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Profil bibliographique

Daijie Deng

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

47Publications signalées
1838Citations signalées
2Affiliations récentes

Les institutions déclarées

Les domaines associés

Electrocatalysts for Energy ConversionAdvanced battery technologies researchFuel Cells and Related MaterialsAdvanced Photocatalysis TechniquesSupercapacitor Materials and Fabrication

Les publications récentes

Accès ouvert 2026 article OpenAlex

Ligand Thermal Reactivity Optimizing the Synergism of Mass Transfer and Catalysis Kinetics of Dual‐Phase Iron Components for High‐Efficiency Zinc‐Air Batteries

Yujie Sun, Daijie Deng, Rong Hu, Sha Li et autres

ABSTRACT The intrinsic pyrolysis behavior of organic ligands determines the performance of Fe‒N‒C oxygen reduction reaction (ORR) electrocatalysts, yet its coupled effects on pore evolution and active species composition remain largely overlooked. Herein, imidazole‐, triazole‐, and tetrazole‐based ligands with distinct thermal reactivity …

cn (code pays fourni par la source)

0 citations Advanced Functional Materials
2026 article OpenAlex

Microenvironment modulation of W single‐atom catalyst by ionic liquid for enhanced oxygen reduction in zinc‐air battery

Suqin Wu, Jingwei Fang, Daijie Deng, Wei Zhang et autres

Abstract Tungsten single‐atom (WNC) catalysts deliver promising oxygen reduction reaction (ORR) activity for zinc‐air batteries (ZABs). However, poor surface microenvironment suppresses ORR activity, thus deteriorating the performance of the assembled ZABs. Herein, the surface of tungsten single‐atom catalyst was modified with fluorine‐containing …

cn (code pays fourni par la source)

0 citations AIChE Journal
2025 article OpenAlex

Coupling of Mn–N x Sites with Abundant Defective Carbon for Enhanced Oxygen Electroreduction in Quasi-Solid-State Zinc–Air Batteries

Daijie Deng, Junchao Qian, Suqin Wu, Wei Zhang et autres

The integration of Mn–N x sites with defective carbon can significantly enhance the oxygen reduction reaction (ORR) activity of carbon-based catalysts. Herein, wheat straw is molecularly assembled with Mn source and nitrogen-rich compounds to generate a macromolecular precursor through hydrogen bonding and …

cn, gb (code pays fourni par la source)

3 citations ACS Sustainable Chemistry & Engineering

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