自愈水凝胶
材料科学
纳米技术
聚合物
物理不可克隆功能
随机性
认证(法律)
计算机科学
信息泄露
鉴定(生物学)
光电子学
泄漏(经济)
遮罩(插图)
密码学
荧光
纳米颗粒
主观性
生物识别
作者
Jiayi Yang,Jianmin Wu,Guoliang Xiao,Guoliang Xiao,Zhenxing Jin,Cun You,Changcheng Bai,Runnan Ye,Pinwen Zhu,Guanjun Xiao,Guanjun Xiao,Shun‐Xin Li,Xiaolong Wang,Bo Zou
标识
DOI:10.1038/s41467-026-73060-w
摘要
Developing high-security anticounterfeiting with reliable authentication remains a significant challenge in preventing information leakage and economic losses from counterfeiting. Here, we successfully reported physically uncopiable optical system based on piezochromic polymer hydrogels (PPH). Pressure treatment induces a clustering-triggered emission transition from red to blue, driven by suppressed through-space interactions and reduced electron delocalization, with the blue-emissive state stably retained after pressure release. Stochastic spatial distribution of red- and blue-emissive particles generates physically unclonable patterns with high distinguishability. Statistical analysis reveals near-ideal randomness together with high uniqueness and reliability. A similarity-based machine learning framework enables rapid and robust authentication, overcoming the subjectivity and inefficiency of human-eye recognition. This work establishes piezochromic polymer hydrogels as a platform for physically unclonable optical systems for secure anti-counterfeiting. Development of materials for anticounterfeiting is challenging, with high levels of complexity required. Here, the authors report the development of piezochromic polymer hydrogels with the optical properties from clusteroluminescence effects allowing patterning for physically unclonable functions.
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