© 2019 American Chemical Society. The synthesis of imidazolones through the cycloisomerization of ureas, specifically propargylureas, has gained attention due to the large availability of starting materials. However, this type of synthesis normally requires the utilization of strong bases, such as NaOH, expensive homogeneous metal catalysts, such as Ag-, Au-, and Ru-based systems, or toxic and hazardous chemicals. Herein, a study of different synthetic routes for the preparation of imidazolones through the cycloisomerization of propargylic ureas under fast, mild, and environmentally friendly conditions with heterogeneous catalysis was undertaken. First, the synthesis were carried out under mild conditions using toluene and acetonitrile as s...
We report the utilization of a novel catalyst for cycloisomerizations. The novel catalyst system con...
Gold nanoparticles supported on imidazole‐modified bentonite, Bent@Im@Au NPs, has been developed for...
© 2016 The Royal Society of Chemistry. An efficient and diversity-oriented synthetic strategy for no...
The synthesis of imidazolones through the cycloisomerization of ureas, specifically propargylureas, ...
The synthesis of imidazolones through the cycloisomerization of ureas, specifically propargylureas, ...
The synthesis of imidazolones through the cycloisomerization of ureas, specifically propargylureas, ...
We report the utilization of a novel catalyst for cycloisomerizations. The novel catalyst system con...
We report the utilization of a novel catalyst for cycloisomerizations. The novel catalyst system con...
We report the utilization of a novel catalyst for cycloisomerizations. The novel catalyst system con...
We report the utilization of a novel catalyst for cycloisomerizations. The novel catalyst system con...
We report the utilization of a novel catalyst for cycloisomerizations. The novel catalyst system con...
We report the utilization of a novel catalyst for cycloisomerizations. The novel catalyst system con...
We report the utilization of a novel catalyst for cycloisomerizations. The novel catalyst system con...
This thesis will focus on the development of new methodologies utilizing propargylic alcohols and ac...
Mesoporus compounds, founded in 1992, are of great interest because of their remarkable properties, ...
We report the utilization of a novel catalyst for cycloisomerizations. The novel catalyst system con...
Gold nanoparticles supported on imidazole‐modified bentonite, Bent@Im@Au NPs, has been developed for...
© 2016 The Royal Society of Chemistry. An efficient and diversity-oriented synthetic strategy for no...
The synthesis of imidazolones through the cycloisomerization of ureas, specifically propargylureas, ...
The synthesis of imidazolones through the cycloisomerization of ureas, specifically propargylureas, ...
The synthesis of imidazolones through the cycloisomerization of ureas, specifically propargylureas, ...
We report the utilization of a novel catalyst for cycloisomerizations. The novel catalyst system con...
We report the utilization of a novel catalyst for cycloisomerizations. The novel catalyst system con...
We report the utilization of a novel catalyst for cycloisomerizations. The novel catalyst system con...
We report the utilization of a novel catalyst for cycloisomerizations. The novel catalyst system con...
We report the utilization of a novel catalyst for cycloisomerizations. The novel catalyst system con...
We report the utilization of a novel catalyst for cycloisomerizations. The novel catalyst system con...
We report the utilization of a novel catalyst for cycloisomerizations. The novel catalyst system con...
This thesis will focus on the development of new methodologies utilizing propargylic alcohols and ac...
Mesoporus compounds, founded in 1992, are of great interest because of their remarkable properties, ...
We report the utilization of a novel catalyst for cycloisomerizations. The novel catalyst system con...
Gold nanoparticles supported on imidazole‐modified bentonite, Bent@Im@Au NPs, has been developed for...
© 2016 The Royal Society of Chemistry. An efficient and diversity-oriented synthetic strategy for no...