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The presence and homogeneous distribution of the polymeric material inside the membrane is confirmed by Raman spectroscopy and line microanalysis.
The chemical structure of the 6F-s-bSPI membrane is confirmed by ATR-FTIR and 1H NMR spectra.
The presence of a Si/S intensity ratio profile with a maximum located near the center of the membrane is confirmed by point-by-point EDX measurements along the thickness of the membrane.
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Confirmation of C3d deposition onto the RBC membrane was confirmed by incubating C3d+ RBC with a primary anti-human C3d at a dilution of 1∶100 followed by a wash and incubation with a secondary mouse anti-human-FITC at a dilution of 1∶200.
However, the proliferation of cells adjacent to the membrane was confirmed.
The membrane was confirmed to be stable during a series of experiments.
Structures of blend and Schiff-base membrane were confirmed by the FT i.r.r
The membranes were characterized and the stability of the catalytic composite membrane was confirmed by consecutive experiments.
Furthermore, the formation of a continuous monolayer of cells attached on the blended membrane was confirmed by H&E staining.
The presence of sulfonic acid group in M4 membrane was confirmed by the characteristic asymmetric and symmetric S=O stretching vibrations at 1,145 and 1,030 cm−1.
The stress distribution of the above mentioned components was numerically simulated by finite element analysis and the stress magnitude for the membrane was confirmed using pressure films.
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