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◆ ACS Applied Materials & Interfaces2026-02-19· Pickering emulsion

Harnessing Pickering Emulsion Interfaces to Modulate Singlet Oxygen Generation for Highly Selective Oxidation of Cyclohexene

Honglin Zhou, Wenxiu Yuan, Jie Dong, Xiang Shao, Jinyun Chen, Fei Chang, Xinyi Cheng, Haoran Bai, Yujie Cheng, Qincheng Ma, Ying Wang, Jun Tang, Qingping Ke, Jianli Wang

原始摘要(英文原文)· Original abstract
The selective oxidation of cyclohexene to high-value cyclohex–2–enone using singlet oxygen holds significant importance in chemical production. However, conventional methods for generating singlet oxygen are often constrained by harsh conditions, typically requiring high-energy input. This study develops a new methodology that leverages the Pickering emulsion droplet interfaces to facilitate the generation of singlet oxygen for the efficient oxidation of cyclohexene. First, an amphiphilic catalyst SiO 2 /CN x was synthesized by growing hydrophobic nitrogen-doped carbon on the surface of hydrophilic sheet-like silica through a combined surface-polymerization and carbonization process. Such amphiphilic catalyst can then self-assemble at the interfaces of the oil phase (cyclohexene in ethyl acetate) and water phase ( tert -butyl hydroperoxide aqueous solution), thereby stabilizing a water–in–oil Pickering emulsion. The graphitic nitrogen sites on the nitrogen-doped carbon promote the cleavage of tert -butyl hydroperoxide to form superoxide radicals, while the pyridinic nitrogen sites can adsorb and enrich the resulting radicals. In addition, the unique proton-rich microenvironment at the Pickering emulsion droplet interfaces promotes the disproportionation of adsorbed superoxide radicals, generating the desired singlet oxygen for the selective oxidation of cyclohexene. As a result, this Pickering emulsion system achieved a cyclohexene conversion of >99.0% with a 95.0% selectivity toward cyclohex–2–enone, significantly outperforming the results reported in prior studies. This strategy of harnessing the Pickering emulsion droplet interfaces to regulate the generation of highly reactive singlet oxygen opens up a promising route for the efficient synthesis of oxygenated fine chemicals.
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Harnessing Pickering Emulsion Interfaces to Modulate Singlet Oxygen Generation for Highly Selective Oxidation of Cyclohexene — 科研速览 Science Skim