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  • Space environment adaptability of 2D semiconductor materials
    The CVD-grown materials and FET devices demonstrate superior adaptability to space conditions, holding great promise for future space applications In addition to the harsh space environment tests, supplementary tests were also conducted in the spacecraft interior to demonstrate the further potentials of 2D semiconductor materials
  • Two-dimensional semiconductors demonstrate space readiness for next-gen . . .
    In a landmark demonstration of material resilience, researchers at Tsinghua University's School of Materials Science and Engineering have confirmed that two-dimensional (2D) semiconductor materials can endure the extreme environment of space The investigation, led by Professor Ruitao Lv, involved launching both 2D materials and field-effect transistors (FETs) into low Earth orbit aboard China
  • 2D Chip Breakthrough: 6,000 Transistors, 3 Atoms Thick
    Scientists in China have created the most complex 2D microprocessor yet, featuring nearly 6,000 transistors The devices are made from molybdenum disulfide, a material just three atoms thick #
  • Exploring Two-Dimensional Semiconductors in Space: Pioneering New . . .
    In a remarkable advancement for space technology and materials science, researchers from Tsinghua University have conducted a pioneering experiment demonstrating the resilience of two-dimensional (2D) semiconductor materials in the extreme conditions of space
  • Two-dimensional semiconductor materials venture into space — Unlocking . . .
    In a groundbreaking experiment, researchers from Tsinghua University have proven that two-dimensional (2D) semiconductor materials can withstand the harsh conditions of space
  • Two-Dimensional Semiconductor Materials Venture Into Space
    In a groundbreaking experiment, researchers from Tsinghua University have proven that two-dimensional (2D) semiconductor materials can withstand the harsh conditions of space The team, led by Professor Ruitao Lv from the School of Materials Science and Engineering, sent 2D materials and field-effect transistors (FETs) into orbit aboard China’s reusable recoverable satellite—Shijian-19
  • 2D Materials The 2025 2D Materials Roadmap - arXiv. org
    Polaritonics of 2D materials Hui Deng, Xiaoqin Li, Siyuan Dai and D N Basov 2D semiconductor field-effect transistor and 3D integration Xinran Wang, Saptarshi Das, Xiangfeng Duan and Zhihao Yu Quantum photonics and lighwave electronics Markus Borsch, Andrea C Ferrari, Rupert Huber, Mackillo Kira and Fengnian Xia
  • Two-dimensional reconfigurable electronic and optoelectronic devices . . .
    In the post-Moore era, silicon-based electronic devices have reached their physical limits, impeding significant performance enhancements through further miniaturization of transistor size Two-dimensional (2D) materials have demonstrated considerable potential for application in electronic devices due to their superior optoelectronic properties, providing new ideas and methods to solve this
  • Two Dimensional Semiconductor Materials Tap into Space
    In IoT devices, 2D semiconductor materials can make devices more miniaturized and have low power consumption, meeting the needs of massive device connectivity In the field of wearable devices, its thin, lightweight, and high-performance characteristics can also bring more room for innovation in product design
  • The Roadmap of 2D Materials and Devices Toward Chips
    Here, in this review, the progress of 2D semiconductors in process engineering and various electronic applications are summarized A careful introduction of material synthesis, transistor engineering focused on device configuration, dielectric engineering, contact engineering, and material integration are given first
  • 2D-material based devices in the logic scaling roadmap | imec
    Moving forward, imec takes a unique approach to reduce the cost effort barrier: introducing less performant, planar 2D-material based devices earlier in the roadmap Learn all about the integration challenges, state-of-the-art MX 2 devices, imec’s strategy, and the need for worldwide collaboration
  • Two-dimensional semiconductors survive and thrive in outer space . . .
    2D semiconductors, particularly transition metal dichalcogenides, have emerged as promising materials with regard to continuing the miniaturization of microelectronic devices Naturally, an important question arises: how robust are monolayer 2D semiconductors when subjected to the harsh conditions of outer space?





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