from the scale of molecules to bulk solar Voltaics. |
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| External LINK to [[http://opticsrumors.com/doku.php?id=start|Optical and Ultrafast Laser Phenomena Rumor Mill Page]] |
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| External LINK to [[http://opticsrumors.com/doku.php?id=start|Optical and Ultrafast Laser Phenomena Faculty Posting Rumor Mill Page]] |
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| [[lab_protocol|Protocol]] |
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| [[lab_software|Software]] |