Solid-surface enhancement effects on chemiluminescence were observed using diaryloxalate bis[3,4,6-trichloro-2-(pentyloxycarbonyl)phenyl] oxalate, fluorophore[1-chloro-9,10-bis(phenylethynyl)anthracene], hydrogen peroxide and solids (filters) as media. An especially strong emission was observed when glass fiber filters were used. It is suggested that both the chemical composition and the surface physical properties of the solids affect luminescence. The effects of humidity and temperature on chemiluminescence were also examined. A relative humidity of 50% (at 30 °C) gave the highest luminescent intensity. A power functional relation of one hundredth lifetime (t1/100) and the temperature(T) was obtained.
使用二芳基
草酸酯[双[3,4,6-三
氯-2-(戊氧羰基)苯基]
草酸酯]、荧光团[1-
氯-9,10-双(
苯乙炔基)
蒽]、
过氧化氢和固体(滤器)作为介质,观察到了固体表面增强
化学发光的效果。特别是当使用
玻璃纤维滤器时,观察到了非常强烈的辐射。这表明固体的
化学组成和表面物理性质均影响发光。此外,还考察了湿度和温度对
化学发光的影响。相对湿度为50%(30℃时)时发光强度最高。还得到了寿命的一百分之一(t1/100)与温度(T)之间的幂函数关系。