Jeng-Tzong Sheu

Affiliations: 
Institute of Nanotechnology National Chao Tung University (Taiwan) 
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"Jeng-Tzong Sheu"
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Publications

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Chen C, Lin R, Chiang L, et al. (2019) Junctionless gate-all-around nanowire field-effect transistors with an extended gate in biomolecule detection Japanese Journal of Applied Physics. 58: 027001
Lin RZ, Cheng KY, Pan FM, et al. (2017) Selective deposition of multiple sensing materials on Si nanobelt devices through plasma-enhanced chemical vapor deposition and device-localized Joule heating. Acs Applied Materials & Interfaces
Tso C, Liu T, Pan F, et al. (2017) Temperature- and doping-concentration-dependent characteristics of junctionless gate-all-around polycrystalline-silicon thin-film transistors Japanese Journal of Applied Physics. 56: 04CD14
Tran NA, Pan FM, Sheu JT. (2016) Hydrogen gas sensors from polysilicon nanobelt devices selectively modified with sensing materials. Nanotechnology. 27: 505604
Sang CH, Chou SJ, Pan FM, et al. (2016) Fluorescence enhancement and multiple protein detection in ZnO nanostructure microfluidic devices. Biosensors & Bioelectronics. 75: 285-92
Tso C, Liu T, Sheu J. (2015) Gate-all-around poly-Si nanowire junctionless thin-film transistors with multiple channels Japanese Journal of Applied Physics. 54: 06FG06
Liu T, Pan F, Sheu J. (2015) Characteristics of Gate-All-Around Junctionless Polysilicon Nanowire Transistors With Twin 20-nm Gates Ieee Journal of the Electron Devices Society. 3: 405-409
Lai CY, Chien TC, Lin TY, et al. (2014) Intensify the application of ZnO-based nanodevices in humid environment: O2/H2 plasma suppressed the spontaneous reaction of amorphous ZnO nanowires. Nanoscale Research Letters. 9: 281
Liu HH, Lin TH, Sheu J. (2014) Enhancement of detection by selective modification of silicon nanobelt field-effect transistors via localized Joule heating Sensors and Actuators B: Chemical. 192: 111-116
Liu HH, Lin TH, Sheu JT. (2013) Self-assembled monolayer-based selective modification on polysilicon nanobelt devices. Acs Applied Materials & Interfaces. 5: 10048-53
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