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Wichtige Dokumente
120979
2,3,5-Triiodobenzoesäure
98%
Synonym(e):
TIBA
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Alle Fotos(3)
About This Item
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Assay
98%
mp (Schmelzpunkt)
220-222 °C (lit.)
Löslichkeit
methanol: soluble 5%
Funktionelle Gruppe
carboxylic acid
iodo
SMILES String
OC(=O)c1cc(I)cc(I)c1I
InChI
1S/C7H3I3O2/c8-3-1-4(7(11)12)6(10)5(9)2-3/h1-2H,(H,11,12)
InChIKey
ZMZGFLUUZLELNE-UHFFFAOYSA-N
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Anwendung
2,3,5-Triiodobenzoic acid has been used in the synthesis of aromatic iodine containing vinylic monomer, 2-methacryloyloxyethyl(2,3,5-triiodobenzoate) used in preparing radiopaque polymers.
Biochem./physiol. Wirkung
2,3,5-Triiodobenzoic acid (TIBA) inhibits the translocation of indole-3-acetic acid transport.TIBA inhibits the colonization of the main root cortex by Laccaria bicolor S238 N and the formation of the Hartig net.
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The auxin transport inhibitor 2, 3, 5-triiodobenzoic acid (TIBA) inhibits the stimulation of in vitro lateral root formation and the colonization of the tap-root cortex of Norway spruce (Picea abies) seedlings by the ectomycorrhizal fungus Laccaria bicolor.
The New phytologist, 140(4), 723-733 (1998)
The Effect of 2,4-Dichlorophenoxyacetic Acid and 2,3,5-Triiodobenzoic Acid on the Transport of Indoleacetic Acid.
Plant physiology, 31(2), 118-120 (1956-03-01)
Journal of biomedical materials research. Part B, Applied biomaterials, 83(2), 490-498 (2007-04-28)
Radiopaque magnetic gamma-Fe(2)O(3)/poly(2-methacryloyloxyethyl(2,3,5-triiodobenzoate)) core-shell nanoparticles of narrow size distribution were prepared by emulsion polymerization of the iodinated monomer 2-methacryloyloxyethyl(2,3,5-triiodobenzoate) in the presence of maghemite (gamma-Fe(2)O(3) nanoparticles coated with a dextran shell are commonly used as contrast agents for magnetic resonance
Journal of experimental botany, 63(12), 4539-4547 (2012-06-13)
Various transcriptional networks and plant hormones have been implicated in controlling different aspects of potato tuber formation. Due to its broad impact on many plant developmental processes, a role for auxin in tuber initiation has been suggested but never fully
Plant & cell physiology, 46(12), 2019-2028 (2005-10-19)
Polar auxin transport is essential for the formation of continuous vascular strands in the plant body. To understand its mechanism, polar auxin transport inhibitors have often been used. However, the role of auxin in vascular differentiation at the unicellular level
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