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September 26, 2025Small3 citations

Enhanced Carrier Transfer Dynamics via Metalloporphyrin‐Mediated Charge Distribution Modulation on Heterojunction Photoelectrodes

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ZWZe WangRGRuiqin GaoXNXingming Ning

Key Points

  • TiO2/Au/ZnTPPS4 shows a 3.2 times higher PEC activity compared to TiO2/Au/TPPS4, enhancing overall performance.
  • The charge transfer kinetics rate constant of TiO2/Au/ZnTPPS4 reaches 12.57 × 10−2 cm s−1, much higher than TiO2's rate.
  • Using a hydrothermal synthesis method, researchers constructed nanocomposites to study charge separation dynamics.
  • The study suggests that metalloporphyrins can significantly boost charge transfer efficiency in photoelectrochemical systems.

Abstract

Abstract Using porphyrin as an interfacial charge mediator on a photoelectrode has been demonstrated to enhance photogenerated charge separation and photoelectrochemical (PEC) charge transport kinetics performance. However, the mechanism of boosting charge transfer is rarely explored. Notably, whether the charge distribution of metal‐free porphyrins and metalloporphyrins influences photogenerated charge transfer is still ambiguous. Herein, TiO 2 /Au/5,10,15,20‐tetrakis(4‐sulfonatophenyl) porphyrin‐Zn (TiO 2 /Au/ZnTPPS 4 ) and TiO 2 /Au/5,10,15,20‐tetrakis(4‐sulfonatophenyl) porphyrin (TiO 2 /Au/TPPS 4 ) nanocomposites are constructed by a simple hydrothermal synthesis method to study the charge separation and transfer behavior of ZnTPPS 4 and TPPS 4 . The as‐designed TiO 2 /Au/ZnTPPS 4 exhibits remarkable performance (3.2 times) in PEC activity in comparison with TiO 2 /Au/TPPS 4 . Simultaneously, the scanning photoelectrochemical microscope (SPECM) is used to directly reveal charge transfer kinetics information by the in situ scanning probe technique. Specifically, TiO 2 /Au/ZnTPPS 4 exhibits the highest charge transfer kinetics rate constant (12.57 × 10 −2 cm s −1 ), corresponding to at least 3.4 times increase as compared with pure TiO 2 (3.71 × 10 −2 cm s −1 ). This work highlights that metalloporphyrin accelerates charge transfer in TiO 2 /Au/ZnTPPS 4 nanocomposites by changing charge distribution. These findings provide a new insight into enhancing PEC activity by a high‐efficiency charge separation means with metalloporphyrins.

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Cite This Study

Wang et al. (2025) studied this question.

synapsesocial.com/papers/68d6c68eb1249cec298b2ee4https://doi.org/10.1002/smll.202506963
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