نتایج جستجو برای: octahydro 9 ethyoxy 10 hydroxy 1 anthracenone

تعداد نتایج: 3524412  

Journal: :Chemical communications 2010
Norihiro Mizoshita Ken-Ichi Yamanaka Toyoshi Shimada Takao Tani Shinji Inagaki

Polycondensation of 9-mesityl-10-methylacridinium-bridged organosilane in the presence of a nonionic surfactant yielded a mesostructured organosilica solid with a functional framework that exhibited long-lived photoinduced charge separation.

Journal: :Molecules 2012
Chuangjun Li Li Li Chao Wang Jingzhi Yang Fei Ye Jinying Tian Yikang Si Dongming Zhang

A new ursane-type nortriterpenoid, (11S,12S)-4-methyl-11,12-epoxy-2-hydroxy-3-oxoursa-1,4-dine-28-oic acid γ-lactone (1), named ulmoidol A, together with ten known compounds: ulmoidol (2), corosolic acid (3), 2α,3α-dihydroxy-24-nor-4(23),12-oleanadien-28-oic acid (4), oleanolic acid (5), ursolic acid (6), cycloart-3β, 25-diol (7), foliasalacioside B1 (8), (6R,7E,9R)-9-hydrox...

Journal: :Zeitschrift fur Naturforschung. C, Journal of biosciences 2008
Eleuterio Burgueño-Tapia Azucena González-Coloma Lucía Castillo Pedro Joseph-Nathan

The insect antifeedant and toxic activity of hydroxyperezone (1), its derivatives 2-9, along with 3-hydroxy- (10) and 6-hydroxythymoquinone (11) were studied against Spodoptera littoralis, Leptinotarsa decemlineata, and Myzus persicae. The antifeedant tests showed that L. decemlineata was the most sensitive insect, followed by M. persicae, while S. littoralis was not deterred by compounds 1-11....

Journal: :Journal of natural products 2006
M Habib Oueslati Hichem Ben Jannet Zine Mighri J Chriaa Pedro M Abreu

The new norisoprenoid 3beta-hydroxy-5alpha,6alpha-epoxy-beta-ionone-2alpha-O-beta-d-glucopyranoside (1) and the long-chain hydroxy fatty acids 9,12,13-trihydroxyoctadeca-10(E),15(Z)-dienoic acid (2) and 9,12,13-trihydroxyoctadeca-10(E)-dienoic acid (3) were isolated from Salsola tetrandra aerial parts, together with 3,4,5-trimethoxyphenyl-beta-d-glucopyranoside (4), 9-hydroxylinaloyl glucoside ...

Journal: :Physical chemistry chemical physics : PCCP 2014
Christian Spies Shay Shomer Björn Finkler Dina Pines Ehud Pines Gregor Jung Dan Huppert

Steady-state and time-resolved techniques were employed to study the excited-state proton-transfer (ESPT) rate of two newly synthesized 8-hydroxy-1,3,6-pyrenetrisulfonate (pyranine, HPTS) derived photoacids in three protic solvents, water, methanol and ethanol. The ESPT rate constant k(PT) of tris(1,1,1,3,3,3-hexafluoropropan-2-yl)-8-hydroxypyrene-1,3,6-trisulfonate, 1a, whose pK(a)* ~ -4, in w...

Journal: :Synthetic Communications 2022

A simple method for design of some novel 1,2-benzoxaphosphinines 2–9, was achieved. The methodology depended on cyclization 1-(2-hydroxy-phenyl)-3-phenylpropane-1,3-dione (1) as starting material with phosphorus halides in dry solvent the presence a base. Reaction substrate 1 halides, such P,P-dichlorophenylphosphine, phenyl phosphonic dichloride, phosphorodichloridate, and oxychloride toluene ...

Journal: :Chemical & pharmaceutical bulletin 2000
J Koyama I Morita A Kino K Tagahara

The separation of nine furanonaphthoquinones by micellar electrokinetic chromatography (MEKC) is described. The running electrolytes used in this method were 0.03 M sodium dodecyl sulphate (SDS) in 0.09 M borate buffer (pH 9) containing 10% methanol, with an applied voltage of 20 kV. Application of this technique in the determination of the main furanonaphthoquinones, 5-hydroxy-2-(1-hydroxyethy...

2014
Heejung Yang Jeom Yong Kim Sun Ok Kim Young Hyo Yoo Sang Hyun Sung

BACKGROUND Ginsenosides, the major ingredients of Panax ginseng, have been studied for many decades in Asian countries as a result of their wide range of pharmacological properties. The less polar ginsenosides, with one or two sugar residues, are not present in nature and are produced during manufacturing processes by methods such as heating, steaming, acid hydrolysis, and enzyme reactions. (1)...

2013
Gardenia jasminoides Ellis A. Sridhar Rao J. Shankara Chary Ramchander Merugu

Three new iridoids, Gardenal-I (1), Gardenal-II (2) and Gardenal-III (3), together with nine known iridoid glycosides; geniposide (4), 6-β-hydroxy geniposide (5), 6-α-hydroxy geniposide (6), 6-α-methoxy geniposide (7), feretoside (8), genipin-1-β-gentiobioside (9), shanzhiside (10), lamalbidic acid (11) and picrocrocinic acid (12) were isolated from EtOH extract of G. gasminoides. The structure...

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