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acetyl acetonate
Known as:
2,4-Pentanedione, ion(1-)
, acetylacetonate
National Institutes of Health
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Related topics
Related topics
8 relations
Broader (3)
Anti-Infective Agents
Hydroxybutyrates
Pentanones
Narrower (4)
Nd(III)-acetylacetonate
cupric acetylacetonate
manganese acetylacetonate
vanadyl acetylacetonate
acetylacetone
Papers overview
Semantic Scholar uses AI to extract papers important to this topic.
2014
2014
Sensitivity of the valence structure in diruthenium complexes as a function of terminal and bridging ligands.
A. Mandal
,
Hemlata Agarwala
,
+6 authors
G. K. Lahiri
Inorganic Chemistry
2014
Corpus ID: 782703
The compounds [(acac)2Ru(III)(μ-H2L(2-))Ru(III)(acac)2] (rac, 1, and meso, 1') and [(bpy)2Ru(II)(μ-H2L(•-))Ru(II)(bpy)2](ClO4)3…
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2008
2008
Homolytic bond strengths and formation rates in half-sandwich chromium alkyl complexes: relevance for controlled radical polymerization.
Y. Champouret
,
U. Baisch
,
R. Poli
,
Liming Tang
,
J. Conway
,
Kevin M Smith
Angewandte Chemie
2008
Corpus ID: 205349873
In the past decade, controlled/living radical polymerization (CRP) processes have seen a considerable surge of interest owing, in…
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Highly Cited
2006
Highly Cited
2006
Triplet energy back transfer in conjugated polymers with pendant phosphorescent iridium complexes.
N. Evans
,
Lekshmi Sudha Devi
,
+6 authors
A. Holmes
Journal of the American Chemical Society
2006
Corpus ID: 22284410
The nature of Dexter triplet energy transfer between bonded systems of a red phosphorescent iridium complex 13 and a conjugated…
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Highly Cited
2006
Highly Cited
2006
New mixed-valence MnII2MnIII2 clusters exhibiting an unprecedented MnII/III oxidation state distribution in their magnetically coupled cores.
Lisa M. Wittick
,
L. Jones
,
+4 authors
K. Murray
Dalton Transactions
2006
Corpus ID: 21247973
The synthesis and magnetic properties of the high-spin tetranuclear cluster [Mn(III)(2)Mn(II)(2)(O(2)CC(CH(3))(3))(2)(teaH(2))(2…
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Highly Cited
2006
Highly Cited
2006
Controlling the nature of mixed (phthalocyaninato)(porphyrinato) rare-earth(III) double-decker complexes: the effects of nonperipheral alkoxy substitution of the phthalocyanine ligand.
Rongming Wang
,
Renjie Li
,
+8 authors
Jianzhuang Jiang
Chemistry
2006
Corpus ID: 8430143
The half-sandwich rare-earth complexes [M(III)(acac)(TClPP)] (M = Sm, Eu, Y; TClPP = meso-tetrakis(4-chlorophenyl)porphyrinate…
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2006
2006
Dinuclear Co(III)/Co(III) and Co(II)/Co(III) mixed-valent complexes: synthetic control of the cobalt oxidation level.
M. Fondo
,
Noelia Ocampo
,
+5 authors
M. R. Bermejo
Dalton Transactions
2006
Corpus ID: 35267479
The reactivity of cobalt(II) salts towards H(3)L (2-(2-hydroxyphenyl)-1,3-bis[4-(2-hydroxyphenyl)-3-azabut-3-enyl]-1,3…
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Highly Cited
2005
Highly Cited
2005
Electroactive ligands: the first metal complexes of tetrathiafulvenyl-acetylacetonate.
J. Massue
,
N. Bellec
,
+4 authors
D. Lorcy
Inorganic Chemistry
2005
Corpus ID: 24364005
The reaction of tris(alkylthio)tetrathiafulvalene thiolates with 3-chloro-2,4-pentanedione affords tetrathiafulvalene (TTF…
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Highly Cited
2005
Highly Cited
2005
Self-assembly of heteroleptic [Cu(dipyrrinato)(hfacac)] complexes directed by fluorine-fluorine interactions.
S. R. Halper
,
Seth M. Cohen
Inorganic Chemistry
2005
Corpus ID: 1605908
Heteroleptic copper(II) complexes were synthesized from three different meso-substituted pyridyl- and quinoline-dipyrrinato…
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Highly Cited
2005
Highly Cited
2005
Studies of "pinwheel-like" bis[1,8,15,22-tetrakis(3-pentyloxy)phthalocyaninato] rare earth(III) double-decker complexes.
Rongming Wang
,
Renjie Li
,
+9 authors
Jianzhuang Jiang
Chemistry
2005
Corpus ID: 29776418
Homoleptic bis(phthalocyaninato) rare-earth double-deckers complexes [M(III)[Pc(alpha-OC5H11)4]2] (M = Eu, Y, Lu; Pc(alpha-OC5H11…
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Highly Cited
2001
Highly Cited
2001
Nanoparticle Formation via Copper (II) Acetylacetonate Vapor Decomposition in the Presence of Hydrogen and Water
A. Nasibulin
,
E. Kauppinen
,
D. Brown
,
J. Jokiniemi
2001
Corpus ID: 53329552
Copper (II) acetylacetonate (Cu(acac)2) vapor decomposition and subsequent copper and copper (I) oxide particle formation were…
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