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Dark and photoconductive properties of hydroxymethylferrocene
Affiliation:1. Department of Physical Therapy, College of Applied Science, University of Illinois, Chicago, IL, United States of America;2. Healthy Living for Pandemic Event Protection (HL – PIVOT) Network, Chicago, IL, United States of America;3. HealthPartners Institute, Minneapolis, MN, United States of America;4. Department of Health Policy and Management, University of Minnesota, Minneapolis, MN, United States of America;5. Nationhood Lab, Pell Center for International Relations and Public Policy, Salve Regina University, Newport, RI, United States of America
Abstract:The dark electrical conduction properties of hydroxymethylferrocene have been studied as a function of voltage at different sample cell temperatures by using sandwich-cell configuration. The analysis of the results has been based on the space charge limited conduction (SCLC) theory. The distribution of traps in this material has been found to be single discrete level type. Photoconductivity in this material has been studied as a function of the intensity of exciting light source (mercury lamp; 125 W) and sample cell temperature. The results have been compared with the results of ferrocene and, in some cases, with other ferrocene derivatives. An unusual temperature-dependence of photocurrent has been observed. The possible origin of this observation has been discussed.
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