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February 2, 2026Physical Chemistry Chemical Physics0 citations

Anomalous Carrier Transport Enhances Thermoelectricity in HfSe2/SnX2 (X = S, Se) based Heterostructures

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JPJipin PMRBRaju K. Biswas

Key Points

  • The study aims to explore how bonding principles can reduce lattice thermal conductivity in thermoelectric materials.
  • Analyzed crystal structure and chemical bonding in HfSe2/SnX2 heterostructures
  • Investigated effects on lattice thermal conductivity using experimental and theoretical approaches
  • Compared thermal and electrical transport properties in different configurations
  • Identified anomalous carrier transport mechanisms that improve thermoelectric efficiency
  • Reported a significant reduction in lattice thermal conductivity for optimized heterostructures
  • Demonstrated enhanced thermoelectric performance compared to traditional materials

Abstract

Crystal structure and chemical bonding are well recognized key factors governing heat transport, yet strategies that leverage bonding principles to reduce lattice thermal conductivity (κₗ) remains relatively unexplored. Herein, considering. . .

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Cite This Study

PM et al. (2026) studied this question.

synapsesocial.com/papers/6980fd9dc1c9540dea80f51dhttps://doi.org/10.1039/d5cp04330a
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