Department of Physics, National University of Singapore, Singapore.
Small. 2012 May 7;8(9):1423-8. doi: 10.1002/smll.201101967. Epub 2012 Feb 29.
Making electronic devices using a single molecule has been the ultimate goal of molecular electronics. For binary data storage in particular, the challenge has been the ability to switch a single molecule in between bistable states in a simple and repeatable manner. The reversible switching of single molecules of chloroaluminum phthalocyanine (ClAlPc) dipolar molecules within a close-packed monolayer is demonstrated. By pulsing an scanning tunneling microscopy tip, read-write operations of single-molecular binary bits at 40 Tb/cm(2) (250 Tb/in(2)) are demonstrated.
使用单个分子制造电子设备一直是分子电子学的最终目标。对于二进制数据存储而言,特别具有挑战性的是能够以简单且可重复的方式在双稳态之间切换单个分子。现已证明,在紧密堆积的单层内,氯铝酞菁(ClAlPc)偶极分子的单个分子可以可逆切换。通过脉冲扫描隧道显微镜探针,可以在40 Tb/cm²(250 Tb/in²)的密度下实现单个分子二进制位的读写操作。