Duqingcuo Li

ORCID: 0000-0001-5746-6547
Publications
Citations
Views
---
Saved
---
About
Contact & Profiles
Research Areas
  • X-ray Diffraction in Crystallography
  • Crystallization and Solubility Studies
  • Metal-Organic Frameworks: Synthesis and Applications
  • Magnetism in coordination complexes
  • Covalent Organic Framework Applications
  • Metal complexes synthesis and properties
  • Advanced Photocatalysis Techniques
  • Organic and Molecular Conductors Research
  • Fuel Cells and Related Materials
  • Crystallography and molecular interactions
  • Conducting polymers and applications
  • Molecular Sensors and Ion Detection
  • Electrochemical Analysis and Applications
  • Multicomponent Synthesis of Heterocycles
  • Polyoxometalates: Synthesis and Applications
  • Copper-based nanomaterials and applications

Lanzhou Jiaotong University
2021-2025

1 exhibits the best photocatalytic decomposition efficiency towards antibiotic OXY. The plausible mechanism has been explained with help of density states calculations and Hirshfeld surface analysis.

10.1039/d2ce01121b article EN CrystEngComm 2022-01-01

A new 3,8-connected Cd( ii )-based metal–organic framework synthesized and used as an appropriate luminescent sensor for the antibiotic sulfasalazine.

10.1039/d2ce01079h article EN CrystEngComm 2022-01-01

In this paper, a new 0D Ag(I)‐based coordination polymer [Ag 2 (dib)(H L) ]( 1 ) is proposed as photocatalyst for the photocatalytic degradation of nitrofurantoin (NFT) under ultraviolet irradiation. The catalytic was analyzed by various methods such PXRD, SEM, FT‐IR, TGA, UV–vis, DRS, and electrochemical tests. experimental result shows that an n ‐type semiconductor, which can effectively catalyze photodegradation NFT Under optimal reaction conditions, rate 97.95% within 60 min when...

10.1002/aoc.7517 article EN Applied Organometallic Chemistry 2024-05-15

Two new complexes based on 4,4′‐[1,3‐phenylenebis(oxy)]diphthalic acid (H 4 L) ligands were synthesized, namely, [Cd 2 (L)(1,10‐phen) O)] n ( 1 ) and [Co ), in which 2D structures transform into 3D supramolecular by CH···π interaction. The proton conductivity of at low temperature is close (σ = 3.12 × 10 −8 S cm −1 σ 3.81 30°C), but these two show different conduction mechanisms. Vehicular mechanism caused the O···H/H···O contact , stronger than Grotthuss N···H/H···N . At same time, complex...

10.1002/aoc.6920 article EN Applied Organometallic Chemistry 2022-10-14

Two complexes 1 and 2 were synthesized via a hydrothermal method their electrochemical sensing behavior for l -tryptophan ( -Try) was investigated. In addition, the sensor successfully detected -Try during analysis of milk samples.

10.1039/d5dt00116a article EN Dalton Transactions 2025-01-01

Two new manganese( ii ) coordination polymers (CPs) 1 and 2 were synthesized. Their magnetic properties have been studied, showing complicated cryomagnetic behavior, suggesting the temperature-induced structural change.

10.1039/d3ce01060k article EN CrystEngComm 2023-01-01

In this study, we synthesized and characterized a new Co(II)‐based coordination polymer, denoted as {[Co(HL)(dpa)]·H 2 O} n ( 1 ), derived from the H 3 L ligand dpa co‐ligand. Single crystal X‐ray diffraction revealed that forms two‐dimensional (2D) layer three‐dimensional (3D) supramolecular structure via hydrogen bonding interactions. Presence of carboxylic acid groups in was confirmed by crystallography, prompting investigation into its proton transport properties. Additionally,...

10.1002/aoc.7498 article EN Applied Organometallic Chemistry 2024-04-28

Two new binuclear manganese(II) coordination polymers (CPs), namely [Mn(L)(phen)]n (1) and {[Mn(L)(H2O)]·0.5dib}n (2) have been obtained by self-assembly of Mn(SO4)2·6H2O V-shaped 2,4-[6-(4-carboxyphenyl)pyrazin-2-yl]benzoic acid (H2L) in the presence two auxiliary N-donor linkers, 1,10-Phenanthroline (phen) 1,4-bis(1H-imidazol-1-yl)benzene (dib). 1 displays a one-dimensional (1D) structure, which was further assembled to form 3D structure π-π stacking interactions between adjacent L2-...

10.2139/ssrn.4380181 article EN 2023-01-01
Coming Soon ...