Publications by authors named "Zijun C Zhao"

Article Synopsis
  • Researchers demonstrate that quantum interference can improve coherent electron transmission in perovskite tandem solar cells by using ultrathin layers of indium tin oxide (ITO).
  • They create a model utilizing a finite difference time domain approach to solve the time-dependent Schrödinger equation, incorporating an imaginary component to account for losses from incoherent scattering.
  • Their findings align with observed efficiency trends based on ITO thickness, indicating a possible optimized design for better solar cell performance.
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Simple perovskite crystals undergo structural phase transitions on cooling to low temperatures, which significantly change the material properties of the crystal. In this work, we rigorously characterize the temperature evolution of permittivity of a perovskite crystal as it undergoes phase transitions. In particular, we have undertaken precision measurements of a single crystal of Strontium Titanate from 294.

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Lateral memristors configured with inert Pt contacts and mixed phase tin oxide layers have exhibited immediate, forming-free, low-power bidirectional resistance switching. Activity dependent conductance and relaxation in the low resistance state resembled short term potentiation in biological synapses. After scanning probe microscopy, x-ray photoelectron spectroscopy and electrical measurements, the device characteristics were attributed to Joule heating induced decomposition of the minority SnO phase and formation of a SnO conducting filament with higher effective n-type doping.

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The tunnelling of electrons through barriers is important in field emission sources and in interconnects within electronic devices. Here we use the analogy between the electromagnetic wave equation and the Schrodinger equation to find potential barriers that, when added before an existing barrier, increase the transmission probability. A single pre-barrier of negative potential behaves as a dielectric "antireflection coating", as previously reported.

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