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W304204

Sigma-Aldrich

Tannic acid

Synonyme(s) :

Gallotannin, Tannin

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About This Item

Formule empirique (notation de Hill):
C76H52O46
Numéro CAS:
Poids moléculaire :
1701.20
Numéro FEMA:
3042
Numéro Beilstein :
8186396
Numéro CE :
Conseil de l'Europe Nº :
74c
Numéro MDL:
Code UNSPSC :
12164502
ID de substance PubChem :
Nomenclature NACRES :
NA.21

Source biologique

synthetic

Niveau de qualité

Qualité

Halal
Kosher

Conformité réglementaire

FDA 21 CFR 117

Température d'inflammation spontanée

980 °F

Pf

218 °C (lit.)

Application(s)

flavors and fragrances

Documentation

see Safety & Documentation for available documents

Allergène alimentaire

no known allergens

Propriétés organoleptiques

medicinal; woody

Chaîne SMILES 

Oc1cc(cc(O)c1O)C(=O)Oc2cc(cc(O)c2O)C(=O)OC[C@H]3O[C@@H](OC(=O)c4cc(O)c(O)c(OC(=O)c5cc(O)c(O)c(O)c5)c4)[C@H](OC(=O)c6cc(O)c(O)c(OC(=O)c7cc(O)c(O)c(O)c7)c6)[C@@H](OC(=O)c8cc(O)c(O)c(OC(=O)c9cc(O)c(O)c(O)c9)c8)[C@@H]3OC(=O)c%10cc(O)c(O)c(OC(=O)c%11cc(O)c(O)c(O)c%11)c%10

InChI

1S/C76H52O46/c77-32-1-22(2-33(78)53(32)92)67(103)113-47-16-27(11-42(87)58(47)97)66(102)112-21-52-63(119-72(108)28-12-43(88)59(98)48(17-28)114-68(104)23-3-34(79)54(93)35(80)4-23)64(120-73(109)29-13-44(89)60(99)49(18-29)115-69(105)24-5-36(81)55(94)37(82)6-24)65(121-74(110)30-14-45(90)61(100)50(19-30)116-70(106)25-7-38(83)56(95)39(84)8-25)76(118-52)122-75(111)31-15-46(91)62(101)51(20-31)117-71(107)26-9-40(85)57(96)41(86)10-26/h1-20,52,63-65,76-101H,21H2/t52-,63-,64+,65-,76+/m1/s1

Clé InChI

LRBQNJMCXXYXIU-PPKXGCFTSA-N

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Application


  • Insight into the Morphology-Dependent Catalytic Performance of CuO/CeO(2) Produced by Tannic Acid for Efficient Hydrogenation of 4-Nitrophenol.: Examines the catalytic performance of CuO/CeO2 nanoparticles synthesized using tannic acid, focusing on their efficiency in hydrogenating 4-nitrophenol (Ye et al., 2021).

  • Proteomic analysis deciphers the multi-targeting antivirulence activity of tannic acid in modulating the expression of MrpA, FlhD, UreR, HpmA and Nrp system in Proteus mirabilis.: This research deciphers how tannic acid modulates the expression of several virulence factors in Proteus mirabilis through proteomic analysis (Durgadevi et al., 2020).

Clause de non-responsabilité

For R&D or non-EU Food use. Not for retail sale.

Code de la classe de stockage

11 - Combustible Solids

Classe de danger pour l'eau (WGK)

WGK 2

Point d'éclair (°F)

390.2 °F

Point d'éclair (°C)

199 °C

Équipement de protection individuelle

Eyeshields, Gloves, type N95 (US)


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Devendra H Dusane et al.
Canadian journal of microbiology, 61(7), 487-494 (2015-06-04)
Chromobacterium violaceum is an opportunistic pathogen that causes infections that are difficult to treat. The goal of this research was to evaluate the effect of selected tannins (tannic acid (TA) and gallic acid (GA)) on bacterial growth, motility, antibiotic (carbenicillin
Claudia Scattino et al.
Food chemistry, 163, 51-60 (2014-06-11)
In the present study the possibility of enhancing phenolic compound contents in peaches and nectarines by post-harvest irradiation with UV-B was assessed. Fruits of 'Suncrest' and 'Babygold 7' peach and 'Big Top' nectarine cultivars were irradiated with UV-B for 12
Anna Müller et al.
BMC plant biology, 15, 165-165 (2015-07-01)
Chrysomela populi (poplar leaf beetle) is a common herbivore in poplar plantations whose infestation causes major economic losses. Because plant volatiles act as infochemicals, we tested whether isoprene, the main volatile organic compound (VOC) produced by poplars (Populus x canescens)
Sylvain Godreuil et al.
PloS one, 9(8), e105441-e105441 (2014-08-28)
Multidrug resistance, which is acquired by both Gram-positive and Gram-negative bacteria, causes infections that are associated with significant morbidity and mortality in many clinical settings around the world. Because of the rapidly increasing incidence of pathogens that have become resistant
Sietse T Braakman et al.
Experimental eye research, 130, 87-96 (2014-12-03)
All aqueous humor draining through the conventional outflow pathway must cross the endothelium of Schlemm's canal (SC), likely by passing through micron-sized transendothelial pores. SC pores are non-uniformly distributed along the inner wall endothelium, but it is unclear how the

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