Publications by authors named "Tianyang Ding"

We integrate monolayer TMDCs into silicon-on-insulation (SOI) waveguides and dielectric-loaded surface plasmon polariton (DLSPP) waveguides to enhance nonlinear parameters (γ) of silicon-based waveguides. By optimizing the waveguide geometry, we have achieved significantly improved γ. In MoSe-on-SOI and MoSe-in-DLSPP waveguide with optimized geometry, the maximum γ at the excitonic resonant peak (λ) is 5001.

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Developing high-accuracy luminescent sensors for detecting emerging environmental pollutants is of great importance and is still a challenge. Utilizing a 4-carboxyphenylphosphonic acid (Hpbc) ligand, a novel one-dimensional (1D) Zn-based coordination polymer with the formula [Zn(Hpbc)(2,2'-bipy)(HO)]·HO (Zn-CP, Hpbc = 4-HOOCCHPOH, 2,2'-bipy = 2,2'-bipyridine) has been hydrothermally synthesized. Each of the 1D chains was linked π-π stacking interactions and formed a supramolecular framework.

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Construction and investigation of dual-functional metal-organic frameworks (MOFs) with luminescent sensing and proton conduction provide widespread applications in clean energy and environmental monitoring fields. By selecting a phosphonic acid ligand 4-pyridyl-CHN(CHPOH) (HL) and coligand 2,2'-biimidazole (Hbiim), two cadmium-based MOFs [Cd(HL)(Hbiim)] () and (Hbiim)·[Cd(L)(Hbiim)Cl] () with different structures and properties have been hydrothermally synthesized by controlling reaction temperature. Based on the excellent thermal and chemical stabilities, and good luminescent stabilities in water solution, and can serve as luminescent sensors of chloramphenicol (CAP) with different quenching constant () values and detection limits (LODs) in water, simulated environmental system, and real fish water system.

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