Abstract
Abstract— Many of the photophysical properties of riboflavin and several other N‐10 substituted isoal‐loxazines have been measured and these include: quantum yields of fluorescence at 77 K and 298 K, φ, quantum yields of phosphorescence at 77 K, φP, lifetimes of the triplet state by electron spin resonance and phosphorescence at 77 K, φp,. and the quantum yield of intersystem crossing. φisc. For riboflavin in an alcoholic matrix at 77 K the limiting values were: φJ= 0.32, φP= 0.007, φp= 0.20s and φisc= 0.7. At 298 K, φf for riboflavin in water and alcohol were 0.25 and 0.32, respectively. The results for the photophysical processes are compared with several photochemical processes known to involve the triplet state of riboflavin in aqueous solution. It is concluded that the φisc decreases from 0.7 in alcohol to 0.6 in water at 298 K.
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