Vertical cdte:pvp/p-si-based temperature sensor by using aluminum anode schottky contact
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Date
2022
Journal Title
Journal ISSN
Volume Title
Publisher
IEEE
Access Rights
info:eu-repo/semantics/embargoedAccess
Abstract
The vertical Schottky barrier diode (SBD)-based temperature sensors with the drive modes are a significant issue with more advantageous than the on-chip sensor. The sensitivity (S) and the current conduction mechanisms (CCMs) of the vertical cadmium telluride (CdTe):polyvinyl pyrolidone (PVP)/p-Si SBD were studied experimentally over the range of 80–340 K and compared with that of the lateral and vertical sensors. It is shown that the low and moderated voltages of the CdTe:PVP/p-Si corresponding two linear regions of the current–voltage (I–V) outputs are around 0.1–0.3 and 0.4–0.65 V, respectively. The variation of Schottky barrier height (BH; Bo) and ideality factor (n) with temperature was obtained according to two linear regions. Energy dispersion of the interface traps (Nss) with changing temperature is additionally analyzed quantitatively. It is concluded that the thermionic-emission (TE) theory with double-Gaussian distribution (GD) is the dominant mechanism resulting the I–V characteristics of the vertical CdTe:PVP/p-Si SBD in this study. Moreover, in the constant current, the S values at the drive current of 10, 20, and 50 ?A were resulting in a range of ?1.6 to ?1.8 mV/K.
Description
Keywords
Current conduction mechanisms (CCMs), Schottky contact, temperature sensor, vertical diode
Journal or Series
IEEE Sensors Journal
WoS Q Value
Q1
Scopus Q Value
N/A