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Catenanes are organic compounds with ring-like molecules that are mechanically interlocked. The mechanical locking system in ...
Zhang’s colleague Chun Tang explains that the closely packed structure of the catenane plays a key role in the process. ‘The ...
Innovation is driving the chiral chemicals market forward, with new technologies and processes making it easier and more cost-effective to produce enantiomerically pure compounds. One major ...
The article, "Chiral Lemniscate Formation in Magnetic Field Controlled Topological Fluid Flows," has been published in Small. The Australian experts, with collaborators in the US, the UK and China, ...
Axially chiral skeletons are prevalent in natural products and biologically important compounds, and they are widely utilized as privileged scaffolds in enantioselective catalysis. Consequently, the ...
while grafted chiral complexes provide robust platforms but may face issues related to scalability and synthesis complexity. Spatial confinement strategies show promise in enhancing catalyst ...
One of the challenges in chemistry involves the synthesis of chiral molecules, which form mirror-image isomers called enantiomers. Typically, only one is desired because the other does not produce the ...
One of the challenges in chemistry involves the synthesis of chiral molecules, which form mirror-image isomers called enantiomers. Typically, only one is desired because the other does not produce ...
Techniques such as chiral resolution and asymmetric synthesis have become essential in the production of single-enantiomer drugs. Chiral resolution involves separating a mixture of enantiomers ...
It is the first time that such a technique has targeted bonds involving heteroatoms. The process could streamline the synthesis of chiral pharmaceuticals, where precise enantiomer control is essential ...
"This approach aims to democratize automation in material synthesis, providing researchers with a practical, cost-effective solution to accelerate innovation in materials science," Takahashi explained ...