Hesami L, Yang C, Anwar E, Noginova N, Noginov M A
Center for Materials Research, Norfolk State University, Norfolk, VA, 23504, USA.
Sci Rep. 2022 Nov 9;12(1):19109. doi: 10.1038/s41598-022-23243-4.
We have studied effects of metal-dielectric substrates on photopolymerization of [2,2'-Bi-1H-indene]-1,1'-dione-3,3'-diyl diheptanoate (BITh) monomer. We synthetized BITh and spin-coated it onto a variety of dielectric, metallic, and metal-dielectric substrates. The films were exposed to radiation of a UV-Visible Xe lamp, causing photo-polymerization of monomer molecules. The magnitude and the rate of the photo-polymerization were monitored by measuring the strength of the ~ 480 nm absorption band, which existed in the monomer but not in the polymer. Expectedly, the rate of photo-polymerization changed nearly linearly with the change of the pumping intensity. In contrast with our early study of photo-degradation of semiconducting polymer P3HT, the rate of photo-polymerization of BITh is getting modestly higher if the monomer film is deposited on top of silver separated from the monomer by a thin insulating MgF layer preventing a charge transfer. This effect is partly due to a constructive interference of the incident and reflected light waves, as well as known in the literature effects of metal/dielectric substrates on a variety of spectroscopic and energy transfer parameters. At the same time, the rate of photopolymerization is getting threefold larger if monomer is deposited on Ag film directly and charge transfer is allowed. Finally, Au substrates cause modest (~ 50%) enhancement of both monomer film absorption and the rate of photo-polymerization.
我们研究了金属 - 电介质衬底对[2,2'-联-1H-茚]-1,1'-二酮-3,3'-二基二庚酸酯(BITh)单体光聚合的影响。我们合成了BITh,并将其旋涂在各种电介质、金属和金属 - 电介质衬底上。这些薄膜暴露于紫外 - 可见氙灯的辐射下,导致单体分子发生光聚合。通过测量单体中存在但聚合物中不存在的480nm吸收带的强度来监测光聚合的程度和速率。不出所料,光聚合速率随泵浦强度的变化几乎呈线性变化。与我们早期对半导体聚合物P3HT光降解的研究不同,如果单体薄膜沉积在通过薄绝缘MgF层与单体隔开的银之上,BITh的光聚合速率会适度提高,该绝缘层可防止电荷转移。这种效应部分归因于入射光和反射光波的相长干涉,以及文献中已知的金属/电介质衬底对各种光谱和能量转移参数的影响。同时,如果单体直接沉积在Ag膜上并允许电荷转移,光聚合速率会增大三倍。最后,Au衬底使单体薄膜吸收和光聚合速率都适度增强(50%)。