TY - JOUR AB - Purpose– To evaluate the photochromic performance of fulgide 1‐E with ferrocene in polymer matrices.Design/methodology/approach– The fulgide 1‐E with ferrocene dye 2 doped in polymethylmethacrylate was prepared and the effects of UV irradiation were studied using spectrophotometer. The reversible reaction was effected using white light. The effect of heat was also determined.Findings– A film of the brown coloured fulgide 1‐E with ferrocene doped in PMMA polymer was irradiated with ultraviolet light (365 nm), the film turned red. The later colour was partially switched back to the original brown colour when the film was irradiated with a white light. It was found that the rate constants of photocoloration reaction at initial stages are faster than those at late stages. Similarly, the photocoloration reaction was slower than the photobleaching reaction. Photocoloration reaction decreased with the increase of the annealing temperatures, but for photobleaching reaction, the rates were almost similar (at 46 and 82°C). The fatigue resistance of the film was greatly improved when the annealing temperature increased to 82°C.Research limitations/implications– The polymethylmethacrylate polymer doped photochromic fulgide 1‐E and ferrocene 2 described in the present paper was prepared and studied. The principle of study established can be applied to any type of polymer or to any type of photochromic compounds.Practical implications– The photochromic materials developed can be used for different applications, such as coatings and holography.Originality/value– The method developed may be used to enhance the performance of photochromic materials. VL - 37 IS - 3 SN - 0369-9420 DO - 10.1108/03699420810870986 UR - https://doi.org/10.1108/03699420810870986 AU - Baghaffar G.A. AU - Asiri A.M. PY - 2008 Y1 - 2008/01/01 TI - The effects of organic additives on photochromism. Part I: the photochromic performance of (E)‐dicyclopropylmethylene‐(2,5‐dimethyl‐3‐furylethylidene)‐succinic anhydride and ferrocene containing dye doped in PMMA polymer film T2 - Pigment & Resin Technology PB - Emerald Group Publishing Limited SP - 145 EP - 150 Y2 - 2024/04/23 ER -