In contrast to the notion that enantiospecific chemical reactions require a chiral reagent molecule or catalyst, this work shows that enantioselective chemical transformations can be induced by the electron spin itself. As electrons are injected from a magnetized electrode into an adsorbed molecule, they have a distinct spin orientation relative to their velocity; i.e., they have a well-defined helicity. Thus, it is possible to replace a conventional enantiopure chemical reagent by spin-polarized electrons that provide the chiral bias for enantioselective reactions. Three examples of enantioselective chemistry, resulting from electron spin polarization, are presented. The first example demonstrates enantioselective association of a chiral m...
The study of the mutual influence between chirality, spin and magnetism is a thoroughly documented f...
The electro-oxidative polymerization of an enantiopure chiral 3,4-ethylenedioxythiophene monomer, pe...
Molecular spintronics or spin\u2010based electronics, which utilizes both the spin degrees of freedo...
In contrast to the notion that enantiospecific chemical reactions require a chiral reagent molecule ...
Essential aspects of the chiral induced spin selectivity (CISS) effect and their implications for sp...
This review describes a new perspective on the role that electron spin plays in the intermolecular f...
The Chiral-Induced Spin Selectivity (CISS) effect was reported for the first time in 1999, and later...
It is commonly assumed that recognition of chirality and enantio-selectivity, both in nature and in ...
It is commonly assumed that recognition and discrimination of chirality, both in nature and in artif...
The combination of spintronics with magneto- electrochemistry, particularly involving truly chiral m...
The highest degree of selectivity in electrochemical recognition is achieved with enantioselective e...
A sustainable future demands a successful transition from a carbon energy-dependent economy towards ...
Electron spin states play an important role in many chemical processes. Most spin-state studies requ...
We describe the spin polarization–induced chirogenic electropolymerization of achiral 2-vinylpyridin...
All molecular forms of life possess a chiral asymmetry, with amino acids and sugars found respective...
The study of the mutual influence between chirality, spin and magnetism is a thoroughly documented f...
The electro-oxidative polymerization of an enantiopure chiral 3,4-ethylenedioxythiophene monomer, pe...
Molecular spintronics or spin\u2010based electronics, which utilizes both the spin degrees of freedo...
In contrast to the notion that enantiospecific chemical reactions require a chiral reagent molecule ...
Essential aspects of the chiral induced spin selectivity (CISS) effect and their implications for sp...
This review describes a new perspective on the role that electron spin plays in the intermolecular f...
The Chiral-Induced Spin Selectivity (CISS) effect was reported for the first time in 1999, and later...
It is commonly assumed that recognition of chirality and enantio-selectivity, both in nature and in ...
It is commonly assumed that recognition and discrimination of chirality, both in nature and in artif...
The combination of spintronics with magneto- electrochemistry, particularly involving truly chiral m...
The highest degree of selectivity in electrochemical recognition is achieved with enantioselective e...
A sustainable future demands a successful transition from a carbon energy-dependent economy towards ...
Electron spin states play an important role in many chemical processes. Most spin-state studies requ...
We describe the spin polarization–induced chirogenic electropolymerization of achiral 2-vinylpyridin...
All molecular forms of life possess a chiral asymmetry, with amino acids and sugars found respective...
The study of the mutual influence between chirality, spin and magnetism is a thoroughly documented f...
The electro-oxidative polymerization of an enantiopure chiral 3,4-ethylenedioxythiophene monomer, pe...
Molecular spintronics or spin\u2010based electronics, which utilizes both the spin degrees of freedo...