Sheng-Bo WangMing-Shien HuShoou‐Jinn ChangCheong-Wei ChongHsieh‐Cheng HanBohr-Ran HuangLi–Chyong ChenKuei‐Hsien Chen
We report the enhanced electrical conductivity properties of single gold-peapodded amorphous silica nanowires synthesized using microwave plasma enhanced chemical vapor deposition. Dark conductivity of the gold-peapodded silica nanowires can be adjusted by controlling the number of incorporated metal nanoparticles. The temperature-dependent conductivity measurement reveals that the band tail hopping mechanism dominates the electron transport in the gold-peapodded silica nanowires. The high conductivity in the nano-peapodded nanowires with more embedded gold-nanoparticles can be explained by the higher density of hopping states and shorter hopping distance. These Au-embedded amorphous silica nanowires have provided a new approach to enhance not only the electron conduction, but also the chemical-sensor response/sensitivity.
Sheng-Bo WangYi-Fan HuangSurojit ChattopadhyayShoou‐Jinn ChangRuei‐San ChenCheong-Wei ChongMing-Shien HuLi–Chyong ChenKuei‐Hsien Chen
Vu Thanh CongErdene‐Ochir GanboldJoyanta K. SahaJoonkyung JangJunhong MinJaebum ChooSe Hoon KimNam Woong SongSang Jun SonSang Bok LeeSang‐Woo Joo
Sabine GruberRobin N. Klupp TaylorHanne ScheelPeter GreilCordt Zollfrank
Ming-Shien HuHsin-Li ChenChing-Hsing ShenLu‐Sheng HongBohr‐Ran HuangKuei‐Hsien ChenLi–Chyong Chen
Gloria Pelayo-PunzanoRocío JuradoMiguel López‐HaroRafael CuestaJosé J. CalvinoJosé M. Domínguez‐VeraNatividad Gálvez