Photothermal-Switched Single-Atom Nanozyme Specificity for Pretreatment and Sensing

Small. 2023 Oct;19(40):e2302929. doi: 10.1002/smll.202302929. Epub 2023 Jun 6.

Abstract

Various applications lead to the requirement of nanozymes with either specific activity or multiple enzyme-like activities. To this end, intelligent nanozymes with freely switching specificity abilities hold great promise to adapt to complicated and changeable practical conditions. Herein, a nitrogen-doped carbon-supported copper single-atom nanozyme (named Cu SA/NC) with switchable specificity is reported. Atomically dispersed active sites endow Cu SA/NC with specific peroxidase-like activity at room temperature. Furthermore, the intrinsic photothermal conversion ability of Cu SA/NC enables the specificity switch by additional laser irradiation, where photothermal-induced temperature elevation triggers the expression of oxidase-like and catalase-like activity of Cu SA/NC. For further applications in practice, a pretreatment-and-sensing integration kit (PSIK) is constructed, where Cu SA/NC can successively achieve sample pretreatment and sensitive detection by switching from multi-activity mode to specific-activity mode. This study sets the foundation for nanozymes with switchable specificity and broadens the application scope in point-of-care testing.

Keywords: photothermal effect; sample pretreatments; sensing; single-atom nanozymes; switchable specificity.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Carbon* / chemistry
  • Copper* / chemistry
  • Nitrogen / chemistry

Substances

  • Copper
  • Carbon
  • Nitrogen