材料科学
接口(物质)
各向异性
笔迹
各向同性
纤维
极限抗拉强度
超分子化学
信号(编程语言)
计算机科学
文本识别
纳米技术
分子识别
纳米纤维
分割
横截面
智能字符识别
工作(物理)
人工智能
模式识别(心理学)
光电子学
手写体识别
纤维素
作者
Yuting Jiang,Yongyue Zhang,Zongying Fu,Yun Lu
标识
DOI:10.1021/acsami.5c19469
摘要
Text recognition is a cornerstone of human-computer interaction (HCI), yet conventional isotropic sensing interfaces are intrinsically constrained in resolving the complex directional features of handwriting, particularly the intricate stroke orientations of Chinese characters. Here, leveraging the intrinsic anisotropic architecture of natural wood, we developed a mechanically robust, highly stretchable, and sensitive hydrogel-based interface capable of accurately distinguishing diverse handwriting trajectories. The resulting wood-based soft hydrogel used for human-computer interaction (WSH-HCI) achieves 25 MPa tensile strength along the fiber axis─6.5× higher than in the transverse direction─while maintaining stable multidirectional signal discrimination and up to 96% accuracy in Chinese basic-stroke recognition. These performances arise from preserved aligned cellulose nanofiber channels and a strong PVA-cellulose hydrogen-bonding network. Demonstrations include real-time recognition of English letters and Chinese characters. This work provides a viable pathway toward high-performance anisotropic hydrogel sensors for advanced handwriting recognition and intelligent human-computer interactions.
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