Kuei-Hsien Chen

Advanced Materials Laboratory (AML)

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AML Research Overview

We focus on the synthesis of C-, Si-, nitride-, oxide-based nanomaterials & their hybrids/composites; resource-conscious, energy-efficient, and integrated device concepts are employed in the development of these materials for solar cells, fuel cells, supercapacitors, thermoelectrics, light-emitting diodes and sensors.

Research Highlights

MoS2
operando
SECM
Modified g-C3N4 for solar-to-fuel conversion
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Latest Announcements

  • Ultrathin amorphous defective co-doped hematite passivation layer derived via in-situ electrochemical method for durable photoelectrochemical water oxidation
  • Short- and Long-Range Cation Disorder in (AgxCu1–x)2ZnSnSe4 Kesterites
  • Effect of aliovalent substituted highly disordered GeTe compound's thermoelectric performance
  • Enhancing the Areal Capacity and Stability of Cu2ZnSnS4 Anode Materials by Carbon Coating: Mechanistic and Structural Studies During Lithiation and Delithiation
  • Co3V2O8 hollow spheres with mesoporous walls as high-capacitance electrode for hybrid supercapacitor device
  • Atomistic insights into highly active reconstructed edges of monolayer 2H-WSe2 photocatalyst

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