Abstract:
PROBLEM TO BE SOLVED: To provide a substrate where the size of a molecule binding to a ligand is controlled, and preferably conical compound is bound. SOLUTION: An application of a substrate is disclosed, which includes a molecular film of dendrimer macromolecule in which the size of a uniform spacer is controlled, which includes a polymer including a branched portion and a linear portion, wherein abundant terminals of the branched potion bind to the substrate and the terminal of the linear portion is functionalized. COPYRIGHT: (C)2010,JPO&INPIT
Abstract:
The present application discloses a substrate that includes a molecular laye r of regularly spaced size-controlled macromolecules comprising a polymer comprising branched and linear regions in which a plurality of termini on th e branched region are bound to the substrate, and a terminus of the linear region is functionalized.
Abstract:
The present application discloses a substrate that includes a molecular layer of regularly spaced size-controlled macromolecules comprising a polymer comprising branched and linear regions in which a plurality of termini on the branched region are bound to the substrate, and a terminus of the linear region is functionalized.
Abstract:
A method for nano-scale high resolution patterning of self-assembled monolayer using soft X-rays is provided. The method involves forming an aromatic imine molecular layer having substituents at its terminal rings on a substrate, selectively cleaving bonds to the subsituents of the aromatic imine molecular layer, and hydrolyzing the aromatic imine molecular layer
Abstract:
A method for high resolution patterming using low-energy electron beam and a method for manufacturing a nano device using the high resolution pattern are provided. The method involves forming an aromatic imine molecular layer having a substituted or unsubstituted terminal ring on a substrate; selectively changing imine bonds structurally in the aromatic imine molecular layer, and hydrolyzing the aromatic imine molecular layer.