Skip to main navigation
Skip to search
Skip to main content
Hong Kong Baptist University Home
Help & FAQ
Link opens in a new tab
Search content at Hong Kong Baptist University
Home
Scholars
Departments / Units
Research Output
Projects / Grants
Prizes / Awards
Activities
Press/Media
Student theses
Datasets
View Scopus Profile
David PARKER, Prof
Chair Professor in Chemistry
,
Department of Chemistry
https://orcid.org/0000-0001-5281-5146
Email
davidparker
hkbu.edu
hk
1979 …
2026
Research activity per year
Overview
Fingerprint
Network
Research Output
(420)
Activities
(1)
Similar Scholars
(2)
Supervised Work
(1)
Fingerprint
Dive into the research topics where David PARKER is active. Topic labels come from the works of this scholar. Together they form a unique fingerprint.
Sort by:
Weight
Alphabetically
Chemistry
Lanthanoid Atom
100%
Europium
86%
NMR Spectroscopy
43%
Terbium
30%
Luminiscence Type
28%
Gadolinium
25%
Relaxation
23%
Complex Formation
23%
Polarized Luminescence
22%
1H NMR Spectroscopy
22%
Cyclodextrin
21%
Carboxamide
21%
Macrocyclic Ligand
20%
Chromophore
20%
Excited State
20%
Crystal Structure
18%
Aqueous Solution
18%
formation
17%
Magnetic Resonance Imaging
16%
Macrocycle
15%
Donor
15%
Metal Ion
14%
Carboxylic Acid
14%
Enantiomer
13%
1,4,7,10-tetraazacyclododecane
13%
Chemical Shift
13%
Phosphinate
12%
Kd
12%
Coordination Compound
11%
Albumin
10%
Ytterbium
10%
Gallium
10%
Enantiopurity
9%
electrode
9%
Rhodium
9%
Tris
9%
Yttrium
8%
Lactate
8%
EPR Spectroscopy
8%
Ionophore
8%
protonation
8%
Lithium
7%
solution structure
7%
Contrast Medium
7%
Magnetic Resonance
7%
Spectroscopy
7%
Emission Spectra
7%
DOTA
6%
Magnetic Permeability
6%
Anisotropy
6%
Keyphrases
Lanthanide Complexes
68%
Europium Complex
55%
Europium
35%
Eu3+
31%
Lanthanides
27%
Chromophore
24%
Circularly Polarized Luminescence
23%
Emissive
20%
Cyclodextrin
17%
Terbium Complex
17%
Luminescence
17%
Aqueous Solution
16%
Macrocyclic Ligands
16%
Gadolinium Complex
16%
Lanthanide Ions
15%
Terbium
15%
Macrocycles
14%
Lipophilic
13%
Excited States
13%
Relaxivity
13%
Triazacyclononane
13%
1H nuclear Magnetic Resonance (1H NMR)
12%
Water Exchange
12%
Aqueous Media
12%
1,4,7,10-tetraazacyclododecane
12%
Anions
12%
Chemical Shift
11%
Citrate
11%
Amides
11%
Ca2+
10%
Complexation Behavior
10%
Water Molecule
10%
Ligand-based
10%
Europium Luminescence
10%
Kinetically Stable
10%
Base Metals
9%
Enantiopure
9%
Magnetic Resonance Imaging
9%
Tb(III) Complex
9%
Anion Binding
9%
PH Dependence
9%
Living Cells
9%
Phosphinate
9%
1,4,7-triazacyclononane
9%
Ratiometric
9%
Azaxanthone
9%
Lactate
9%
TETRA
9%
Imaging Probe
9%
Tris
8%