Fabrication of 2D–2D Heterojunction Catalyst with Covalent Organic Framework (COF) and MoS2 for Highly Efficient Photocatalytic Degradation of Organic Pollutants

…, D Yin, Y Ouyang, S Xiao, B Liu, L Deng… - Inorganic …, 2020 - ACS Publications
In this work, for the first time, we fabricated a novel covalent organic framework (COF)-based
2D–2D heterojunction composite MoS 2 /COF by a facile hydrothermal method. The results …

Sensitivity fluorescent switching sensor for Cr (VI) and ascorbic acid detection based on orange peels-derived carbon dots modified with EDTA

M Wang, R Shi, M Gao, K Zhang, L Deng, Q Fu… - Food chemistry, 2020 - Elsevier
Orange peels were applied as precursors to synthesize carbon dots (CDs) via a one-step
green hydrothermal method. The relationship between quantum yield and volatile oils in 14 …

The mechanism of acrylamide-induced neurotoxicity: current status and future perspectives

M Zhao, B Zhang, L Deng - Frontiers in nutrition, 2022 - frontiersin.org
Acrylamide (ACR), a potential neurotoxin, is produced by the Maillard reaction between
reducing sugars and free amino acids during food processing. Over the past decade, the …

A sensitive and selective fluorescent sensor for 2, 4, 6-trinitrophenol detection based on the composite material of magnetic covalent organic frameworks, molecularly …

M Wang, M Gao, L Deng, X Kang, K Zhang, Q Fu… - Microchemical …, 2020 - Elsevier
An efficient and rapid fluorescent sensor was developed for the sensitive and selective detection
of an environmental pollutant, 2,4,6-trinitrophenol (TNP). The fluorescent sensor based …

High-crystallinity covalent organic framework synthesized in deep eutectic solvent: potentially effective adsorbents alternative to macroporous resin for flavonoids

M Gao, D Wang, L Deng, S Liu, K Zhang… - Chemistry of …, 2021 - ACS Publications
A critical challenge in the enrichment of active ingredients in natural medicines is the design
of adsorbents with high selectivity and adsorption capacity. Covalent organic frameworks (…

Highly crystalline covalent organic frameworks act as a dual-functional fluorescent-sensing platform for myricetin and water, and adsorbents for myricetin

L Deng, X Kang, T Quan, L Yang, S Liu… - … Applied Materials & …, 2021 - ACS Publications
Selective detection of active ingredients in complex samples has always been a crucial
challenge because there are many disturbing compounds, especially structural analogues that …

Influence of atomic coordination on the activity of lattice oxygen and catalytic oxidation of toluene over regular Cu2O crystalline

L Deng, M Li, X Gao, X Yi, Y Zhao, Y Yang… - Journal of Hazardous …, 2025 - Elsevier
VOCs oxidation over transition metal catalyst is commonly understood via the Mars-van
Krevelen mechanism involving the crucial role of lattice oxygen (O L ) activity, however, how it is …

Glutathione-functionalized highly crystalline fluorescent covalent organic framework as a fluorescence-sensing and adsorption double platform for cationic dyes

S Liu, L Yang, T Quan, L Deng, D Wang… - Separation and …, 2022 - Elsevier
Considering the high toxicity of cationic dyes to the environment and humans, the development
of materials which possessed the function both of detection and adsorption of cationic …

Near-infrared chromophore functionalized soft actuator with ultrafast photoresponsive speed and superior mechanical property

L Liu, MH Liu, LL Deng, BP Lin… - Journal of the American …, 2017 - ACS Publications
In this Communication, we develop a two-step acyclic diene metathesis in situ
polymerization/cross-linking method to synthesize uniaxially aligned main-chain liquid crystal …

Enhancing ammonia decomposition for hydrogen production via optimization of interface effects and acidic site in supported cobalt-nickel alloy catalysts

Z Zhao, Z Liu, M Li, Y Yang, L Deng, Y Zhao… - Separation and …, 2025 - Elsevier
Cobalt-nickel-based catalysts are among the most promising non-noble metal catalysts for
hydrogen production via ammonia decomposition. However, attaining the optimal bonding …