首页|面向神经形态显示的有机电子材料与器件

面向神经形态显示的有机电子材料与器件

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数字化时代,高度信息化已成为日常生活的常态.显示技术在人机交互中扮演着至关重要的角色.然而,传统的智能显示技术逐渐难以适应日益复杂的人机交互环境.在这一背景下,神经形态技术作为一种新兴的前沿技术,弥补了现有显示技术的不足之处.通过将神经形态技术与传统显示技术有机结合,可以充分发挥其在传感、驱动和显示方面的巨大优势.有机电子器件具有低制备成本、材料多样性等优势,能赋予基于其构建的神经形态器件丰富的功能性.因此,神经形态显示有望成为有机电子学未来在显示技术发展的重要方向之一,可以为日益复杂的人机交互环境提供更出色的解决方案.本综述全面总结了有机神经形态技术在显示技术中的最新进展,归纳了其在神经形态显示中的3个重要发展方向,并探讨了其最先进的设计和未来可能的发展.
Organic electronic materials and devices for neuromorphic display
In the digital era,the integration of high-level information has become a routine aspect of our daily lives.Display technology plays a pivotal role in human-machine interaction,and its significance requires no elaboration.However,traditional intelligent display technologies are gradually encountering challenges in meeting the demands of ever-evolving human-machine interaction scenarios.Against this backdrop,as a novel frontier research field,neuromorphic technology offers the potential to address the shortcomings of display technologies.By organically combining organic neuromorphic technology with traditional display technologies,we can fully leverage their immense advantages in sensing,driving,and emitting.Organic electronic devices possess advantages such as low fabrication costs and material diversity.They can bestow rich functionality upon neuromorphic devices constructed based on them.Consequently,neuromorphic displays are expected to become one of the crucial directions for the future development of display technology in organic electronics.They can offer superior solutions for increasingly complex human-computer interaction environments.In this review,we comprehensively summarize the latest progress of organic neural morphology technology in display technology,summarize its three important development directions in neural morphology display,and explore its state-of-the-art designs and potential future developments.

neuromorphic devicesneuromorphic displaydisplay technologyorganic luminescent synapsesartificial neurons

刘帅、张翔鸿、刘狄、吴炳坤、陈惠鹏

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福州大学国家与地方平板显示技术联合工程实验室,光电显示研究所,福州 350002

福建省光电子信息科技创新实验室,福州 350100

神经形态器件 神经形态显示 显示技术 有机发光突触 人工神经元

国家自然科学基金国家自然科学基金福建省光电信息科技创新实验室项目

U21A20497623740332021ZZ129

2024

中国科学(化学)
中国科学院

中国科学(化学)

CSTPCD北大核心
影响因子:0.685
ISSN:1674-7224
年,卷(期):2024.54(4)
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