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Profil bibliographique

Yaqiong Su

Informations fournies par OpenAlex. Research Africa ne déduit ni nationalité, ni poste, ni coordonnées personnelles.

3Publications signalées
11Citations signalées
2Affiliations récentes

Les institutions déclarées

Les domaines associés

Catalytic Processes in Materials ScienceGas Sensing Nanomaterials and SensorsAdvanced Photocatalysis TechniquesCatalysts for Methane ReformingAdvanced Chemical Sensor Technologies

Les publications récentes

2026 article OpenAlex

Overcoming the Sensitivity‐Selectivity Trade‐Off in Chemiresistive CO Sensors Through a Single‐Atom Pt‐Activated Lattice Oxygen Strategy

Pengfei Li, Leiyu Diao, Ou Wang, Longfei Li et autres

ABSTRACT The sensitivity‐selectivity trade‐off remains a fundamental challenge in chemiresistive carbon monoxide (CO) sensing, as enhanced surface redox activity often promotes non‐specific reactions with chemically similar interferents. Single‐atom noble‐metal sensitizers improve adsorption selectivity but suffer from ultra‐low loading, limiting sensing sensitivity. Here, …

cn, tw (code pays fourni par la source)

2 citations Advanced Functional Materials
Accès ouvert 2026 article OpenAlex

High‐Throughput Screening and Interpretable Machine Learning for Rational Design of Bimetallic Catalysts for Methane Activation

Mingzhang Pan, Tian Zhang, Jiawei Dong, Yubao Xie et autres

Methane's efficient catalytic removal is vital for sustainable development. Bimetallic catalysts, though promising for methane activation, pose a design challenge due to their complex compositional space. This work introduces an integrated framework that combines high-throughput density functional theory (DFT) and interpretable machine …

cn (code pays fourni par la source)

2 citations Advanced Science
2026 article OpenAlex

Electron‐Deficient Pd Enabled by Single‐Atom Alloy Drives Fast and CO‐Resistant Hydrogen Sensing

Ou Wang, Leiyu Diao, Pengfei Li, Youyou Feng et autres

ABSTRACT Pd‐based nanoparticles have been widely employed to enhance H 2 sensing performance due to their strong capability for H 2 adsorption and dissociation. However, strong Pd–H* interactions hinder the hydrogen spillover process, while pronounced CO adsorption results in poor selectivity. Herein, …

cn, tw (code pays fourni par la source)

7 citations Advanced Functional Materials

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