Sung Hun JinJongmin ShinIn-Tak ChoSang Youn HanDong Joon LeeChi Hwan LeeJong‐Ho LeeJohn A. Rogers
This paper presents materials, device designs, and physical/electrical characteristics of a form of nanotube electronics that is physically transient, in the sense that all constituent elements dissolve and/or disperse upon immersion into water. Studies of contact effects illustrate the ability to use water soluble metals such as magnesium for source/drain contacts in nanotube based field effect transistors. High mobilities and on/off ratios in transistors that use molybdenum, silicon nitride, and silicon oxide enable full swing characteristics for inverters at low voltages (∼5 V) and with high gains (∼30). Dissolution/disintegration tests of such systems on water soluble sheets of polyvinyl alcohol demonstrate physical transience within 30 min.
Masashi ShiraishiTaishi TakenobuYoshihiro IwasaTaisuke IwaiHiromichi KatauraMasafumi Ata
Masashi ShiraishiTaishi TakenobuToshinori IwaiYoshihiro IwasaHiromichi KatauraMasafumi Ata
Noh‐Hwal ParkSeung‐Hoon LeeSeung-Hyeon JeongDongyoon KhimYun Ho KimSungmi YooYong‐Young NohJang‐Joo Kim
Ryo NouchiHaruo TomitaAkio OguraHiromichi KatauraMasashi Shiraishi
Dongjoon RheeKwan‐Ho KimJeffrey ZhengSeunguk SongLian‐Mao PengRoy H. OlssonJoohoon KangDeep Jariwala