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methylphenylsulfide
Known as:
methyl phenyl sulfide
, thioanisol
, thioanisole
National Institutes of Health
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Related topics
Related topics
1 relation
Broader (1)
Sulfides
Papers overview
Semantic Scholar uses AI to extract papers important to this topic.
Highly Cited
2008
Highly Cited
2008
Catalytic selective bis-arylation of imines with anisole, phenol, thioanisole and analogues.
Cong Liu
,
Man‐Bo Li
,
Cui‐Feng Yang
,
S. Tian
Chemical Communications
2008
Corpus ID: 31275802
The first highly efficient double Friedel-Crafts reaction of N-tosyl imines with anisole, phenol, thioanisole and analogues has…
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Highly Cited
2006
Highly Cited
2006
Selective catalytic oxidation of organosulfur compounds with tert-butyl hydroperoxide.
A. Chica
,
G. Gatti
,
Björn Modén
,
L. Marchese
,
E. Iglesia
Chemistry
2006
Corpus ID: 9026436
Rates and selectivities for the oxidation of various organosulfur compounds with tert-butyl hydroperoxide were measured on CoAPO…
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2004
2004
New activities of a catalytic antibody with a peroxidase activity: formation of Fe(II)-RNO complexes and stereoselective oxidation of sulfides.
R. Ricoux
,
Edyta Lukowska
,
F. Pezzotti
,
J. Mahy
European Journal of Biochemistry
2004
Corpus ID: 41914138
In order to estimate the size of the cavity remaining around the heme of the 3A3-microperoxidase 8 (MP8) hemoabzyme, the…
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Highly Cited
2002
Highly Cited
2002
Bromoperoxidase activity of vanadate-substituted acid phosphatases from Shigella flexneri and Salmonella enterica ser. typhimurium.
N. Tanaka
,
V. Dumay
,
Qianning Liao
,
A. Lange
,
R. Wever
European Journal of Biochemistry
2002
Corpus ID: 2183060
Vanadium haloperoxidases and the bacterial class A nonspecific acid phosphatases have a conserved active site. It is shown that…
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2001
2001
Chloroperoxidase-catalyzed enantioselective oxidations in hydrophobic organic media.
F. V. D. Velde
,
M. Bakker
,
F. V. Rantwijk
,
R. Sheldon
Biotechnology and Bioengineering
2001
Corpus ID: 45619714
Chloroperoxidase from Caldariomyces fumago, a peroxidase that performs P450-like chemistry, was immobilized via covalent…
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Highly Cited
2000
Highly Cited
2000
Formation of Compound I in the Reaction of Native Myoglobins with Hydrogen Peroxide*
T. Egawa
,
H. Shimada
,
Y. Ishimura
Journal of Biological Chemistry
2000
Corpus ID: 45281065
Reaction of ferric native myoglobin (Mb) with hydrogen peroxide (H2O2) was studied by the aid of stopped-flow rapid-scan…
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Highly Cited
2000
Highly Cited
2000
Improved operational stability of peroxidases by coimmobilization with glucose oxidase.
F. V. D. Velde
,
N. Lourenço
,
M. Bakker
,
F. V. Rantwijk
,
R. Sheldon
Biotechnology and Bioengineering
2000
Corpus ID: 20212640
The operational stability of peroxidases was considerably enhanced by generating hydrogen peroxide in situ from glucose and…
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Highly Cited
2000
Highly Cited
2000
The rational design of semisynthetic peroxidases.
F. V. D. Velde
,
Lars Könemann
,
F. V. Rantwijk
,
R. Sheldon
Biotechnology and Bioengineering
2000
Corpus ID: 25164720
A semisynthetic peroxidase was designed by exploiting the structural similarity of the active sites of vanadium dependent…
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Highly Cited
1981
Highly Cited
1981
Oxidation reactions by prostaglandin cyclooxygenase-hydroperoxidase.
Robert W. Egan
,
Paul H. Gale
,
+8 authors
Kuehl
Journal of Biological Chemistry
1981
Corpus ID: 24069021
Highly Cited
1979
Highly Cited
1979
Selenium stabilized carbanions. Preparation of .alpha.-lithio selenides and applications to the synthesis of olefins by reductive elimination of .beta.-hydroxy selenides and selenoxide syn…
H. Reich
,
F. Chow
,
Shrenik K. Shah
1979
Corpus ID: 53592950
The deprotonation of several alkyl aryl selenides with lithium amide bases has been studied. The kinetic acidity of methyl m…
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