研究目的
To synthesize a combined structure of anodic TiO2 nanotubes and TiO2 nanoparticles (TiNTs-TiNPs) for dye-sensitized solar cells (DSSCs) to improve their efficiency.
研究成果
The combined structure of TiNTs and TiNPs synthesized by HCVD method significantly improves the efficiency of DSSCs, with a 130% increase in efficiency for the device based on TiNTs-TiNPs array prepared after one hour HCVD treatment compared to bare TiNTs. The study concludes that ordered and open 1D combined TiNTs-TiNPs array transports electrons effectively, resulting in more efficient photoanodes in DSSC devices.
研究不足
Longer durations of HCVD treatment tend to deteriorate the tubular structure, affecting the efficiency of DSSCs. The study also notes the challenge of coating the tube interior and exterior homogeneously with nanoparticles.
1:Experimental Design and Method Selection:
The study combines hydrothermal and chemical vapor deposition methods to synthesize TiNTs-TiNPs. Ordered TiO2 nanotubes were fabricated by a two-step anodization method in ethylene glycol containing NH4F at 50V. The nanotubular array was annealed at 450 oC and then subjected to a hydrothermally produced gaseous environment in an autoclave with diluted TiCl4 solution at its bottom.
2:0V. The nanotubular array was annealed at 450 oC and then subjected to a hydrothermally produced gaseous environment in an autoclave with diluted TiCl4 solution at its bottom. Sample Selection and Data Sources:
2. Sample Selection and Data Sources: Highly pure Ti foil was used for anodization. The samples were characterized using SEM, TEM, XRD, and XPS.
3:List of Experimental Equipment and Materials:
Ti foil, ethylene glycol, NH4F, TiCl4, autoclave, SEM (ZEISS SUPRA-55), TEM (FEI Tecnai), XRD (Bruker D8 Discover), XPS.
4:Experimental Procedures and Operational Workflow:
The Ti foil was anodized, annealed, and then subjected to hydrothermal chemical vapor deposition (HCVD) with TiCl4 at 180 oC for varying durations. The samples were then characterized and used in DSSCs.
5:Data Analysis Methods:
The performance of DSSCs was evaluated using current-voltage (J-V) measurements, IPCE spectra, and EIS measurements.
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