Fucetola Corey P, Wang Justin T, Bolonduro Olurotimi A, Lieber Charles M, Timko Brian P
Department of Biomedical Engineering, Tufts University, Medford, Massachusetts 02155, United States.
Lieber Research Group, Lexington, Massachusetts 02420, United States.
ACS Nano. 2024 Jan 30;18(4):3775-3782. doi: 10.1021/acsnano.3c11841. Epub 2024 Jan 16.
We report a general approach for the synthesis of single-crystal silicon nanotubes, involving epitaxial deposition of silicon shells on germanium nanowire templates followed by removal of the germanium template by selective wet etching. By exploiting advances in the synthesis of germanium nanowires, we were able to rationally tune the nanotube internal diameters (5-80 nm), wall thicknesses (3-12 nm), and taper angles (0-9°) and additionally demonstrated branched silicon nanotube networks. Field effect transistors fabricated from p-type nanotubes exhibited a strong gate effect, and fluid transport experiments demonstrated that small molecules could be electrophoretically driven through the nanotubes. These results demonstrate the suitability of silicon nanotubes for the design of nanoelectrofluidic devices.
我们报道了一种合成单晶硅纳米管的通用方法,该方法包括在锗纳米线模板上外延沉积硅壳,然后通过选择性湿法蚀刻去除锗模板。通过利用锗纳米线合成方面的进展,我们能够合理地调节纳米管的内径(5 - 80纳米)、壁厚(3 - 12纳米)和锥角(0 - 9°),此外还展示了分支硅纳米管网络。由p型纳米管制造的场效应晶体管表现出很强的栅极效应,流体传输实验表明小分子可以通过纳米管进行电泳驱动。这些结果证明了硅纳米管适用于纳米电流体装置的设计。