Dielectric Behavior as a Screen in Rational Searches for Electronic Materials: Metal Pnictide Sulfosalts
Xin He, David J. Singh, Patsorn Boon-on, Ming-Way Lee, Lijun Zhang

TL;DR
This study uses dielectric properties as a screening tool to identify promising electronic materials within metal-pnictide sulfosalts, revealing compounds with high dielectric constants, low effective mass, and potential thermoelectric applications.
Contribution
It introduces a novel approach of using dielectric screening to discover new complex semiconductors, specifically in the metal-pnictide sulfosalt class, supported by experimental validation.
Findings
Identification of compounds with high dielectric constants and low effective mass.
Discovery of a chemical rule linking bond connectivity to dielectric properties.
Experimental validation with optical data and solar conversion efficiency measurements.
Abstract
Dielectric screening plays an important role in reducing the strength of carrier scattering and trapping by point defects for many semiconductors such as the halide perovskite solar materials. However, it was rarely considered as a screen to find new electronic semiconductors. We performed a material search study using the dielectric properties as a screen to identify potential electronic materials in the class of metal-pnictide ternary sulfosalts, containing Bi or Sb. These salts are basically ionic due to the electronegativity difference between the S and both the metal and pnictogen elements. However, we do find significant cross-gap hybridization between the S p-derived valence bands and pnictogen p-derived conduction bands in many of the materials. This leads to enhanced Born effective charges, and in several cases, highly enhanced dielectric constants. We find a chemical rule for…
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