Monreal-Bernal Alfonso, Vilatela Juan J
IMDEA Materials Institute, Eric Kandel 2, Getafe, Madrid, 28906, Spain.
Universidad Politécnica de Madrid, E.T.S. de Ingenieros de Caminos, 28040, Madrid, Spain.
Chempluschem. 2018 Apr;83(4):285-293. doi: 10.1002/cplu.201700522. Epub 2018 Feb 9.
In this study, large-area (10 cm ) samples of heterojunctions between zinc oxide and carbon nanotube (CNT) fibre arrays were synthesised. A two-step hydrothermal treatment was used to grow Zn nanowires (NWs) in situ directly onto the CNT array. This resulted in a bulk heterojunction that consisted of a five-micron layer of ZnO crystals in contact with the built-in CNT fabric current collector, with preferential orientation of the ZnO c axis perpendicular to the CNT sheet. The electrical properties of the heterojunction corresponded to a Schottky junction with a barrier height of 0.26 eV and an ideality factor of 2.9. Photoconductivity measurements indicated charge transfer through the ZnO/CNT interface, thus leading to a gain factor of approximately 100 and a responsivity as high as 5000 mA w under UV irradiation. The resulting ZnO/CNT fibre hybrid was both piezoresistive and piezoelectric under transverse compression with an attractive format for energy-harvesting applications.
在本研究中,合成了大面积(10平方厘米)的氧化锌与碳纳米管(CNT)纤维阵列之间的异质结样品。采用两步水热法将锌纳米线(NWs)原位直接生长在CNT阵列上。这形成了一种体相异质结,其由与内置CNT织物集流体接触的五微米厚的ZnO晶体层组成,ZnO的c轴优先垂直于CNT片层取向。该异质结的电学性质对应于一个势垒高度为0.26 eV、理想因子为2.9的肖特基结。光电导测量表明电荷通过ZnO/CNT界面转移,从而在紫外线照射下产生约100的增益因子和高达5000 mA W的响应度。所得的ZnO/CNT纤维混合物在横向压缩下兼具压阻和压电特性,是能量收集应用的一种有吸引力的形式。