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Qiang Deng

Nanchang University · CN
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Area of research
Biomedical Engineering · Electrical and Electronic Engineering
Research interest
Research focused on Adsorption and Acetylene, with related work in Microporous material, Nanocages, Selectivity. Notable publications include 'Fine pore engineering in a series of isoreticular metal-organic frameworks for efficient C2H2/CO2 separation', 'Ultra-high surface area and nitrogen-rich porous carbons prepared by a low-temperature activation method with superior gas selective adsorption and outstanding supercapacitance...', and 'Multifunctional LDH/Co9S8 heterostructure nanocages as high-performance lithium–sulfur battery cathodes with ultralong lifespan'.
h-index
citations
4,441
works
85
NIH funding
primary concept
email

Recent publications

Ultraselective C–O Hydrogenolysis of Biomass-Based Compounds under Ambient Pressure and at Low Temperature via Hydrogen Spillover over the Pd–SO<sub>4</sub><sup>2–</sup> Interface
ACS Catalysis 2025cited by 16position: lastdoi
Oxygen-doped carbon-supported palladium nanoparticles boost the tandem hydrogenation–acetalization–hydrogenolysis of phenols and diphenyl ethers to cyclohexyl ethers
Nature Communications 2025cited by 9position: lastdoi
Selective Hydrogenolysis of Biomass‐Derived Aromatic Alcohols over 2D‐Mo<sub>2</sub>CO<sub>x</sub> MXene by a Reversible Redox‐Relay Mechanism
Angewandte Chemie International Edition 2025cited by 9position: lastdoi
Palladium-Supported Surface-Oxidized Mo<sub>2</sub>C MXenes for the Tandem Hydrogenation–Hydrogenolysis of Furfurals via Hydrogen Spillover
ACS Catalysis 2025cited by 5position: lastdoi
Cobalt disulfide promotes the selective rearrangement–hydrodeoxygenation of furan alcohols to cyclopentenones
AIChE Journal 2025cited by 2position: lastdoi
Palladium Single Atom‐supported Covalent Organic Frameworks for Aqueous‐phase Hydrogenative Hydrogenolysis of Aromatic Aldehydes via Hydrogen Heterolysis
Angewandte Chemie International Edition 2024cited by 24position: lastdoi
Switching between Hydrogenative Hydrogenolysis and Rearrangement of Furfurals via Hydrogen Pressure-Driven Acid–Base Transformation over Br–Pt Pairs
ACS Catalysis 2024cited by 12position: lastdoi
Brønsted Acid-Triggered Fast Synthesis Pathway of Furfural to Ethyl Levulinate by PtZn Supported on ZSM-5 Nanosheets
ACS Catalysis 2024cited by 9position: middledoi
Enhancing Tandem Partial Hydrogenation–Hydrolysis of Diphenyl Ethers to Cyclohexanols with Surface-Oxidized MXene
ACS Catalysis 2024cited by 9position: lastdoi
Hydrogen-mediated acid-base transformation of Ni supported Mo<sub>5</sub>N<sub>6</sub> for hydrogenative rearrangement of furfural derivatives
Journal of Materials Chemistry A 2024cited by 6position: lastdoi
Palladium Single Atom‐supported Covalent Organic Frameworks for Aqueous‐phase Hydrogenative Hydrogenolysis of Aromatic Aldehydes via Hydrogen Heterolysis
Angewandte Chemie 2024cited by 4position: lastdoi
A one-pot synthesis of high-density biofuels through bifunctional mesoporous zeolite-encapsulated Pd catalysts
Applied Catalysis B: Environmental 2023cited by 36position: firstdoi
Intermetallic Palladium–Zinc Nanoparticles for the Ultraselective Hydrogenative Rearrangement of Furan Compounds
ACS Catalysis 2023cited by 33position: lastdoi
Catalytic Hydrodehydroxylation of Biomass-Related Chemicals via Water-Mediated Hydrogen Heterolysis over a Pd–S Interface
ACS Catalysis 2023cited by 28position: firstdoi
Facile synthesis of graphene quantum dots with red emission and high quantum yield
New Journal of Chemistry 2023cited by 27position: middledoi
Phosphate-supported palladium single atom and nanoparticle boost ambient temperature tandem hydrogenolysis–hydrogenation of furan alcohols/aldehydes
Applied Catalysis B: Environmental 2023cited by 27position: lastdoi
Review on Metal–Acid Tandem Catalysis for Hydrogenative Rearrangement of Furfurals to C5 Cyclic Compounds
Transactions of Tianjin University 2023cited by 10position: lastdoi
Efficient one‐pot tandem conversion of saccharides to 2,5‐dimethylfuran by adjusting the wettability of 2DMOF catalysts
AIChE Journal 2023cited by 4position: lastdoi
Fine pore engineering in a series of isoreticular metal-organic frameworks for efficient C2H2/CO2 separation
Nature Communications 2022cited by 313position: middledoi
2D MOF with Compact Catalytic Sites for the One‐pot Synthesis of 2,5‐Dimethylfuran from Saccharides via Tandem Catalysis
Angewandte Chemie International Edition 2022cited by 79position: firstdoi
H<sup>+</sup>−H<sup>−</sup> Pairs in Partially Oxidized MAX Phases for Bifunctional Catalytic Conversion of Furfurals into Linear Ketones
Angewandte Chemie International Edition 2022cited by 54position: firstdoi
Green synthesis of polydopamine functionalized magnetic mesoporous biochar for lipase immobilization and its application in interesterification for novel structured lipids production
Food Chemistry 2022cited by 51position: middledoi
Bifunctional Role of Hydrogen in Aqueous Hydrogenative Ring Rearrangement of Furfurals over Co@Co-NC
ACS Sustainable Chemistry & Engineering 2022cited by 35position: lastdoi
Nickel-cobalt Cyclo-tetraphosphate decorated hollow carbon nanocages as effective polysulfide promoters for stable Lithium-Sulfur batteries
Chemical Engineering Journal 2022cited by 23position: middledoi
Dense open metal sites in a microporous metal–organic framework for deep desulfurization with record‐high sulfur dioxide storage density
AIChE Journal 2022cited by 17position: middledoi
Iodine‐modified Pt nanoparticles accelerate the hydrogenative ring‐opening of furfurals to linear alcohols
AIChE Journal 2022cited by 17position: lastdoi
2D MOF with Compact Catalytic Sites for the One‐pot Synthesis of 2,5‐Dimethylfuran from Saccharides via Tandem Catalysis
Angewandte Chemie 2022cited by 15position: firstdoi
Promoted Hydrogenolysis of Furan Aldehydes to 2,5‐Dimethylfuran by Defect Engineering on Pd/NiCo<sub>2</sub>O<sub>4</sub>
ChemSusChem 2022cited by 12position: middledoi
A 2D metal–organic framework with dual‐acidic sites for the valorization of saccharides to 5‐hydroxymethylfurfural
AIChE Journal 2022cited by 9position: lastdoi
H<sup>+</sup>−H<sup>−</sup> Pairs in Partially Oxidized MAX Phases for Bifunctional Catalytic Conversion of Furfurals into Linear Ketones
Angewandte Chemie 2022cited by 8position: firstdoi

Grants

No grants ingested yet.

Frequent collaborators

Zheling Zeng · Nanchang University70 papers (2018–2024)Jun Wang · Nanchang University67 papers (2018–2025)Shuguang Deng · Nanchang University65 papers (2017–2025)Peixin Zhang · The Ohio State University22 papers (2018–2022)Ji‐Jun Zou · Ningbo University21 papers (2019–2025)Shixia Chen · Nanchang University21 papers (2018–2022)Yao Zhong · Nanchang University19 papers (2018–2025)Jianxin Cai · Nanchang University9 papers (2021–2025)Jun Wang · Shanghai University7 papers (2019–2024)Rui Gao · Zhejiang A & F University7 papers (2020–2021)Likang Zhang · Nanchang University6 papers (2019–2024)Shik Chi Edman Tsang · Hong Kong Polytechnic University6 papers (2021–2023)Xiang Li · Fudan University6 papers (2020–2025)Zeliang Wu · Nanchang University6 papers (2018–2021)Guan Sheng · Nanchang University6 papers (2022–2024)Mai Xu · Arizona State University6 papers (2018–2020)Zhikun Tong · Nanchang University6 papers (2020–2021)Fangqi Yang · National University of Singapore5 papers (2018–2021)Guiping Dai · Nanchang University5 papers (2018–2023)Lu Liu · Nanchang University5 papers (2018–2019)
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