Chemists from ETH Zurich have found a way to produce poorly soluble proteins by caging a uniquely reactive boron compound. This method opens up new possibilities for the synthesis of tailored protein ...
Drug discovery is like molecular Tetris. Chemists snap atoms together, adjusting the pieces until everything fits, and ...
The synthesis of methanol from carbon dioxide can be dramatically improved by switching the catalyst support from zirconia to ...
In practical applications, nothing determines the success of a biocatalysis project more than the precise match between the enzyme and the substrate. Many industrial projects encounter issues such as ...
Chinese researchers have developed a photocatalytic membrane reactor that dramatically improves the synthesis of imines—a ...
A new catalyst built from isolated indium atoms allows scientists to convert CO2 into methanol more efficiently while revealing the hidden chemistry that drives the reaction.
Chemists from ETH Zurich have found a way to produce poorly soluble proteins by caging a uniquely reactive boron compound. This method opens up new possibilities for the synthesis of tailored protein ...
Researchers developed a machine-learning workflow that predicts how chemical reactions will form specific “handed” versions of molecules—critical for safe and effective drugs. Trained on small ...
Researchers at Nagoya University have created a more efficient iron-based photocatalyst that could reduce the need for rare and expensive metals in advanced chemistry. Unlike earlier designs, the new ...
The Donnelly Research Group at Heriot-Watt University (Edinburgh, UK) has published a compelling case study highlighting significant operational and scientific advantages when performing parallel ...
A team led by Abigail Doyle at the University of California, Los Angeles, found that phosphines can show transition- metal-like reactivity in a light-driven reaction between amine-containing rings and ...
Advancements in peptide and oligonucleotide synthesis via precision chemistry are transforming therapeutic development by ...