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Updated: Jul 1, 2026

Fabrication of Electrochemical-DNA Biosensors for the Reagentless Detection of Nucleic Acids, Proteins and Small Molecules
Published on: June 1, 2011
Cross-scale design of chemosensor arrays: from molecular self-assembly in water to paper-based devices for metal ion
Yui Sasaki1,2, Tsuyoshi Minami3
1Research Center for Advanced Science and Technology, The University of Tokyo, 4-6-1, Komaba, Meguro-ku, Tokyo 153-8904, Japan.
Abstract:
Monitoring metal ions in aquatic environments is essential for understanding ecosystem dynamics and assessing water quality. Chemosensors have emerged as powerful analytical tools at the molecular level that transduce ion-recognition events into optical signals. In particular, coordination with metal ions enables cross-reactive sensing, allowing for simultaneous detection of multiple analytes based on pattern recognition. This perspective summarizes advances in self-assembled chemosensor systems for metal ion detection and further developments to solid-state chemosensor array devices based on nanotechnologies. In practical chemosensor designs, dynamic covalent bonds between catechol and phenylboronic acid derivatives have been employed to provide a versatile strategy for the spontaneous preparation of chemosensor elements without extensive synthetic effort. Furthermore, integration of these self-assembled chemosensors into paper substrates enables portable detection platforms for on-site analysis without using stationary laboratory instruments. This cross-scale design strategy provides a promising approach for simultaneous detection of metal ions in various water environments across microscopic and macroscopic scales.

