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(c) Wet transfer to new Si host.
Transfer of graphene onto BMN/graphene/Cu was performed by a wet transfer technique.
(c) Wet transfer of a released membrane from the original handling substrate to a new host surface.
The ridges and cracks formed on the graphene surface during the wet transfer processes can be also distinctly observed.
Moreover, surface defects, wrinkles, and impurities may arise during the wet transfer process of graphene.
The proteins were separated on a 4%to20%0% polyacrylamide gradient gel and then transferred to nitrocellulose membranes using a wet transfer method.
e, Charge density of the graphene FETs fabricated using conventional wet transfer (black) method and dry transfer with PVP adhesive layer (red).
d, Transfer characteristics (IDS-VGS) of the graphene FETs fabricated using conventional wet transfer (black) method and dry transfer with PVP adhesive layer (red).
An extra sensor measuring the gas temperature and the humidity at the wet transfer line would increase the accuracy of the calculations.
Gels were transferred to nitrocellulose membranes (Amersham®) according to standard wet transfer procedure.
The proteins were transferred onto a PVDF membrane (BioRad) using wet transfer.
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