@article{Chang2019, 
author = {Pang-Chia Chang and Chia-Yu Chang and Wen-Bin Jian and Chiun-Jye Yuan and Yu-Chang Chen and Chia-Ching Chang},
title = {The fabrication and application of Ni-DNA nanowire-based nanoelectronic devices},
year = {2019},
journal = {Nano Research},
volume = {12},
number = {6},
pages = {1293-1300},
keywords = {DNA-guided nickel ion chain (Ni-DNA), negative differential resistance (NDR), memristive system, memcapacitive system, nanowire},
url = {https://www.sciopen.com/article/10.1007/s12274-019-2363-2},
doi = {10.1007/s12274-019-2363-2},
abstract = {DNA is a self-assembled, double stranded natural molecule that can chelate and align nickel ions between its base pairs. The fabrication of a DNA-guided nickel ion chain (Ni-DNA) device was successful, as indicated by the conducting currents exhibiting a Ni ion redox reaction-driven negative differential resistance effect, a property unique to mem-elements (1). The redox state of nickel ions in the Ni-DNA device is programmable by applying an external bias with different polarities and writing times (2). The multiple states of Ni-DNA-based memristive and memcapacitive systems were characterized (3). As such, the development of Ni-DNA nanowire device-based circuits in the near future is proposed.}
}