Researchers in Saudi Arabia have developed a four-component nanocomposite photocatalyst that selectively oxidizes benzyl ...
Cancer cells have the capacity to multiply rapidly. The aggressive cancer cells undergo conversion from their tightly connected epithelial state into a mesenchymal state, which lacks contact ...
The benzaldehyde oxidation paradox explained by the interception of peroxy radical by benzyl alcohol
Discover the latest articles and news in related subjects. This situation prompted us to approach the problem from a different perspective. Herein we investigate this interesting phenomenon by ...
A compound best known for giving almonds and apricots their aroma may be the key to defeating hard-to-kill cancer cells. Japanese researchers found that benzaldehyde can stop the shape-shifting ...
During therapy, some cancer cells evolve to escape elimination. Newer anticancer drugs that can overcome this resistance are necessary. Now, researchers from Japan demonstrate that aromatic ...
Cancer cells have the capacity to multiply rapidly. The aggressive cancer cells undergo conversion from their tightly connected epithelial state into a mesenchymal state, which lacks contact ...
Cancer cells have the capacity to multiply rapidly. The aggressive cancer cells undergo conversion from their tightly connected epithelial state into a mesenchymal state, which lacks contact ...
In 2013, the German Stiftung Warentest found harmful benzene in drinks with cherry flavor. But how did the substance get into the drinks? Was the source benzaldehyde, an essential component of the ...
This past summer, I had the privilege of spending time with master perfumer Olivier Cresp, the nose behind iconic scents like Mugler’s Angel and Dolce & Gabbana Light Blue, on the island of Capri.
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