4.8 Article

Graphene Nanobeacons with High-Affinity Pockets for Combined, Selective, and Effective Decontamination and Reagentless Detection of Heavy Metals

期刊

SMALL
卷 18, 期 33, 页码 -

出版社

WILEY-V C H VERLAG GMBH
DOI: 10.1002/smll.202201003

关键词

carboxylation; heavy metals; nitrogen-doped graphene acid; paper-based sensors; sensing; sorption

资金

  1. ERDF/ESF project Nano4Future [CZ.02.1.01/0.0/0.0/16_019/0000754]
  2. Czech Science Foundation, GA CR-EXPRO [19-27454X]
  3. Internal Student Grant Agency of the Palacky University in Olomouc, Czech Republic [IGA_PrF_2022_019]
  4. ERC grant 2D-CHEM from H2020 [683024]
  5. Research Infrastructure NanoEnviCz by the Ministry of Education, Youth and Sports of the Czech Republic [LM2018124]
  6. IKY foundation
  7. European Social Fund-ESF through the Operational Programme Human Resources Development, Education and Lifelong Learning [MIS-5000432]
  8. European Union
  9. CERCA programme, Generalit de Catalunya by MCIN/AEI [SEV-2017-0706]
  10. MCIN/AEI [MAT2017-87202-P]
  11. European Union Horizon 2020 Programme [881603]
  12. Ministry of Education, Youth, and Sports of the Czech Republic [e-INFRA CZ LM2018140]
  13. Ministry of Education, Youth, and Sports of the Czech Republic through the e-INFRA CZ [90140]

向作者/读者索取更多资源

Access to clean water is a major sustainable development goal. Hetero-bifunctional nanographene fluorescent beacons with high-affinity pockets for heavy metals have been developed to selectively adsorb and detect contaminants in water.
Access to clean water for drinking, sanitation, and irrigation is a major sustainable development goal of the United Nations. Thus, technologies for cleaning water and quality-monitoring must become widely accessible and of low-cost, while being effective, selective, sustainable, and eco-friendly. To meet this challenge, hetero-bifunctional nanographene fluorescent beacons with high-affinity pockets for heavy metals are developed, offering top-rated and selective adsorption for cadmium and lead, reaching 870 and 450 mg g(-1), respectively. The heterobifunctional and multidentate pockets also operate as selective gates for fluorescence signal regulation with sub-nanomolar sensitivity (0.1 and 0.2 nm for Pb2+ and Cd2+, respectively), due to binding affinities as low as those of antigen-antibody interactions. Importantly, the acid-proof nanographenes can be fully regenerated and reused. Their broad visible-light absorption offers an additional mode for water-quality monitoring based on ultra-low cost and user-friendly reagentless paper detection with the naked-eye at a limit of detection of 1 and 10 ppb for Pb2+ and Cd2+ ions, respectively. This work shows that photoactive nanomaterials, densely-functionalized with strong, yet selective ligands for targeted contaminants, can successfully combine features such as excellent adsorption, reusability, and sensing capabilities, in a way to extend the material's applicability, its life-cycle, and value-for-money.

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