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 ...
3don MSN
Iron and blue LEDs synthesize natural molecules, cutting the need for expensive chiral components
Photocatalysts facilitate chemical reactions by absorbing light. Metal-based photocatalysts are widely used in organic ...
NileRed on MSN
Can you convert one medicine into another?
Aspirin and acetaminophen are common pain relievers with different chemical structures. Converting related compounds requires controlled organic synthesis steps. The experiment explores how functional ...
Advancements in peptide and oligonucleotide synthesis via precision chemistry are transforming therapeutic development by ...
Galvan grew up in Booker, a small town at the top right corner of the Texas panhandle. She opted to attend West Texas A&M ...
Why it matters: While not evidence of life, these discoveries show that ancient Mars had complex organic chemistry, ...
Join us on 24 March to discover how retrosynthesis software, paired with application programming interfaces, can accelerate route design, virtual screening and practical synthesis decisions ...
A team of scientists from the University of Manchester and Oxford have synthesized stable nitrogen chain radical anions under ambient conditions. These molecules, which are normally too reactive to ...
This simple electrochemical device captures carbon dioxide from simulated industrial exhaust thanks to an electrode made of a ...
Crystalline polymers assembled inside tumor cell lysosomes rupture membranes, release iron, and trigger immune-activating ...
Nagoya University scientists have created an iron-based photocatalyst that uses blue LEDs to synthesize medicinal compounds ...
For India, green chemistry provides the scientific underpinning to modernise its manufacturing base while aligning with ...
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