Sulfur and nitrogen mustards are very toxic, yet versatile organic molecules with numerous applications. Herein, we report on a synthesis of a new class of green compounds, i.e., half-mustard and iprit carbonates, that result in new, unexplored, and safe molecules. Their chemical behavior with several nucleophiles and their reaction kinetics have been investigated
The substitution of a chlorine atom with a carbonate moiety in mustard compounds has led to a new cl...
The substitution of a chlorine atom with a carbonate moiety in mustard compounds has led to a new cl...
The substitution of a chlorine atom with a carbonate moiety in mustard compounds has led to a new cl...
Sulfur and nitrogen mustards are very toxic, yet versatile organic molecules with numerous applicati...
Sulfur and nitrogen mustards are very toxic, yet versatile organic molecules with numerous applicati...
Sulfur and nitrogen (half-)mustard carbonate analogues are a new class of compounds, easily synthesi...
Sulfur and nitrogen half-mustard compounds lose their aggressive properties when the chlorine atom i...
Sulfur iprit carbonate analogues have been investigated in neat conditions at atmospheric pressure, ...
The substitution of a chlorine atom with a carbonate moiety in mustard compounds has led to a new cl...
The substitution of a chlorine atom with a carbonate moiety in mustard compounds has led to a new cl...
The substitution of a chlorine atom with a carbonate moiety in mustard compounds has led to a new cl...
Sulfur and nitrogen mustards are very toxic, yet versatile organic molecules with numerous applicati...
Sulfur and nitrogen mustards are very toxic, yet versatile organic molecules with numerous applicati...
Sulfur and nitrogen (half-)mustard carbonate analogues are a new class of compounds, easily synthesi...
Sulfur and nitrogen half-mustard compounds lose their aggressive properties when the chlorine atom i...
Sulfur iprit carbonate analogues have been investigated in neat conditions at atmospheric pressure, ...
The substitution of a chlorine atom with a carbonate moiety in mustard compounds has led to a new cl...
The substitution of a chlorine atom with a carbonate moiety in mustard compounds has led to a new cl...
The substitution of a chlorine atom with a carbonate moiety in mustard compounds has led to a new cl...