International audienceSilicon nanowire (SiNW) charge based biosensors are attractive for DNA sensing applications due to their compactness and large surface-to-volume ratio. Small feature size, low production cost, repeatability, high sensitivity and selectivity are some of the key requirements for biosensors. The most common e-beam manufacturing method employed to manufacture sub-nm SiNWs is both cost and time intensive. Therefore, we propose a highly reproducible CMOS industry grade low-cost process to fabricate SiNW-based field effect transistors on 4''-wafers. The 60 nm wide SiNWs reported in this paper are fabricated using the sidewall transfer lithography process which is a self-aligned-double-patterning I-line lithography process tha...
International audience1D silicon nanowires (SiNW) are attractive for charge based DNA sensing applic...
International audience1D silicon nanowires (SiNW) are attractive for charge based DNA sensing applic...
International audience1D silicon nanowires (SiNW) are attractive for charge based DNA sensing applic...
International audienceSilicon nanowire (SiNW) charge based biosensors are attractive for DNA sensing...
International audienceSilicon nanowire (SiNW) charge based biosensors are attractive for DNA sensing...
International audienceSilicon nanowire (SiNW) charge based biosensors are attractive for DNA sensing...
International audienceSilicon nanowire (SiNW) charge based biosensors are attractive for DNA sensing...
International audienceSilicon nanowire (SiNW) charge based biosensors are attractive for DNA sensing...
International audienceSilicon nanowire (SiNW) charge based biosensors are attractive for DNA sensing...
International audienceSilicon nanowire (SiNW) charge based biosensors are attractive for DNA sensing...
International audienceSilicon nanowire (SiNW) charge based biosensors are attractive for DNA sensing...
International audience1D silicon nanowires (SiNW) are attractive for charge based DNA sensing applic...
International audience1D silicon nanowires (SiNW) are attractive for charge based DNA sensing applic...
International audience1D silicon nanowires (SiNW) are attractive for charge based DNA sensing applic...
International audience1D silicon nanowires (SiNW) are attractive for charge based DNA sensing applic...
International audience1D silicon nanowires (SiNW) are attractive for charge based DNA sensing applic...
International audience1D silicon nanowires (SiNW) are attractive for charge based DNA sensing applic...
International audience1D silicon nanowires (SiNW) are attractive for charge based DNA sensing applic...
International audienceSilicon nanowire (SiNW) charge based biosensors are attractive for DNA sensing...
International audienceSilicon nanowire (SiNW) charge based biosensors are attractive for DNA sensing...
International audienceSilicon nanowire (SiNW) charge based biosensors are attractive for DNA sensing...
International audienceSilicon nanowire (SiNW) charge based biosensors are attractive for DNA sensing...
International audienceSilicon nanowire (SiNW) charge based biosensors are attractive for DNA sensing...
International audienceSilicon nanowire (SiNW) charge based biosensors are attractive for DNA sensing...
International audienceSilicon nanowire (SiNW) charge based biosensors are attractive for DNA sensing...
International audienceSilicon nanowire (SiNW) charge based biosensors are attractive for DNA sensing...
International audience1D silicon nanowires (SiNW) are attractive for charge based DNA sensing applic...
International audience1D silicon nanowires (SiNW) are attractive for charge based DNA sensing applic...
International audience1D silicon nanowires (SiNW) are attractive for charge based DNA sensing applic...
International audience1D silicon nanowires (SiNW) are attractive for charge based DNA sensing applic...
International audience1D silicon nanowires (SiNW) are attractive for charge based DNA sensing applic...
International audience1D silicon nanowires (SiNW) are attractive for charge based DNA sensing applic...
International audience1D silicon nanowires (SiNW) are attractive for charge based DNA sensing applic...