Gombár Gyöngyi, Ungor Ditta, Szatmári István, Juhász Ádám, Csapó Edit
MTA-SZTE Lendület "Momentum" Noble Metal Nanostructures Research Group, University of Szeged, Rerrich B. sqr. 1, H-6720 Szeged, Hungary.
Institute of Pharmaceutical Chemistry, University of Szeged, Eötvös u. 6, H-6720 Szeged, Hungary.
Nanomaterials (Basel). 2024 Feb 27;14(5):434. doi: 10.3390/nano14050434.
Sub-nanometer-sized gold nanoclusters (Au NCs) were prepared via the spontaneous reduction of [AuCl]- ions with a hydroxamate derivative of -tryptophan (Trp) natural amino acid (TrpHA). The prepared TrpHA-Au NCs possess intense blue emission (λ = 470 nm; λ = 380 nm) with a 2.13% absolute quantum yield and 1.47 ns average lifetime. The Trp-stabilized noble metal NCs are excellent metal ion sensors for Fe, but in this work, we highlighted that the incorporation of the hydroxamate functional group with an excellent metal ion binding capability can tune the selectivity and sensitivity of these NCs, which is a promising way to design novel strategies for the detection of other metal ions as well. Moreover, their simultaneous identification can also be realized. By decreasing the sensitivity of our nano-sensor for Fe (limit of detection (LOD) 11 µM), it was clearly demonstrated that the selectivity for Cu-ions can be significantly increased (LOD = 3.16 µM) in an acidic (pH = 3-4) condition. The surface-bounded TrpHA molecules can coordinate the Cu confirmed by thermodynamic data, which strongly generates the linking of the NCs via the Cu ions in acidic pH, and a parallel fluorescence quenching occurs. In the case of Fe, the degree of quenching strongly depends on the metal ion concentration, and it only occurs when the NCs are not able to bind more Fe (10 µM) on the surface, causing the NCs' aggregation.
通过用天然氨基酸色氨酸(Trp)的异羟肟酸衍生物(TrpHA)自发还原[AuCl]⁻离子制备了亚纳米级金纳米团簇(Au NCs)。所制备的TrpHA-Au NCs具有强烈的蓝色发射(λ = 470 nm;λ = 380 nm),绝对量子产率为2.13%,平均寿命为1.47 ns。Trp稳定的贵金属纳米团簇是检测Fe的优秀金属离子传感器,但在本工作中,我们强调引入具有优异金属离子结合能力的异羟肟酸官能团可以调节这些纳米团簇的选择性和灵敏度,这也是设计检测其他金属离子新策略的一种有前途的方法。此外,还可以实现对它们的同时识别。通过降低我们的纳米传感器对Fe的灵敏度(检测限(LOD)11 µM),清楚地表明在酸性(pH = 3 - 4)条件下对Cu离子的选择性可以显著提高(LOD = 3.16 µM)。热力学数据证实表面结合的TrpHA分子可以与Cu配位,这在酸性pH下通过Cu离子强烈地促进了纳米团簇的连接,并发生平行荧光猝灭。对于Fe,猝灭程度强烈取决于金属离子浓度,并且仅在纳米团簇表面无法结合更多Fe(10 µM)导致纳米团簇聚集时才会发生。