Majima Yutaka, Hackenberger Guillaume, Azuma Yasuo, Kano Shinya, Matsuzaki Kosuke, Susaki Tomofumi, Sakamoto Masanori, Teranishi Toshiharu
Laboratory for Materials and Structures, Tokyo Institute of Technology, Yokohama, Japan.
Materials Research Center for Element Strategy, Tokyo Institute of Technology, Yokohama, Japan.
Sci Technol Adv Mater. 2017 May 31;18(1):374-380. doi: 10.1080/14686996.2017.1320190. eCollection 2017.
Single-electron transistors (SETs) are sub-10-nm scale electronic devices based on conductive Coulomb islands sandwiched between double-barrier tunneling barriers. Chemically assembled SETs with alkanethiol-protected Au nanoparticles show highly stable Coulomb diamonds and two-input logic operations. The combination of bottom-up and top-down processes used to form the passivation layer is vital for realizing multi-gate chemically assembled SET circuits, as this combination enables us to connect conventional complementary metal oxide semiconductor (CMOS) technologies via planar processes. Here, three-input gate exclusive-OR (XOR) logic operations are demonstrated in passivated chemically assembled SETs. The passivation layer is a hybrid bilayer of self-assembled monolayers (SAMs) and pulsed laser deposited (PLD) aluminum oxide (AlO[Formula: see text]), and top-gate electrodes were prepared on the hybrid passivation layers. Top and two-side-gated SETs showed clear Coulomb oscillation and diamonds for each of the three available gates, and three-input gate XOR logic operation was clearly demonstrated. These results show the potential of chemically assembled SETs to work as logic devices with multi-gate inputs using organic and inorganic hybrid passivation layers.
单电子晶体管(SETs)是基于夹在双势垒隧穿势垒之间的导电库仑岛的亚10纳米级电子器件。具有烷硫醇保护的金纳米颗粒的化学组装SETs表现出高度稳定的库仑菱形和双输入逻辑运算。用于形成钝化层的自下而上和自上而下工艺的结合对于实现多栅极化学组装SET电路至关重要,因为这种结合使我们能够通过平面工艺连接传统的互补金属氧化物半导体(CMOS)技术。在此,在钝化的化学组装SETs中展示了三输入门异或(XOR)逻辑运算。钝化层是自组装单分子层(SAMs)和脉冲激光沉积(PLD)氧化铝(AlO[公式:见正文])的混合双层,并且在混合钝化层上制备了顶栅电极。顶栅和双侧栅SETs对于三个可用栅极中的每一个都显示出清晰的库仑振荡和菱形,并且清楚地展示了三输入门XOR逻辑运算。这些结果表明,使用有机和无机混合钝化层的化学组装SETs作为具有多栅极输入的逻辑器件的潜力。