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Showing 1 to 5 of 5 for “"Charge Transport Physics"”.

  1. Charge Transport Physics in Coordination Nanosheets (CONASHs)

    … conductivity. This study delves into the unique charge transport characteristics of CONASHs. The investigation focuses on two exemplary coordination nanosheets, copper-benzenehexathiol (Cu-BHT) and nickel-based benzenehexathiol (Ni-BHT), presenting a detailed exploration of their charge transport

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  2. Charge Transport Physics of Organic Semiconductors at High Carrier Densities

    The charge transport physics of organic semiconductors has been studied intensively since the discovery of electrical conduction in doped polyacetylene by Heeger, MacDiarmid, and Shirakawa. While the charge transport physics in this class of materials at low carrier densities of less than 10¹⁸ to …

    cambridge Repository record for Charge Transport Physics of Organic Semiconductors at High Carrier Densities (opens in a new tab)

  3. Understanding transport processes of organic semiconductors via magnetic resonance methods

    … focuses on understanding the excitation and charge transport processes and searching for novel material systems with high mobility together with sufficient carrier densities; however, due to the non-periodic arrangements of molecules and the softness of structure rising from the weakly van …

    cambridge Repository record for Understanding transport processes of organic semiconductors via magnetic resonance methods (opens in a new tab)

  4. Charge and Thermoelectric Transport in Metal Halide Perovskite Semiconductors

    … by a focus to understand the underlying charge transport physics in these lead-based and tin-based perovskite systems. In Chapter 3, we identified a strong causal relationship between metal contact reaction and non-ideal FET characteristics in CsFAMAPbI<sub>3</sub> perovskite FETs. …

    cambridge Repository record for Charge and Thermoelectric Transport in Metal Halide Perovskite Semiconductors (opens in a new tab)

  5. Nanoelectronic Devices using Carbon Nanotubes and Graphene Electrodes: Fabrication and Electronic Transport Investigations

    … dipole barrier which causes inefficient charge injection at the interface. Therefore, having a favorable contact at electrode/semiconductor is highly desirable for high-performance devices fabrication. In this dissertation, the fabrication of nanoelectronic devices and investigation of …

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