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The Emergence of Manganese-Based Carbonyl Hydrosilylation Catalysts
Ryan J. Trovitch
Molecular Sciences, School of (SMS)
Research output
:
Contribution to journal
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Article
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peer-review
117
Scopus citations
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Medicine & Life Sciences
Silanes
100%
pyridine
89%
Ketones
87%
Manganese
82%
Aldehydes
82%
Formates
67%
cyclohexanone
59%
Metals
59%
Ethers
53%
Alkenes
53%
formic acid
44%
Catalysis
41%
Silicones
37%
Esters
35%
Oxidation-Reduction
33%
Ligands
24%
Chemical Compounds
Hydrosilylation
76%
Catalyst
28%
Silanes
17%
Turnover Frequency
16%
Formate
15%
Aldehyde
10%
Silyl Ether
9%
Chemical Transformation
9%
Cyclohexanone
8%
Antiferromagnetic
7%
Communication
6%
Reduction
6%
Ground State
6%
Electronic State
5%
Alkene
5%
Pyridine
5%
Donor
5%
Catalysis
4%
Ester
4%
Metal
3%
Ligand
3%
Mixture
3%
Reaction Yield
3%
Time
2%