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Stimuli-Responsive Disassembly of Nanoparticle Aggregates for Light- Up Colorimetric Sensing

机译:用于点亮比色传感的纳米粒子聚集体的刺激响应性分解

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Controlled assembly of nanomaterials has been the focus of much research. In contrast, controlled disassembly has not received much attention, even though both processes have been shown to be important in biology. By using a Pb(2+)-dependent RNA-cleaving DNAzyme, we demonstrate here control of the disassembly of gold nanoparticle aggregates in response to Pb(2+). In the process, we show that nanoparticle alignment plays an important role in the disassembly process, with the tail-to-tail configuration being the most optimal, probably because of the large steric hindrance of other configurations. The rate of disassembly is significantly accelerated by using small pieces of DNA to invade the cleaved substrate of the DNAzyme. Investigation of such a controlled disassembly process allows the transformation of previously designed 'light-down' colorimetric Pb(2+) sensors into 'light-up' sensors.

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