Lanza Mario, Pazos Sebastian, Aguirre Fernando, Sebastian Abu, Le Gallo Manuel, Alam Syed M, Ikegawa Sumio, Yang J Joshua, Vianello Elisa, Chang Meng-Fan, Molas Gabriel, Naveh Ishai, Ielmini Daniele, Liu Ming, Roldan Juan B
Department of Materials Science and Engineering, National University of Singapore, Singapore, Singapore.
Institute for Functional Intelligent Materials, National University of Singapore, Singapore, Singapore.
Nature. 2025 Apr;640(8059):613-622. doi: 10.1038/s41586-025-08733-5. Epub 2025 Apr 16.
The semiconductor industry is experiencing an accelerated transformation to overcome the scaling limits of the transistor and to adapt to new requirements in terms of data storage and computation, especially driven by artificial intelligence applications and the Internet of Things. In this process, new materials, devices, integration strategies and system architectures are being developed and optimized. Among them, memristive devices and circuits-memristors are two-terminal memory devices that can also mimic some basic bioelectronic functions-offer a potential approach to create more compact, energy-efficient or better-performing systems. The memristor industry is growing quickly, raising abundant capital investment, creating new jobs and placing advanced products in the market. Here we analyse the status and prospects of the memristor industry, focusing on memristor-based products that are already commercially available, prototypes with a high technological readiness level that might affect the market in the near future, and discuss obstacles and pathways to their implementation.
半导体行业正在经历加速转型,以克服晶体管的缩放限制,并适应数据存储和计算方面的新要求,特别是在人工智能应用和物联网的推动下。在此过程中,新材料、器件、集成策略和系统架构正在被开发和优化。其中,忆阻器件和电路——忆阻器是一种双端存储器件,还可以模拟一些基本的生物电子功能——为创建更紧凑、节能或性能更好的系统提供了一种潜在方法。忆阻器行业发展迅速,吸引了大量资本投资,创造了新的就业机会,并将先进产品推向市场。在此,我们分析忆阻器行业的现状和前景,重点关注已商业化的基于忆阻器的产品、技术成熟度高且可能在不久的将来影响市场的原型,并讨论其实施过程中的障碍和途径。