A thioxanthone based one-component polymerizable visible light photoinitiator with a high photopolymerization activity and very good migration stability was designed and prepared.
The tandem cyclization of olefinic carbonyls with easily accessible diselenides facilitated by electrochemical oxidation has been successfully developed, which provides an environmentally friendly method for the construction of C–Se and C–O bonds simultaneously.
Ferrocene-based polymers, poly(ferrocenyl-methylsilane) and its derivatives, were synthesised by ring-opening polymerization. The product shows promising cathode application in Li-ion, Na-ion and all-organic batteries. The ultra-high power density, excellent cycling stability and decent capacity performance makes it comparable or even superior to the conventional inorganic electrode materials.
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