Growth and Infrared Light Emission of Emerging van der Waals Semiconductors: Black Phosphorus and Tellurium

Abstract Infrared luminescent semiconductor materials and devices are fundamental to optoelectronic information technology. van der Waals (vdW) semiconductors, notably black phosphorus (BP) and tellurium (Te), possess a narrow direct bandgap and a low surface/Auger recombination rate, making them promising for infrared luminescence and light-emitting devices. The excitonic behavior and widely tunable band structure of such materials offer versatile pathways for modulating light emission, while the weak interlayer vdW interactions facilitate exceptional heterointegration capabilities. This review begins by addressing the challenges and recent progress in the epitaxial growth of BP and Te thin films. Furthermore, we discuss excitonic near-infrared emission in few-layer BP, mid-infrared emitters derived from thicker BP, and Te-based mid-infrared luminescent devices, along with their potential for spectral and polarization tuning. Finally, key challenges and prospects in this evolving field are summarized.

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Publication Details

Journal
ACS Nano
Published
2026-09-30
DOI
https://doi.org/10.1021/acsnano.6c09378
Primary Topic
2D Materials and Applications
Type
article
Field-Weighted Citation Impact
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Growth and Infrared Light Emission of Emerging van der Waals Semiconductors: Black Phosphorus and Tellurium

Junyong Wang, Kai Zhang, Jin Zhang, Shuo Zhang et al.
ACS Nano
2D Materials and Applications
article

Growth and Infrared Light Emission of Emerging van der Waals Semiconductors: Black Phosphorus and Tellurium

Junyong Wang, Kai Zhang, Jin Zhang, Shuo Zhang, Keyu Cheng
article en

Abstract

Abstract Infrared luminescent semiconductor materials and devices are fundamental to optoelectronic information technology. van der Waals (vdW) semiconductors, notably black phosphorus (BP) and tellurium (Te), possess a narrow direct bandgap and a low surface/Auger recombination rate, making them promising for infrared luminescence and light-emitting devices. The excitonic behavior and widely tunable band structure of such materials offer versatile pathways for modulating light emission, while the weak interlayer vdW interactions facilitate exceptional heterointegration capabilities. This review begins by addressing the challenges and recent progress in the epitaxial growth of BP and Te thin films. Furthermore, we discuss excitonic near-infrared emission in few-layer BP, mid-infrared emitters derived from thicker BP, and Te-based mid-infrared luminescent devices, along with their potential for spectral and polarization tuning. Finally, key challenges and prospects in this evolving field are summarized.

ACS Nano
University of Science and Technology of China (CN), Chinese Academy of Sciences (CN), Suzhou Institute of Nano-tech and Nano-bionics (CN)
Industry, innovation and infrastructure
Openalex Percentile: Top 26%
2D Materials and Applications
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