Donor-engineered D-A nanophotocatalyst with dual surfactants-directed assembly for efficient photocatalytic hydrogen evolution

Organic semiconductors hold promise for photocatalytic hydrogen production, yet their performance is often limited by excitonic effects that hinder charge separation and transport. To overcome these challenges, we present a synergistic strategy combining donor-acceptor (D-A) molecular engineering with dual-surfactant-directed nanoassembly. A series of structurally analogous D-A molecules based on 4-([1,1′-biphenyl]-4-yl)-2,6-bis(4-cyanophenyl) pyridine-3,5-dicarbonitrile (CNP) were synthesized with systematic variation of donor-unit substituents. Among them, the methoxy-containing CNP, namely CNP501, exhibited a 26-fold higher hydrogen evolution rate than pristine CNP. Leveraging this, a dual-surfactant-induced self-assembly approach yielded the CNP501/DDBAB/SDBS nanophotocatalyst, which achieved an additional 12-fold enhancement in photoactivity, delivering a hydrogen production rate of 1093 mmol g –1 h –1 and an apparent quantum yield of 77.2% at 365 nm. The exceptional performance arises from two synergistic effects: (1) donor engineering, which modulates intrinsic molecular electric fields to promote exciton dissociation, and (2) surfactant-mediated morphological control, which optimizes hydrophilicity, minimizes interfacial charge-transfer resistance, and suppresses carrier recombination. Notably, dual-surfactant regulation uniquely enables multiple light scattering with tunable efficiency, a feature absent in single-surfactant systems.

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Journal
CHINESE JOURNAL OF CATALYSIS (CHINESE VERSION)
Published
2026-09-24
DOI
https://doi.org/10.1016/s1872-2067(26)65169-8
Primary Topic
Advanced Photocatalysis Techniques
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article
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article

Donor-engineered D-A nanophotocatalyst with dual surfactants-directed assembly for efficient photocatalytic hydrogen evolution

Yuanzhen Ke, Pilang Zheng, Jiahui Xie, Luyao Ge et al.
CHINESE JOURNAL OF CATALYSIS (CHINESE VERSION)
Advanced Photocatalysis Techniques
article

Donor-engineered D-A nanophotocatalyst with dual surfactants-directed assembly for efficient photocatalytic hydrogen evolution

Yuanzhen Ke, Pilang Zheng, Jiahui Xie, Luyao Ge, Xiaobo Li, Qihua Yang
article en

Abstract

Organic semiconductors hold promise for photocatalytic hydrogen production, yet their performance is often limited by excitonic effects that hinder charge separation and transport. To overcome these challenges, we present a synergistic strategy combining donor-acceptor (D-A) molecular engineering with dual-surfactant-directed nanoassembly. A series of structurally analogous D-A molecules based on 4-([1,1′-biphenyl]-4-yl)-2,6-bis(4-cyanophenyl) pyridine-3,5-dicarbonitrile (CNP) were synthesized with systematic variation of donor-unit substituents. Among them, the methoxy-containing CNP, namely CNP501, exhibited a 26-fold higher hydrogen evolution rate than pristine CNP. Leveraging this, a dual-surfactant-induced self-assembly approach yielded the CNP501/DDBAB/SDBS nanophotocatalyst, which achieved an additional 12-fold enhancement in photoactivity, delivering a hydrogen production rate of 1093 mmol g –1 h –1 and an apparent quantum yield of 77.2% at 365 nm. The exceptional performance arises from two synergistic effects: (1) donor engineering, which modulates intrinsic molecular electric fields to promote exciton dissociation, and (2) surfactant-mediated morphological control, which optimizes hydrophilicity, minimizes interfacial charge-transfer resistance, and suppresses carrier recombination. Notably, dual-surfactant regulation uniquely enables multiple light scattering with tunable efficiency, a feature absent in single-surfactant systems.

CHINESE JOURNAL OF CATALYSIS (CHINESE VERSION)Vol. 89
University of Science and Technology of China (CN), Zhejiang Normal University (CN), Anhui University (CN), Ministry of Education (PT)
Openalex Percentile: Top 30%
Advanced Photocatalysis Techniques
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Donor-engineered D-A nanophotocatalyst with dual surfactants-directed assembly for efficient photocatalytic hydrogen evolution — Yuanzhen Ke, Pilang Zheng, et al. · CHINESE JOURNAL OF CATALYSIS (CHINESE VERSION) (2026) | TGRS Research Map | TGRS