FABRICATION OF 2- AND 3-DIMENSIONAL NANOSTRUCTURES

Author:

Jiang Hong1,Borca Camelia N.2,Xu Bo2,Robertson Brian W.1

Affiliation:

1. Department of Mechanical Engineering and the Center for Materials Research and Analysis, Walter Scott Engineering Center, University of Nebraska, Lincoln, Nebraska 68588-0656, USA

2. Department of Physics and Astronomy and the Center for Materials Research and Analysis, Behlen Laboratory of Physics, University of Nebraska, Lincoln, Nebraska 68588-0111, USA

Abstract

Amongst tools for fabricating periodic and aperiodic nanostructures and nanodevices, electron beam-induced organometallic chemical vapor deposition (E-OMCVD) offers a highly flexible and controllable one-step deposition process. E-OMCVD enables maskless fabrication of nanoscale research and custom structures that have least dimensions near or below 10nm – a scale at which other methods prove difficult or costly. Using the focused electron beam in a modified HB501 field-emission scanning transmission electron microscope (STEM), pads and wires with uniform thickness and well-defined shapes have been defined and deposited. Although conditions for fabricating the smallest deposits have not yet been optimized, the edge acuity (sharpness) of the deposits is consistently as low as 4nm or less and the corresponding smallest wire width is 8nm. Under different deposition conditions, three-dimensional open structured nanonetworks have been fabricated. Results of an investigation of E-OMCVD parameters are presented for the metallocene compound, nickelocene (Ni(C5H5 )2), as source organometallic.

Publisher

World Scientific Pub Co Pte Lt

Subject

Condensed Matter Physics,Statistical and Nonlinear Physics

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