Jingran Xiao

ORCID: 0000-0003-3834-9905
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About
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Research Areas
  • Advanced Photocatalysis Techniques
  • Iron oxide chemistry and applications
  • Copper-based nanomaterials and applications
  • Catalytic Processes in Materials Science
  • Electrocatalysts for Energy Conversion
  • Catalysis and Oxidation Reactions
  • Metal-Organic Frameworks: Synthesis and Applications
  • Gas Sensing Nanomaterials and Sensors
  • Arsenic contamination and mitigation
  • TiO2 Photocatalysis and Solar Cells
  • Catalysts for Methane Reforming
  • Mine drainage and remediation techniques
  • Catalysis for Biomass Conversion
  • Covalent Organic Framework Applications
  • Nanomaterials for catalytic reactions
  • ZnO doping and properties
  • Ga2O3 and related materials
  • Membrane Separation Technologies
  • Microbial Fuel Cells and Bioremediation
  • Advanced oxidation water treatment
  • Nanoplatforms for cancer theranostics
  • Ionic liquids properties and applications
  • Phytochemical compounds biological activities
  • Clay minerals and soil interactions
  • 2D Materials and Applications

Shandong University of Science and Technology
2022-2025

Huaqiao University
2019-2022

Xiamen University of Technology
2021

State Key Laboratory of Chemical Engineering
2015-2018

Tianjin University
2013-2018

Collaborative Innovation Center of Chemical Science and Engineering Tianjin
2015-2018

Due to the flexible structures and vulnerable coordination bonds, hydrolytic stability of metal-organic frameworks (MOFs) is a critical issue for practical use. Besides collapse MOF by water intrusion, herein, we found that phase transformation among isomers (viz., t-Ln-BTC, m-Ln-BTC, c-Ln-BTC) can be triggered water/organic solvent soaking. In isostructural Ln-BTC, different Ln cations (Ce3+, Y3+, or their combination) affected robustness altering bonding strength Ln-O. addition, Ln-BTC...

10.1016/j.matdes.2020.108881 article EN cc-by-nc-nd Materials & Design 2020-06-17

Abstract Electronic structure regulation is a prevailing approach to modifying the electrocatalysts in oxygen evolution reaction (OER), yet its impact on co‐catalysts modified photoanodes remains uncertain. Herein, B‐modified NiFe‐LDH (NiFeB‐hydx) co‐catalyst situ immobilized onto Ti‐Fe 2 O 3 and emphasizes effect of lower‐valence Ni (Ni 2‐δ ) photoelectrochemical (PEC) process. A flexible adjustment oxidation state from +2 0 by manipulating content corresponding B quantity achieved....

10.1002/adfm.202406999 article EN Advanced Functional Materials 2024-10-14

Heterogenization of biomolecules by immobilizing on a metal oxide support could greatly enhance their catalytic activity and stability, but interactions are generally weak. Herein, cobalt phthalocyanine (CoPc) molecules were firmly anchored Ce-based metal-organic framework (Ce-BTC) due to π-π stacking interaction between CoPc aromatic frameworks the BTC linker, which was followed calcination treatment convert Ce-BTC mesoporous CeO2 realize molecular-level dispersion surface CeO2. Various...

10.1021/acsami.1c23582 article EN ACS Applied Materials & Interfaces 2022-02-08

Abstract Fluorine (F) has emerged as a critical dopant for enhancing the performance of hematite (Fe 2 O 3 ) photoanodes in photoelectrochemical (PEC) water oxidation; however, its functional mechanisms remain to be fully elucidated. This study systematically demonstrates that F‐doping improves Fe ‐based through dual effects involving increasing charge carrier density electron structure modulation and activating lattice oxygen oxidation mechanism by optimizing intermediate adsorption. The...

10.1002/adfm.202505716 article EN Advanced Functional Materials 2025-05-27
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