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◆ ACS Catalysis2026-03-11· Selectivity

Superhydrophobic Q10 Diluent Enabling Dehydration-Enhanced CO <sub>2</sub> Hydrogenation and Active Phase Regulation

Jialei Yang, K D Wang, Hong Ding, Hui Li, Yi Liu, Jie Liang, Wenlong Song, Prasert Reubroycharoen, Bin Duan, Jianli Zhang, Jian Sun, Xinhua Gao

原始摘要(英文原文)· Original abstract
In CO 2 hydrogenation over Fe-based catalysts, the reverse water–gas shift and Fischer–Tropsch synthesis represent the dominant reactions, generating hydrocarbons with water as a significant byproduct. The accumulation of water severely impairs catalytic performance by inhibiting forward reactions and oxidizing the active phase, thus reducing catalyst selectivity and stability. To selectively remove water from the reaction system, we synthesized a series of Q10 (SiO 2 with 10 nm pore size) with a tunable water contact angle (15.8° to 154.3°) through a silanization method, and physically mixed with catalysts and act as functional diluents. The superhydrophobic SiO 2 increased CO 2 conversion from 25.2% to 38.7%, and selectivity of long-chain linear α-olefins (LAOs) from 21.4% to 38.9%, and the olefins selectivity in C 2+ products reached as high as 73.8%. Furthermore, this hydrophobic system retained stable performance under multiple steam treatment conditions, which was attributed to its efficient water removal capability that drives the reaction forward and facilitates the formation of the active phase.
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Superhydrophobic Q10 Diluent Enabling Dehydration-Enhanced CO <sub>2</sub> Hydrogenation and Active Phase Regulation — 科研速览 Science Skim