Abstract:
The conditions for fabricating n-FeS2/p-Cd1−xZnxTe heterojunctions by the spray pyrolysis of thin pyrite films on p-Cd1−xZnxTe crystalline substrates are investigated. A comprehensive analysis of the current–voltage (I–V) and capacitance–voltage (C–V) characteristics makes it possible to establish the limitation of the reverse current by the space-charge region at small reverse biases and consider the mechanisms of current formation with the participation of energy levels near the heterojunction. A model of the energy profile of the n-FeS2/p-Cd1−xZnxTe heterojunction is proposed, which turns out to be in good correspondence with the experimentally determined parameters and the dynamics of their change with a variation in temperature.
Citation:
I. G. Orletskii, M. I. Ilashschuk, M. N. Solovan, P. D. Mar'yanchuk, O. A. Parfenyuk, E. V. Maistruk, S. V. Nichyi, “Electrical properties and energy parameters of n-FeS2/p-Cd1−xZnxTe heterojunctions”, Fizika i Tekhnika Poluprovodnikov, 52:9 (2018), 1049–1055; Semiconductors, 52:9 (2018), 1171–1177