惯性聚合 高效追踪和阅读你感兴趣的博客、新闻、科技资讯
阅读原文 在惯性聚合中打开

推荐订阅源

N
Netflix TechBlog - Medium
I
InfoQ
Engineering at Meta
Engineering at Meta
Jina AI
Jina AI
Recent Announcements
Recent Announcements
T
The Blog of Author Tim Ferriss
P
Proofpoint News Feed
钛媒体:引领未来商业与生活新知
钛媒体:引领未来商业与生活新知
D
Docker
Microsoft Security Blog
Microsoft Security Blog
宝玉的分享
宝玉的分享
Last Week in AI
Last Week in AI
OSCHINA 社区最新新闻
OSCHINA 社区最新新闻
GbyAI
GbyAI
博客园 - Franky
博客园 - 聂微东
Microsoft Azure Blog
Microsoft Azure Blog
博客园 - 叶小钗
酷 壳 – CoolShell
酷 壳 – CoolShell
B
Blog RSS Feed
WordPress大学
WordPress大学
MyScale Blog
MyScale Blog
月光博客
月光博客
罗磊的独立博客

Latest from TechRadar in News

VodafoneThree gets Ofcom approval to bring satellite connectivity to your smartphone NYT Connections today – my hints and answers for April 16 (#1040) Quordle hints and answers for Thursday, April 16 (game #1543) NYT Strands hints and answers for Thursday, April 16 (game #774) Is this the tipping point for AI at work? New Gallup survey finds half of all US employees now use it in some way Allbirds — the shoe viral company — just pivoted into AI, and I wish this were an Onion headline 'Every Apple user needs to know about this nasty scam': Fake warnings tell users their iCloud data will be… 'Makes it even more disappointing': Microsoft backs fossil fuel big time with $7 billion deal in race for AI… 'Maybe it’s not science fiction': Solar panels are causing rainwater to fall in one of the driest places… Maine becomes first US state to pass data centre construction ban Dozens of WordPress plugins hijacked to target thousands of sites Drone-killing laser weapons greenlit for use in US airspace – FAA and Defense Department say high-energy weapons are ‘ready to protect all air travelers from illicit drone use’ despite airspace restrictions and friendly-fire incidents 'We are currently being extorted' — crypto giant Kraken says it is facing extortion attack, here's… McGraw Hill becomes latest to see its Salesforce data hacked Looking for a new PC? Now might be great time to upgrade, as Gartner figures claim shipments are rising — while… Farewell Surface Hub — Microsoft kills off its super-sized touchscreen displays, but you might still be able to get one if you act fast 'We have no interest in patient data in the UK': Palantir UK head defends record as criticisms rise Amazon’s new AI Bio Discovery tool can provide ‘every researcher’ with ‘lab-in-the-loop drug discovery’ – 40+ AI biology models can filter 300,000 novel antibody candidates down to the top results for testing in just weeks Over 100 Chrome Web Store extensions found stealing user data from thousands of accounts OpenAI reveals its Mythos rival designed for cybersecurity pros NYT Connections hints and answers for Tuesday, April 14 (game #1038) Forget Dr Doolittle, study finds animals might not only want to use tech, but they also want to talk to us with it… 'The decision is deeply troubling': Tesla gets a green light for Full Self-Driving in Europe — but not… OpenAI flags third-party data issue — all macOS users should update now Microsoft says Copilot is for ‘entertainment' not work, Meta’s Muse Spark and 7 other AI stories you… Man Utd vs Leeds Live Streams: How to watch Premier League 2025/26 from anywhere in the world, team news What is the release date for Invincible season 4 episode 7 on Prime Video? Linux rules on using AI-generated code - Copilot is OK, but humans must take 'full responsibility for the… The Lenovo Legion Go 2 handheld costs more than two Nvidia RTX 5080 GPUs — and that's genuinely absurd Secretlab is launching its first Diablo desk, with a design that 'traces the infernal history' of the series
A 'Sputnik' moment for chips: Chinese scientists aim to s...
Efosa Udinmwen · 2026-04-17 · via Latest from TechRadar in News
Scientist holding a chip
(Image credit: Scmp)

  • The new growth method runs 1,000 times faster than conventional techniques
  • Liquid gold and tungsten form the bilayer substrate for this process
  • Monolayer tungsten silicon nitride films reached 1.4 by 0.7 inches in size

Chinese researchers have developed a wafer-scale 2D semiconductor growth method that operates roughly 1,000x faster than conventional techniques.

The team from the Institute of Metal Research reengineered the chemical vapor deposition process by introducing a liquid gold and tungsten bilayer as the substrate.

This method enabled wafer-scale growth of monolayer tungsten silicon nitride films with tunable doping properties.

Why 2D materials matter for the future of chips

The resulting films reached dimensions of roughly 1.4 x 0.7 inches, marking a step toward scalable manufacturing of high-performance 2D semiconductors.

For decades, Moore's Law predicted a doubling of computing power roughly every two years - but as transistor dimensions approach atomic scales, quantum effects and heat dissipation are making further miniaturization increasingly difficult.

2D semiconductors have emerged as a leading candidate for post-Moore chip materials, as the rising workloads from AI tools and large language models are pushing current chip architectures to their limits.

Modern transistor architectures depend on the complementary pairing of n-type and p-type materials.

Sign up to the TechRadar Pro newsletter to get all the top news, opinion, features and guidance your business needs to succeed!

The shortage of high-performance p-type options has become a major constraint for next-generation chip design, as while many n-type 2D semiconductors are well established, achieving stable p-type counterparts remains a challenge.

"The lack of high performance p-type materials has become a critical bottleneck for the development of sub-5 nanometer node 2D semiconductors," said Zhu Mengjian from the National University of Defense Technology.

The monolayer tungsten silicon nitride films combine several key advantages for advanced transistor design.

These include strong hole mobility, high on-state current density, mechanical strength, efficient heat dissipation, and chemical stability.

The method expands single-crystal domains to sub-millimeter sizes and increases production speed from approximately 0.00004 inches over five hours to about 0.0008 inches per minute.

This represents an increase of around 1,000x compared to conventional approaches.

The research represents progress in 2D semiconductor manufacturing, but the gap between growing centimeter-scale films in a lab and mass-producing defect-free wafers remains enormous.

The gold-based substrate, while effective for research, would be prohibitively expensive for high-volume production.

China's ambition to leapfrog existing semiconductor limitations is understandable, and this study is a breakthrough.

Unfortunately, the industry has seen many promising 2D materials fail to transition from academic papers to fabrication plants.

Whether this material follows the same path will depend on solving the scalability and cost challenges that have doomed previous options.

Via Interesting Engineering


Follow TechRadar on Google News and add us as a preferred source to get our expert news, reviews, and opinion in your feeds. Make sure to click the Follow button!

And of course you can also follow TechRadar on TikTok for news, reviews, unboxings in video form, and get regular updates from us on WhatsApp too.

Efosa has been writing about technology for over 7 years, initially driven by curiosity but now fueled by a strong passion for the field. He holds both a Master's and a PhD in sciences, which provided him with a solid foundation in analytical thinking.