High-resolution profiling of the polyimide-polyimide interface
Journal
Macromolecules
Journal Volume
29
Journal Issue
21
Pages
6880-6891
Date Issued
1996
Author(s)
Stoffel, N. C.
Dai, C. A.
Kramer, E. J.
Russell, T. P.
Deline, V.
Volksen, W.
Wu, W. L.
Satija, S.
Abstract
Dynamic secondary ion mass spectrometry (SIMS), nuclear reaction analysis, and neutron reflectometry were used to profile polyimide−polyimide interfaces. For interfaces between two layers of poly(4,4‘-oxydiphenylene−pyromellitimide) (PMDA−ODA) polyimide it was determined that the interfacial fracture energy Gc and the interfacial width depended primarily upon the imide fraction, f, of the base layer. For f 0.9. The PMDA−ODA/PMDA−ODA interface formed with a fully imidized base layer was ∼30 Å in width, whereas that formed when f = 0.9 was ∼80 Å in width. The interface formed during the spin-casting process did not broaden significantly after annealing at 400 °C. We also investigated the interface between a more flexible thermoplastic polyimide poly(4,4‘-oxydiphenylene−oxydiphthalimide) (ODPA−ODA) and a fully imidized PMDA−ODA layer. The shape of the ODPA−ODA/PMDA−ODA interface was found to depend upon annealing temperature. Unannealed samples and samples annealed at 350 °C could be fit with an error function, and the interfacial width was ∼50 Å. Samples annealed at 400 and 450 °C were best fit by a fairly sharp interfacial profile with ODPA−ODA tails proceeding into the PMDA−ODA layer. The volume fraction of the ODPA−ODA in the PMDA−ODA depended upon the annealing temperature Tann. The Gc of the ODPA−ODA/PMDA−ODA interface appears limited by the solubility of ODPA−ODA in PMDA−ODA.
SDGs
Type
journal article
