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1-hydroxy-2(1H)-pyridinone
Known as:
1,2-HOPO
National Institutes of Health
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Related topics
Related topics
1 relation
Broader (1)
Pyridones
Papers overview
Semantic Scholar uses AI to extract papers important to this topic.
2019
2019
Breaking the 1,2-HOPO barrier with a cyclen backbone for more efficient sensitization of Eu(iii) luminescence and unprecedented two-photon excitation properties† †Electronic supplementary information…
Lixiong Dai
,
Wai-Sum Lo
,
+5 authors
Ga‐Lai Law
Chemical Science
2019
Corpus ID: 92992231
Breaking the barrier of 1,2 HOPO complexes with extremely emissive Eu-Cy-HOPO (overall quantum yield –30.2%) that displays two…
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2016
2016
Effects of Ligand Geometry on the Photophysical Properties of Photoluminescent Eu(III) and Sm(III) 1-Hydroxypyridin-2-one Complexes in Aqueous Solution.
L. Daumann
,
David S Tatum
,
+5 authors
K. Raymond
Inorganic Chemistry
2016
Corpus ID: 30409516
A series of 10 tetradentate 1-hydroxy-pyridin-2-one (1,2-HOPO) ligands and corresponding eight-coordinated photoluminescent Eu…
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2014
2014
X-ray spectroscopy studies of nonradiative energy transfer processes in luminescent lanthanide materials
J. Pacold
2014
Corpus ID: 100009758
X-ray spectroscopy studies of nonradiative energy transfer processes in luminescent lanthanide materials
2009
2009
Titanium(IV) complexes with N,N'-dialkyl-2,3-dihydroxyterephthalamides and 1-hydroxy-2(1H)-pyridinone as siderophore and tunichrome analogues.
R. Uppal
,
Hayley P Israel
,
C. Incarvito
,
A. Valentine
Inorganic Chemistry
2009
Corpus ID: 25381469
The aqueous chemistry of Ti(IV) with biological ligands siderophores and tunichromes is modeled by using N,N'-dialkyl-2,3…
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2009
2009
elective removal of lanthanides from natural waters , acidic streams nd dialysate
assana Yantaseea
,
G. Fryxell
,
+6 authors
Kenneth N. Raymondb
2009
Corpus ID: 52998400
The increased demand for the lanthanides in commercial products result in increased production of lanthanide containing ores…
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2008
2008
3,2-HOPO Complexes of Near Infra-Red (NIR) Emitting Lanthanides: Sensitization of Ho and Pr in Aqueous Solution
E. Moore
,
Géza Szigethy
,
Jide Xu
,
Lars-Olof Pålsson
,
A. Beeby
,
K. Raymond
2008
Corpus ID: 28753750
There is a growing interest in Near Infra-Red (NIR) emission originating from organic complexes of Ln cations. As a major impetus…
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2007
2007
Optimized relaxivity and stability of [Gd(H(2,2)-1,2-HOPO)(H2O)]- for use as an MRI contrast agent.
Christoph J. Jocher
,
M. Botta
,
+4 authors
K. Raymond
Inorganic Chemistry
2007
Corpus ID: 20348252
Relaxometry and solution thermodynamic measurements show that Gd(H(2,2)-1,2-HOPO) is a good candidate as a contrast agent for…
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2004
2004
Hydroxypyridinone Extraction Agents for Pu(IV)
A. Veeck
,
D. White
,
+5 authors
K. Raymond
2004
Corpus ID: 86864912
Abstract Twelve different extraction agents, based on the hydroxypyridinone (HOPO) chelating moieties 3,2‐HOPO, 3,4‐HOPO, and 1,2…
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Review
2002
Review
2002
Multidentate hydroxypyridinonate ligands for Pu ( IV ) chelation in vivo : comparative e Ý cacy and toxicity in mouse of ligands containing
B. Kullgren
,
XU J.
,
K. Raymond
2002
Corpus ID: 17272312
ination (reviewed in Volf 1978) . Although octaPurpose : To identify the most e Ú ective multidentate 1,2-HOPO dentate, DTPA…
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1993
1993
Specific sequestering agents for the actinides. 21. Synthesis and initial biological testing of octadentate mixed catecholate-hydroxypyridinonate ligands.
L. C. Uhlir
,
P. Durbin
,
N. Jeung
,
Kenneth N. Raymond
Journal of Medicinal Chemistry
1993
Corpus ID: 7905887
The linear octadentate ligand 3,4,3-LIHOPO, which contains four 1-hydroxy-2(1H)-pyridinone (1,2-HOPO) groups, is the most…
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