Vedernikova Anna A, Miruschenko Mikhail D, Arefina Irina A, Babaev Anton A, Stepanidenko Evgeniia A, Cherevkov Sergei A, Spiridonov Igor G, Danilov Denis V, Koroleva Aleksandra V, Zhizhin Evgeniy V, Ushakova Elena V
International Research and Education Centre for Physics of Nanostructures, ITMO University, 197101 Saint Petersburg, Russia.
Research Park, Saint Petersburg State University, 199034 Saint Petersburg, Russia.
Nanomaterials (Basel). 2022 Sep 23;12(19):3314. doi: 10.3390/nano12193314.
Today, the development of nanomaterials with sensing properties attracts much scientific interest because of the demand for low-cost nontoxic colloidal nanoprobes with high sensitivity and selectivity for various biomedical and environment-related applications. Carbon dots (CDs) are promising candidates for these applications as they demonstrate unique optical properties with intense emissions, biocompatibility, and ease of fabrication. Herein, we developed synthesis protocols to obtain CDs based on o-phenylenediamine with a variety of optical responses depending on additional precursors and changes in the reaction media. The obtained CDs are N-doped (N,S-doped in case of thiourea addition) less than 10 nm spherical particles with emissions observed in the 300−600 nm spectral region depending on their chemical composition. These CDs may act simultaneously as absorptive/fluorescent sensing probes for solvent polarity with ∆S/∆ENT up to 85, for ∆ENT from 0.099 to 1.0 and for pH values in the range of 3.0−8.0, thus opening an opportunity to check the pH in non-pure water or a mixture of solvents. Moreover, CDs preserve their optical properties when embedded in cellulose strips that can be used as sensing probes for fast and easy pH checks. We believe that the resulting dual-purpose sensing nano probes based on CDs will have high demand in various sensing applications.
如今,具有传感特性的纳米材料的开发引起了众多科学关注,这是因为对于各种生物医学和环境相关应用而言,需要低成本、无毒且具有高灵敏度和选择性的胶体纳米探针。碳点(CDs)是这些应用的有前景的候选材料,因为它们展现出独特的光学性质,具有强烈的发射、生物相容性且易于制备。在此,我们开发了合成方案,以邻苯二胺为基础获得具有多种光学响应的碳点,这些光学响应取决于额外的前驱体以及反应介质的变化。所获得的碳点是N掺杂的(添加硫脲时为N,S掺杂),呈小于10 nm的球形颗粒,根据其化学成分,在300 - 600 nm光谱区域观察到发射。这些碳点可同时作为溶剂极性的吸收/荧光传感探针,对于∆S/∆ENT高达85,∆ENT为0.099至1.0,以及对于pH值在3.0 - 8.0范围内,从而为在非纯水或溶剂混合物中检测pH值提供了机会。此外,当碳点嵌入纤维素条中时,它们能保持其光学性质,纤维素条可用作传感探针以快速简便地检测pH值。我们相信,基于碳点的所得双功能传感纳米探针在各种传感应用中将有很高的需求。