초록
合成한 pllyglyceryl phthalate, bisphenol A-epichlorohydrin 축중합물과 polyvinyl alcohol의 naphthoquinone-1,2-diazide-5-sulfonyl esters(PGND, BEND 및 PVAND)의 感光特性을 지배하는 諸因子를 이들에 대한 光照射前後의 溶解度 차이에 의하여 檢討하였다. 유리 또는 石英支持薄板上에 塗布한 各試料를 各種條件下에서 露光하고 알카리 水溶液에 침지시킨 다음 塗布된 필림의 殘膜收率(W/W0)을 計算하였다. 필름의 感光度와 직접적인 관계가 있는 殘膜收率은 母體樹脂의 重合度, 增感劑의 種類 및 添加濃度에 따라 영향이 있었다. 母體樹脂의 重合度가 크면 클수록 感光性이 더 우수하였으며, 增感劑의 添加濃度는 5%일때가 가장 좋은 效果를 나타내었다. PGND, BEND 및 PVAND에 대해 본실험에서 사용한 各種 增感制 중에서 가장 效果的인 것은 benzanthrone, 5-nitroacenaphthene, picramide이였다. 이들 樹脂와 增感劑를 添加한 경우의 固相에 있어서의 紫外線吸收스펙트럼과 感色性 寫眞을 각각 비교 검토하여 그 增感과 分光感度的 特性을 糾明하였다. PGND, BEND 및 PVAND는 使用한 增感制에 의하여 光學增感하였으며 增感效果가 현저한 것일수록 그 感光波長城이 長波長쪽으로 伸張하였다. 未增感, 增感試料에 있어서 分光吸收 極大 波長城과 分光感光極大波長城이 거의 一致하고 있는 점으로 보아 試料 樹脂들에 의해서 吸收된 波長城의 光은 그 分野에 有效하게 使用되고 있음을 확인하였다
Photosensitive properties of naphthoquinone-1,2-diazide-5-sulfonyl esters (PGND, BEND and PVAND) of polyglyceryl phthalate(PG), bisphenol A-epichlorohydrin condensate(BE) and polyvinyl alcohol(PVA) were investigated by the change of solubility before and after exposing to light. Various samples coated on glass or quartz plates were exposed to light under various conditions and steeped in aqueous alkali solution, and then the yield of residual film(W/W0) was determined. The yield of residual film, which was closely related to the sensitivity of the film, was affected by the degree of polymerization of the backbone resin, sensitizers and their concentration. In polymer homologs, the sensitivity was dependent on the degree of polymerization(the higher, the better). And also, it was most effective when 5 % of sensitizers to esters was used. The minimum exposed time was 0.6 min. for PGND-1, 1.0 min. for BEND-1, and 3.0 min. for PVAND-1. Most effective sensitizers for PGND, BEND and PVAND among those used here were benzanthrone, 5-nitroacenaphthene and picramide, respectively. The spectral sensitivities of PGND, BEND and PVAND were examined by comparing their spectrograms with UV-spectra in a solid state. Also, the sensitization and spectral sensitivity of the above polymers were studied. All the polymers containing the sensitizers showed optical sensitization. From the fact that in either case of sensitized or unsensitized sample, the ranges of absorption-maximum wave length were almost consistent with sensitivity maximum wave length, it was proved that the light absorbed by a sample served efficiently for photochemical reactions. Benzanthrone was found to be an excellent sensitizer for PGND.