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Enhanced adhesion for LIGA microfabrication by using a buffer layer (open access)

Enhanced adhesion for LIGA microfabrication by using a buffer layer

The present invention is an improvement on the LIGA microfabrication process wherein a buffer layer is applied to the upper or working surface of a substrate prior to the placement of a resist onto the surface of the substrate. The buffer layer is made from an inert low-Z material (low atomic weight), a material that absorbs secondary X-rays emissions from the substrate that are generated from the substrate upon exposure to a primary X-rays source. Suitable materials for the buffer layer include polyamides and polyimide. The preferred polyimide is synthesized from pyromellitic anhydride and oxydianiline (PMDA-ODA).
Date: May 22, 1998
Creator: Bajikar, Sateesh S.; DeCarlo, Francesco & Song, Joshua J.
System: The UNT Digital Library
Titanium Carbide Bipolar Plate for Electrochemical Devices (open access)

Titanium Carbide Bipolar Plate for Electrochemical Devices

Titanium carbide comprises a corrosion resistant, electrically conductive, non-porous bipolar plate for use in an electrochemical device. The process involves blending titanium carbide powder with a suitable binder material, and molding the mixture, at an elevated temperature and pressure.
Date: May 8, 1998
Creator: LaConti, Anthony B.; Griffith, Arthur E.; Cropley, Cecelia C. & Kosek, John A.
System: The UNT Digital Library
Cyanoethylated Compounds as Additives in Lithium/Lithium Ion Batteries (open access)

Cyanoethylated Compounds as Additives in Lithium/Lithium Ion Batteries

The power loss of lithium/lithium ion battery cells is significantly reduced, especially at low temperatures, when about 1% by weight of an additive is incorporated in the electrolyte layer of the cells. The usable additives are organic solvent soluble cyanoethylated polysaccharides and poly(vinyl alcohol). The power loss decrease results primarily from the decrease in the charge transfer resistance at the interface between the electrolyte and the cathode.
Date: May 8, 1998
Creator: Nagasubramanian, Ganesan
System: The UNT Digital Library