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March 13, 2026SusMat1 citationsOpen Access

Emerging 2D Material Prototype Devices Toward Energy‐Efficient and Sustainable Optoelectronics

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JWJiazheng WangDODecai OuyangNZNa Zhang

Key Points

  • This research aims to develop energy-efficient and sustainable optoelectronic devices using 2D materials.
  • Examined conventional CMOS architectures and their limitations
  • Analyzed the properties of two-dimensional materials for optoelectronic applications
  • Developed prototype devices integrating sensing, memory, and computing functions
  • Demonstrated reduced energy consumption in integrated 2D material devices
  • Showed that 2D materials can effectively overcome the von Neumann bottleneck
  • Indicated potential for reshaping the optoelectronic industry landscape with sustainable technology

Abstract

ABSTRACT Driven by global sustainable development goals and the rapid advancement of artificial intelligence (AI), low energy consumption, high integration density, and sustainability have emerged as core imperatives for optoelectronic device development. Conventional complementary metal‐oxide‐semiconductor (CMOS) architectures, featuring discrete sensing‐memory‐computing functions, are constrained by the von Neumann bottleneck, which is marked by excessive energy consumption in data transmission, and fail to meet the energy‐saving demands of scenarios like the internet of things (IoT) and neuromorphic computing. In contrast, two‐dimensional (2D) materials, with attributes including atomic‐scale thickness, efficient optoelectronic coupling, and low fabrication energy consumption, serve as pivotal carriers to overcome this bottleneck. Prototype 2D material‐based optoelectronic devices are evolving from single‐function units to sensing‐memory‐computing integrated systems, reducing energy redundancy in traditional architectures via material‐structure synergetic adaptation while combining low energy consumption, high integration, and environmental compatibility. With breakthroughs in key technologies, All‐in‐One 2D material devices will most likely reshape the optoelectronic industry landscape, providing hardware support for the synergy between AI and green development.

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Cite This Study

Wang et al. (2026) studied this question.

synapsesocial.com/papers/69b3acb202a1e69014cce96dhttps://doi.org/10.1002/sus2.70060
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