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Dipole Polarization Modulation by Breaking Geometric Symmetry in Conjugated Porous Polymers for Efficient
Penghao Sun1, Niannong Peng1, Zaoming Wang2
1Key Laboratory of Theoretical Organic Chemistry and Functional Molecule of Ministry of Education & Hunan Provincial Key Laboratory of Advanced Materials for New Energy Storage and Conversion, Hunan University of Science and Technology, Xiangtan, 411201, P. R. China.
Abstract:
Organic semiconductor photocatalysts typically suffer from high exciton binding energies (Eb) due to their low dielectric constants, which limit further improvement in photocatalytic efficiency. However, current strategies that rely on polar groups or ion doping struggle to balance high dielectric gain and long-term stability due to dipole disorder and complex synthesis. Herein, dipole polarization modulation is reported by breaking geometric symmetry in conjugated porous polymers (CPPs) to enhance the dielectric constant and achieve a low Eb of 57.6 meV. The low Eb enhances the separation and transport efficiency of photogenerated charge carriers. As a demonstration, these CPPs are subjected to photocatalytic antibiotic degradation, achieving an ofloxacin removal efficiency of 99.1% under ambient conditions. The results provide new insights into the rational design of porous materials with low Eb for efficient photocatalysis.
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