JOURNAL ARTICLE

MICROMILLING OF TUNGSTEN CARBIDE USING FOCUSED ION BEAM

Afifah Mohd AliAndrew OngMohamed KonnehSelangor Darul Ehsan

Year: 2005 Journal:   IUCrData Vol: 6 (Pt 12)Pages: x211259-x211259   Publisher: International Union of Crystallography

Abstract

The title compound, [RuCl2(C10H14)(C21H21O3P)], crystallizes with two complex mol-ecules in the asymmetric unit. The RuII atom has a classical three-legged piano-stool environment being coordinated by a cymene ligand [Ru-centroid = 1.707 (2)/1.704 (2) Å], a tris-(4-meth-oxy-phen-yl)phosphane ligand [Ru-P = 2.3629 (15)/2.3665 (15) Å] and two chloride atoms with the Ru-Cl bonds adopting two distinct values of 2.4068 (16)/2.4167 (16) and 2.4016 (15)/2.4244 (16) Å. The effective cone and solid angles for the phosphane ligands were calculated to be 149.5/150.2° and 25.3/25.6°, respectively. In the crystal, weak C-H⋯Cl/O/π inter-actions are observed. The crystal was refined as a two-component twin.

Keywords:
Tungsten carbide Materials science Tungsten Dwell time Focused ion beam Carbide Fabrication Ion beam Aperture (computer memory) Ion Metallurgy Beam (structure) Composite material Mechanical engineering Structural engineering Engineering Chemistry

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Citation History

Topics

Nanofabrication and Lithography Techniques
Physical Sciences →  Engineering →  Biomedical Engineering
Advanced Surface Polishing Techniques
Physical Sciences →  Engineering →  Biomedical Engineering
Force Microscopy Techniques and Applications
Physical Sciences →  Physics and Astronomy →  Atomic and Molecular Physics, and Optics

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