Asymmetric catalysis is an essential tool in modern chemistry, but increasing environmental concerns demand the development of new catalysts based on cheap, abundant, and less toxic iron. As a result, Knolker-type catalysts have emerged as a promising class of iron catalysts for various chemical transformations, notably the hydrogenation of carbonyls and imines, while asymmetric versions are still under exploration to achieve optimal enantio-selectivities. In this work, we report a novel asymmetric design of a Knolker-type catalyst, in which the C-2-rotational symmetric cyclopentadienone ligand possesses chiral substituents on the 2- and 5-positions near the active site. Four examples of the highly modular catalyst design were synthesized v...
Our group previously reported the development of iron carbonyl catalysts bearing chiral tridentate P...
A family of chiral (cyclopentadienone)iron complexes, featuring an (R)-BINOL-derived backbone, and t...
The design of chiral catalysts for hydrogenation chemistry is a field forever continuing as there ar...
Asymmetric catalysis is an essential tool in modern chemistry, but increasing environmental concerns...
In recent years, Fe-cyclopentadienone complexes (1 in Figure 1) [1] have become a hot research topic...
Asymmetric catalysis is the most efficient strategy for producing enantiopure compounds, and the ena...
In recent years, Fe-cyclopentadienone complexes (1 in Figure 1)1 have become a hot research topic fo...
In recent years, Fe-cyclopentadienone complexes (1 in Figure 1)1 have become a hot research topic fo...
Three chiral (cyclopentadienone)iron complexes derived from (R)-BINOL (CK1-3) were synthesized and t...
In this paper, we describe a small library of easy-to-prepare chiral (cyclopentadienone)iron pre-cat...
A family of chiral (cyclopentadienone)iron complexes, featuring an (R)-BINOL-derived backbone, and t...
Our group previously reported the development of iron carbonyl catalysts bearing chiral tridentate P...
A family of chiral (cyclopentadienone)iron complexes, featuring an (R)-BINOL-derived backbone, and t...
The design of chiral catalysts for hydrogenation chemistry is a field forever continuing as there ar...
Asymmetric catalysis is an essential tool in modern chemistry, but increasing environmental concerns...
In recent years, Fe-cyclopentadienone complexes (1 in Figure 1) [1] have become a hot research topic...
Asymmetric catalysis is the most efficient strategy for producing enantiopure compounds, and the ena...
In recent years, Fe-cyclopentadienone complexes (1 in Figure 1)1 have become a hot research topic fo...
In recent years, Fe-cyclopentadienone complexes (1 in Figure 1)1 have become a hot research topic fo...
Three chiral (cyclopentadienone)iron complexes derived from (R)-BINOL (CK1-3) were synthesized and t...
In this paper, we describe a small library of easy-to-prepare chiral (cyclopentadienone)iron pre-cat...
A family of chiral (cyclopentadienone)iron complexes, featuring an (R)-BINOL-derived backbone, and t...
Our group previously reported the development of iron carbonyl catalysts bearing chiral tridentate P...
A family of chiral (cyclopentadienone)iron complexes, featuring an (R)-BINOL-derived backbone, and t...
The design of chiral catalysts for hydrogenation chemistry is a field forever continuing as there ar...