Bioinspired Turing-Nanoarchitected Needle for Solid Matrices Analysis: A Universal Platform Enabling Dual-Scale SERS Enhancement.

IF 27.4 1区 材料科学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Yang Jin, Zhenyang Hu, Hongwen Xu, Jun Cheng, Zhilong Yu, Weirong Yao, Tiancong Zhao, Wei Ji, Yukihiro Ozaki, Yunfei Xie
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Abstract

The spontaneous emergence of Turing patterns in biological systems has inspired advanced materials with superior performance, yet their untapped potential in surface-enhanced Raman spectroscopy (SERS) technology offers a transformative frontier. Mirroring the anti-reflective coating of insect eyes, where Turing-patterned corneal protrusions form graded refractive index interfaces with the lens, a bioinspired integration of Turing-nanoarchitected Ag (TN-Ag) with in situ zeolitic imidazolate framework-8 (ZIF-8) growth is engineered. The electrochemically sculpted fractal framework on silver needles serves dual roles as plasmonic amplifiers and curvature-guided templates for ZIF-8 growth, spatially aligning electromagnetic hotspots with selective-enrichment porous channels. The TN-Ag/ZIF-8 hierarchical architecture enables dual-scale SERS enhancement through mesoscopic light modulation via refractive index gradients and microscopic molecular enrichment through size-selective pores. Leveraging 4-mercaptophenylboronic acid as a dual-recognition probe, this platform achieves ultrasensitive discrimination and detection of Hg2+ (10-10 m) and methylmercury (10-8 m) with exceptional interference resistance and practical reliability. Further, its injector-integrated design permits direct sampling in untreated solid matrices while seamlessly interfacing with portable Raman systems, demonstrating readiness for real-world environmental monitoring and food safety diagnostics. By transmuting biomimetic principles into functional nanofabrication, this work establishes a universal paradigm for next-generation on-site chemical analysis, uniting biological design logic with engineered sensing demands.

生物启发图灵纳米结构针固体矩阵分析:一个通用平台,使双尺度SERS增强。
生物系统中自发出现的图灵模式激发了具有卓越性能的先进材料,但它们在表面增强拉曼光谱(SERS)技术中尚未开发的潜力提供了一个变革的前沿。模仿昆虫眼睛的抗反射涂层,图灵图案的角膜突出物与晶状体形成渐变的折射率界面,设计了图灵纳米结构银(TN-Ag)与原位沸石咪唑酸框架-8 (ZIF-8)生长的生物启发集成。银针上的电化学雕刻分形框架具有等离子体放大器和ZIF-8生长的曲率导向模板的双重作用,在空间上将电磁热点与选择性富集多孔通道对齐。TN-Ag/ZIF-8分层结构通过折射率梯度的介观光调制和通过尺寸选择孔的微观分子富集实现双尺度SERS增强。该平台利用4-巯基苯硼酸作为双识别探针,实现了对Hg2+ (10-10 m)和甲基汞(10-8 m)的超灵敏鉴别和检测,具有优异的抗干扰性和实用可靠性。此外,它的进样器集成设计允许在未经处理的固体基质中直接采样,同时与便携式拉曼系统无缝连接,为现实世界的环境监测和食品安全诊断做好准备。通过将仿生原理转化为功能纳米制造,这项工作建立了下一代现场化学分析的通用范例,将生物设计逻辑和工程传感需求结合起来。
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来源期刊
Advanced Materials
Advanced Materials 工程技术-材料科学:综合
CiteScore
43.00
自引率
4.10%
发文量
2182
审稿时长
2 months
期刊介绍: Advanced Materials, one of the world's most prestigious journals and the foundation of the Advanced portfolio, is the home of choice for best-in-class materials science for more than 30 years. Following this fast-growing and interdisciplinary field, we are considering and publishing the most important discoveries on any and all materials from materials scientists, chemists, physicists, engineers as well as health and life scientists and bringing you the latest results and trends in modern materials-related research every week.
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