材料科学
封装(网络)
渗透
胶粘剂
数码产品
纳米技术
聚对苯二甲酸乙二醇酯
柔性电子器件
复合材料
阻挡层
图层(电子)
膜
计算机科学
生物
遗传学
物理化学
化学
计算机网络
作者
Sergio Castro‐Hermosa,Michiel Top,Janardan Dagar,John Fahlteich,Thomas M. Brown
标识
DOI:10.1002/aelm.201800978
摘要
Abstract Effective transparent barrier/encapsulation systems represent a key enabling technology for large‐area electronics. Securing stability to the environment is vital. Here, the effects of architectures, application processes, and water vapor transmission rates (WVTR) of transparent flexible ultra‐high permeation barrier films (UHPBF) applied to substrates with adhesive resins are unraveled for attaining long lifetime, and compared with polyethylene terephthalate and glass barriers. How strongly performance of barrier/adhesive systems depends on barrier orientation, adhesion, manipulation, defects, and storage procedures is quantified via calcium tests. Furthermore, it is found that introducing an additional adhesion‐promoting layer on the standard UHPBF stack reduces WVTRs by a factor of 5 compared to barriers without it. Finally, barriers are used for sealing and encapsulation of perovskite solar cells (PSCs) enabling the extraction of a relationship between WVTRs of barrier/adhesive systems and degradation rates (DR) of PSCs. DR fall exponentially when WVTRs decrease from 101 to 10−3 g m−2 d−1. Outside that range any gains or losses are mitigated by tailing of the sigmoid curve relating the two parameters. Results highlight important factors which will help those developing strategies relating to encapsulation, barrier, adhesive and sealant systems and stable optoelectronic devices on glass and flexible substrates.
科研通智能强力驱动
Strongly Powered by AbleSci AI