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hydrosilylation, silylation, phosphorylation (1580) 1580
organo‐phosphorus compounds (633) 633
organo‐silicon compounds (423) 423
catalysis, phase‐transfer catalysis (293) 293
diastereoselective syntheses, enantioselective syntheses (242) 242
catalysis (142) 142
organic chemistry, review (137) 137
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c‐c bond formation (70) 70
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enantiomers (50) 50
amines (44) 44
organocatalysis (43) 43
palladium (42) 42
olefins (41) 41
protection, deprotection (39) 39
carbohydrates (38) 38
ketones (33) 33
phosphonates (33) 33
amination, n‐alkylation, n‐arylation (32) 32
cyanation, nitrile formation (32) 32
pyridine (31) 31
indole derivatives, isoindole derivatives (28) 28
nitriles (28) 28
pyridine derivatives (28) 28
hydroboration, boration (27) 27
alkenes (26) 26
reactions of organo‐metal compounds (26) 26
regioselective reactions (26) 26
cyclohexane derivatives (24) 24
furan derivatives (24) 24
organo‐boron compounds (24) 24
copper (23) 23
microwave chemistry, sonochemistry, mechanochemistry (23) 23
nucleic acids (23) 23
pyrrole derivatives (23) 23
hydrogenation (22) 22
amino acids, peptides (21) 21
aldehydes (20) 20
oxidation, dehydrogenation (20) 20
oxides (20) 20
radical reactions (20) 20
multicomponent reactions (18) 18
nickel (18) 18
sulfuration, sulfonation, s‐alkylation (17) 17
halogenation (16) 16
quinoline derivatives (16) 16
heterocyclic compounds (14) 14
ring opening reactions (14) 14
silane (14) 14
acids (13) 13
cyclopentane derivatives (13) 13
photochemistry, radiation chemistry, chemoluminescence (13) 13
thiophene derivatives (13) 13
z‐selectivity (13) 13
benzopyran derivatives (12) 12
isoquinoline derivatives (12) 12
organo‐tin compounds (12) 12
phosphates (12) 12
derivatives (11) 11
esters (11) 11
rearrangements (11) 11
carboxylic acid esters (10) 10
halogen compounds (10) 10
quinoline (10) 10
ring closure reactions, annulation reactions (10) 10
schiff bases (10) 10
zinc (10) 10
cycloaddition reactions (9) 9
fused pyridine derivatives (9) 9
polyphenylalkane derivatives (9) 9
steroids (9) 9
substitution reactions (9) 9
amides (8) 8
aminocarboxylic acids and esters (8) 8
ethers (8) 8
general (8) 8
palladium catalysts (8) 8
polyphenylalkene derivatives (8) 8
pyrazole derivatives (8) 8
acetates (7) 7
benzothiazole derivatives (7) 7
cyclopropane derivatives (7) 7
dehalogenation (7) 7
etherification (7) 7
fused pyrimidine derivatives (7) 7
organo‐germanium compounds (7) 7
phenols (7) 7
phosphorylation (7) 7
rhodium (7) 7
ruthenium (7) 7
terpenes (7) 7
araliphatic ethers (6) 6
bridged compounds (6) 6
carboxylic amides (6) 6
cleavage reactions, decomposition reactions, pyrolysis (6) 6
hydrogenated naphthalene derivatives (6) 6
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ChemInform, ISSN 0931-7597, 06/2016, Volume 47, Issue 27, pp. no - no
This is the first Ru‐catalyzed silylation of unreactive, aliphatic C(sp3)—H bonds. 
hydrosilylation, silylation, phosphorylation | pyridine derivatives | quinoline derivatives | catalysis, phase‐transfer catalysis | Quinoline | Ruthenium | Pyridine | Catalysis
Journal Article
ChemInform, ISSN 0931-7597, 08/2016, Volume 47, Issue 34, pp. no - no
A wide range of N,N‐disubstituted anilines is highly regioselectively silylated with various hydrosilanes under metal‐free, neutral reaction conditions using... 
organo‐silicon compounds | hydrosilylation, silylation, phosphorylation | regioselective reactions
Journal Article
ChemInform, ISSN 0931-7597, 01/2016, Volume 47, Issue 7, pp. no - no
A method is described for the silylation of heteroarenes and terminal alkenes to give several silylated compounds. 
organo‐silicon compounds | hydrosilylation, silylation, phosphorylation | Olefins
Journal Article
ChemInform, ISSN 0931-7597, 11/2015, Volume 46, Issue 46, pp. no - no
Benzamides containing both electron‐donating and electron‐withdrawing groups are utilized in silylation reaction which takes place in ortho‐position to the... 
organo‐silicon compounds | hydrosilylation, silylation, phosphorylation | pyrrole derivatives | Ruthenium
Journal Article
ChemInform, ISSN 0931-7597, 06/2016, Volume 47, Issue 27, pp. no - no
The simple combination of an Fe(II) salt with NaBARF mediates an otherwise difficult electrophilic aromatic substitution (SEAr) with an in situ generated... 
organo‐silicon compounds | substitution reactions | hydrosilylation, silylation, phosphorylation | Substitution reactions
Journal Article
ChemInform, ISSN 0931-7597, 11/2016, Volume 47, Issue 47, pp. no - no
Some heterocyclic substrates, substituted at the ortho‐position of a heteroatom with alkyl substituents bearing a site‐selective methyl group, are successfully... 
organo‐silicon compounds | oxazole derivatives | hydrosilylation, silylation, phosphorylation | pyridine derivatives | Oxazoles | Ruthenium | Pyridine
Journal Article
ChemInform, ISSN 0931-7597, 02/2016, Volume 47, Issue 10, pp. no - no
A simple procedure is elaborated for the copper‐catalyzed N‐silylation of sulfoximines (I) and (IV) in wet acetonitrile using di(tert‐butyl) peroxide as an... 
hydrosilylation, silylation, phosphorylation | sulfoxides, sulfones, sulfenes and derivatives (benzene compounds) | Organosulfur compounds
Journal Article
ChemInform, ISSN 0931-7597, 04/2015, Volume 46, Issue 14, pp. no - no
Journal Article
ChemInform, ISSN 0931-7597, 08/2016, Volume 47, Issue 34, pp. no - no
Primary and secondary benzylic halides efficiently react with silylboronates affording benzylic silanes with moderate to high yields and broad substrate scope. 
organo‐silicon compounds | hydrosilylation, silylation, phosphorylation | Halides | Palladium | Silane
Journal Article
ChemInform, ISSN 0931-7597, 07/2015, Volume 46, Issue 27, pp. no - no
The catalyst system under conditions A) is found to be optimal for the silylation of arenes, various hetarenes, and a broad spectrum of pharmaceutical agents... 
organo‐silicon compounds | general (heterocyclic compounds) | hydrosilylation, silylation, phosphorylation | halogen compounds (benzene compounds) | Antidepressants | Heterocyclic compounds
Journal Article
ChemInform, ISSN 0931-7597, 04/2016, Volume 47, Issue 20, pp. no - no
A range of alkenyl and alkynyl organo‐silicon compounds is efficiently synthesized via decarboxylative C‐Si bond formation. 
organo‐silicon compounds | hydrosilylation, silylation, phosphorylation | decarboxylation
Journal Article
ChemInform, ISSN 0931-7597, 03/2016, Volume 47, Issue 13, pp. no - no
The silylation of phenyldeazapurines (I) and (IV) with trialkylsilanes (II) proceeds preferentially at the ortho‐position of the phenyl ring due to the... 
organo‐silicon compounds | hydrosilylation, silylation, phosphorylation | fused pyrimidine derivatives | regioselective reactions
Journal Article
ChemInform, ISSN 0931-7597, 11/2015, Volume 46, Issue 45, pp. no - no
Journal Article
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