A new method of producing carbon-centered radicals was discovered through the reaction of an alkyl iodide (R-I) with organic salts to reversibly generate the corresponding alkyl radical (R<sup>•</sup>). Via this new reaction, the organic salts were used as new and highly efficient organic catalysts in living radical polymerization. The catalysts included common and inexpensive compounds such as tetrabutylammonium iodide and methyltributylphosphonium iodide. Notably, the catalysts were highly reactive. They enabled the synthesis of high-molecular-weight polymers (up to <i>M</i><sub>n</sub> = 140 000) and the control of acrylate polymerization, which had been difficult with other organic catalysts. The organic salt catalysts were highly versa...
Herein, nontoxic and metabolizable choline iodide analogues, including choline iodide, acetylcholine...
Four families of oxyanions, i.e., carboxylate, nitrate, phosphate, and sulfonate, were studied as no...
Metal-catalyzed living radical polymerization (LRP) initiated with alkyl1 and sulfonyl halides2 has ...
Halogen exchange of alkyl bromide (R–Br) with sodium iodide (NaI) was used for the transformation of...
Organic superbases reacted with alkyl iodides (R–I) to reversibly generate the corresponding alkyl r...
This work reports the first use of organic chloride salts as catalysts for reversible complexation m...
Several low-molar-mass alkyl iodides were studied as initiating dormant species in living radical po...
The reaction mechanism of living radical polymerization using organic catalysts, a reversible comple...
The paper reports the generation of a carbon-center radical (R•) from an alkyl iodide (R-I) via a ha...
Chapter 1 introduced the general concept of living radical polymerization (LRP), three most widely-u...
The renaissance of radical polymerization in recent years was driven by new synthetic strategies, me...
The reaction mechanism of living radical polymerization using organic catalysts, a reversible comple...
Herein, a new reaction of an alkyl iodide (R–I) with an azide anion (N3–) to reversibly generate the...
Controlled radical polymerization techniques give access to innovative (multi)functional polymeric m...
Radical polymerization is widely employed in industrial- and laboratory-scale processes for polymer ...
Herein, nontoxic and metabolizable choline iodide analogues, including choline iodide, acetylcholine...
Four families of oxyanions, i.e., carboxylate, nitrate, phosphate, and sulfonate, were studied as no...
Metal-catalyzed living radical polymerization (LRP) initiated with alkyl1 and sulfonyl halides2 has ...
Halogen exchange of alkyl bromide (R–Br) with sodium iodide (NaI) was used for the transformation of...
Organic superbases reacted with alkyl iodides (R–I) to reversibly generate the corresponding alkyl r...
This work reports the first use of organic chloride salts as catalysts for reversible complexation m...
Several low-molar-mass alkyl iodides were studied as initiating dormant species in living radical po...
The reaction mechanism of living radical polymerization using organic catalysts, a reversible comple...
The paper reports the generation of a carbon-center radical (R•) from an alkyl iodide (R-I) via a ha...
Chapter 1 introduced the general concept of living radical polymerization (LRP), three most widely-u...
The renaissance of radical polymerization in recent years was driven by new synthetic strategies, me...
The reaction mechanism of living radical polymerization using organic catalysts, a reversible comple...
Herein, a new reaction of an alkyl iodide (R–I) with an azide anion (N3–) to reversibly generate the...
Controlled radical polymerization techniques give access to innovative (multi)functional polymeric m...
Radical polymerization is widely employed in industrial- and laboratory-scale processes for polymer ...
Herein, nontoxic and metabolizable choline iodide analogues, including choline iodide, acetylcholine...
Four families of oxyanions, i.e., carboxylate, nitrate, phosphate, and sulfonate, were studied as no...
Metal-catalyzed living radical polymerization (LRP) initiated with alkyl1 and sulfonyl halides2 has ...