Publications by authors named "Jieling Hou"

Article Synopsis
  • Heavy metal pollution, especially from mercury ions (Hg), poses serious threats to the environment and human health due to Hg's toxicity and bioaccumulation.
  • Researchers developed a novel sensor using Pt nanoparticles (PtNPs) combined with TiCT MXene nanoribbons (TiCTNR) to detect ultra-trace levels of Hg, achieving remarkably low detection limits via colorimetric and hydrogel methods.
  • The new dual-mode sensor offers high sensitivity, simple operation, and portability, making it a significant improvement over existing methods for detecting mercury.
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It is of great significance to develop an effective method for methyl parathion (MP) detection. Herein, a novel nitrogen-doped titanium carbide quantum dots (N-Ti C QDs) was prepared and used to construct a simple and sensitive fluorescence sensing platform of MP by making use of inner filter effect (IFE). The prepared N-Ti C QDs can exhibit strong blue fluorescence at 434 nm.

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The sensitive detection of acetylcholinesterase (AChE) and organophosphorus pesticides (OPs) is very important for the protection of human health. Herein, a hybrid material, Pt NPs/Fe-MOF, consisting of a metal-organic framework (MIL-88B-NH, Fe-MOF) decorated with platinum nanoparticles (Pt NPs), was prepared first and exhibited remarkably improved and excellent peroxidase-mimicking activity compared to the Fe-MOF material resulting from the synergistic catalysis effect between Fe-MOF and Pt NPs, which can effectively catalyze 3,3',5,5'-tetramethylbenzidine (TMB) oxidation to generate a blue product (oxidized TMB, oxTMB). Interestingly, in the presence of AChE and acetylcholinesterase, the peroxidase-mimicking activity from Pt NPs/Fe-MOF was inhibited obviously, and thus, a colorimetric sensing platform for AChE can be constructed; more importantly, after the addition of OPs, this nanozyme activity can be recovered, inducing the further successful construction of a sensitive colorimetric sensing platform for OPs.

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