AK thanks the Leverhulme Trust for an early career fellowship.We report here the first example of the direct synthesis of polyureas from the dehydrogenative coupling of diamines and methanol using a ruthenium pincer catalyst. The present methodology replaces the use of toxic diisocyanates, conventionally used for the production of polyureas, with methanol, which is renewable, less toxic, and cheaper, making the overall process safer and more sustainable. Further advantages of the current method have been demonstrated by the synthesis of a renewable, a chiral, and the first 13C-labelled polyurea.Publisher PDFPeer reviewe
In this work we describe the solvent free synthesis of supramolecular polyurethanes held together by...
\u3cp\u3eHere, an isocyanate-free approach to produce polyureas from diamines and dicarbamates as mo...
Four catalysts, viz. 1,5,7-triazabicyclo[4.4.0]dec-5-ene (TBD), potassium bis(trimethylsilyl)amide (...
We report here the first example of the direct synthesis of polyureas from the dehydrogenative coupl...
We report here the synthesis of polyureas from the dehydrogenative coupling of diamines and diformam...
We present here the catalytic hydrogenation of various urea derivatives to amines and methanol. The ...
Urea derivatives are prevalent intermediates in the synthesis of resin precursors, dyes, agrochemica...
Urea derivatives have significant applications in the synthesis of resin precursors, dyes, agrochemi...
An unprecedented protocol for urea synthesis directly from methanol and amine was accomplished. The ...
Via an isocyanate-free route, a series of segmented polyureas (PUs) were synthesized from (potential...
An unprecedented protocol for urea synthesis directly from methanol and amine was accomplished. The ...
The conventional synthetic route to urethane polymers involves the use of hazardous dflsocyanates wh...
Polyureas were synthesized from diamines and carbon dioxide in the absence of any catalyst or solven...
Polyureas have widespread applications due to their unique material properties. Because of the toxic...
Biobased diamines are excellent precursors for the synthesis of non-isocyanate polyurethanes (NIPUs)...
In this work we describe the solvent free synthesis of supramolecular polyurethanes held together by...
\u3cp\u3eHere, an isocyanate-free approach to produce polyureas from diamines and dicarbamates as mo...
Four catalysts, viz. 1,5,7-triazabicyclo[4.4.0]dec-5-ene (TBD), potassium bis(trimethylsilyl)amide (...
We report here the first example of the direct synthesis of polyureas from the dehydrogenative coupl...
We report here the synthesis of polyureas from the dehydrogenative coupling of diamines and diformam...
We present here the catalytic hydrogenation of various urea derivatives to amines and methanol. The ...
Urea derivatives are prevalent intermediates in the synthesis of resin precursors, dyes, agrochemica...
Urea derivatives have significant applications in the synthesis of resin precursors, dyes, agrochemi...
An unprecedented protocol for urea synthesis directly from methanol and amine was accomplished. The ...
Via an isocyanate-free route, a series of segmented polyureas (PUs) were synthesized from (potential...
An unprecedented protocol for urea synthesis directly from methanol and amine was accomplished. The ...
The conventional synthetic route to urethane polymers involves the use of hazardous dflsocyanates wh...
Polyureas were synthesized from diamines and carbon dioxide in the absence of any catalyst or solven...
Polyureas have widespread applications due to their unique material properties. Because of the toxic...
Biobased diamines are excellent precursors for the synthesis of non-isocyanate polyurethanes (NIPUs)...
In this work we describe the solvent free synthesis of supramolecular polyurethanes held together by...
\u3cp\u3eHere, an isocyanate-free approach to produce polyureas from diamines and dicarbamates as mo...
Four catalysts, viz. 1,5,7-triazabicyclo[4.4.0]dec-5-ene (TBD), potassium bis(trimethylsilyl)amide (...