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Di‐Chang Zhong

Tianjin University of Technology · CN
Area of research
Materials Chemistry · Inorganic Chemistry
Research interest
Research interests include Metal-Organic Frameworks: Synthesis and Applications, X-ray Diffraction in Crystallography, Advanced Photocatalysis Techniques, and Crystallization and Solubility Studies.
h-index
47
citations
7,625
works
245
NIH funding
primary concept
email

Recent publications

Large-Area Conductive MOF Ultrathin Film Controllably Integrating Dinuclear-Metal Sites and Photosensitizers to Boost Photocatalytic CO<sub>2</sub> Reduction with H<sub>2</sub>O as an Electron Donor
Journal of the American Chemical Society 2024cited by 80position: middledoi
Heterogenization of a Dinuclear Cobalt Molecular Catalyst in Porous Polymers via Covalent Strategy for CO <sub>2</sub> Photoreduction with Record CO Production Efficiency
CCS Chemistry 2024cited by 47position: middledoi
Photothermal Effect of Cu NCs on CdS Homojunction Boosting Hydrogen Evolution in Alkaline Seawater
Advanced Functional Materials 2024cited by 40position: middledoi
Manipulating metal oxidation state over ultrastable metal-organic frameworks for boosting photocatalysis
Applied Catalysis B: Environmental 2021cited by 91position: middledoi
Tailoring Crystal Facets of Metal–Organic Layers to Enhance Photocatalytic Activity for CO<sub>2</sub> Reduction
Angewandte Chemie International Edition 2020cited by 278position: middledoi
A Molecular Cobalt Hydrogen Evolution Catalyst Showing High Activity and Outstanding Tolerance to CO and O<sub>2</sub>
Angewandte Chemie International Edition 2019cited by 75position: middledoi
Anchoring Co<sup>II</sup> Ions into a Thiol‐Laced Metal–Organic Framework for Efficient Visible‐Light‐Driven Conversion of CO<sub>2</sub> into CO
ChemSusChem 2019cited by 68position: middledoi
Hydrogen-bonded organic frameworks: design, structures and potential applications
CrystEngComm 2018cited by 261position: lastdoi
Dinuclear Metal Synergistic Catalysis Boosts Photochemical CO<sub>2</sub>‐to‐CO Conversion
Angewandte Chemie International Edition 2018cited by 245position: middledoi
Template-directed synthesis of sulphur doped NiCoFe layered double hydroxide porous nanosheets with enhanced electrocatalytic activity for the oxygen evolution reaction
Journal of Materials Chemistry A 2018cited by 225position: middledoi
Artificial photosynthesis: Catalytic water oxidation and CO2 reduction by dinuclear non-noble-metal molecular catalysts
Coordination Chemistry Reviews 2018cited by 115position: middledoi
Electrocatalytic and Photocatalytic Reduction of CO<sub>2</sub> to CO by Cobalt(II) Tripodal Complexes: Low Overpotentials, High Efficiency and Selectivity
ChemSusChem 2018cited by 104position: middledoi
An <i>in situ</i> generated amorphous CoFePi and crystalline Ni(PO<sub>3</sub>)<sub>2</sub> heterojunction as an efficient electrocatalyst for oxygen evolution
Journal of Materials Chemistry A 2018cited by 82position: middledoi
Nickel complexes as molecular catalysts for water splitting and CO2 reduction
Coordination Chemistry Reviews 2017cited by 227position: middledoi
A Highly Selective and Robust Co(II)-Based Homogeneous Catalyst for Reduction of CO<sub>2</sub> to CO in CH<sub>3</sub>CN/H<sub>2</sub>O Solution Driven by Visible Light
Inorganic Chemistry 2017cited by 56position: middledoi
A Dinuclear Cobalt Cryptate as a Homogeneous Photocatalyst for Highly Selective and Efficient Visible‐Light Driven CO<sub>2</sub> Reduction to CO in CH<sub>3</sub>CN/H<sub>2</sub>O Solution
Angewandte Chemie International Edition 2016cited by 328position: middledoi
Interpenetrating metal–organic frameworks
CrystEngComm 2016cited by 113position: middledoi
A Dinuclear Cobalt Cryptate as a Homogeneous Photocatalyst for Highly Selective and Efficient Visible‐Light Driven CO<sub>2</sub> Reduction to CO in CH<sub>3</sub>CN/H<sub>2</sub>O Solution
Angewandte Chemie 2016cited by 81position: middledoi
A rare (3,4,5)-connected metal–organic framework featuring an unprecedented 1D + 2D → 3D self-interpenetrated array and an O-atom lined pore surface: structure and controlled drug release
Chemical Communications 2014cited by 33position: firstdoi
Lanthanide Coordination Polymers Constructed from Imidazole-4,5-Dicarboxylate and Sulfate: Syntheses, Structural Diversity, and Photoluminescent Properties
Crystal Growth & Design 2012cited by 81position: middledoi
Counter-cation modulation of hydrogen and methane storage in a sodalite-type porous metal–organic framework
Chemical Communications 2012cited by 64position: middledoi
Two Cadmium-Cluster-Based Metal–Organic Frameworks with Mixed Ligands of 1,2,3-Benzenetriazole (HBTA) and 1,4-Benzenedicarboxylic acid (H<sub>2</sub>BDC)
Crystal Growth & Design 2012cited by 47position: firstdoi

Grants

No grants ingested yet.

Frequent collaborators

Tong‐Bu Lu · Tianjin University of Technology17 papers (2012–2024)Jia‐Wei Wang · Shanghai Institute of Materia Medica11 papers (2016–2020)Hai‐Hua Huang · Chinese University of Hong Kong, Shenzhen6 papers (2016–2021)Ting Ouyang · South China Agricultural University6 papers (2016–2019)Wenju Liu · Yunnan University4 papers (2017–2019)Long Jiang · Sun Yat-sen University3 papers (2012–2024)Yun‐Nan Gong · Tianjin University of Technology3 papers (2012–2024)Zhi‐Mei Luo · Sun Yat-sen University2 papers (2018–2019)Jia‐Kai Sun · University of California, Santa Barbara2 papers (2018–2019)Liming Cao · South China Agricultural University2 papers (2018–2018)Dongcheng Liu · Hebei Agricultural University2 papers (2018–2019)Xuzhong Luo · Nanchang University2 papers (2012–2014) · 2 papers (2012–2014)Xingqiang Lü · Nanjing University of Aeronautics and Astronautics2 papers (2012–2024)Jihong Zhang · Shihezi University2 papers (2018–2021)Yuan Tang · University of Vermont1 papers (2024–2024) · 1 papers (2020–2020)Cheng Hou · Tongji University1 papers (2017–2017)Jinlian Zhong · Nanchang University1 papers (2012–2012)Lujiang Li · Tianjin University1 papers (2024–2024)