Invention Application
- Patent Title: METHODS OF ETCHING ARTICLES VIA MICROCONTACT PRINTING
- Patent Title (中): 通过微波打印消除文章的方法
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Application No.: US12187070Application Date: 2008-08-06
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Publication No.: US20090001049A1Publication Date: 2009-01-01
- Inventor: George M. Whitesides , Younan Xia , James L. Wilbur , Rebecca J. Jackman , Enoch Kim , Mara G. Prentiss , Milan Mrksich , Amit Kumar , Christopher B. Gorman , Hans Biebuyck , Karl K. Berggren
- Applicant: George M. Whitesides , Younan Xia , James L. Wilbur , Rebecca J. Jackman , Enoch Kim , Mara G. Prentiss , Milan Mrksich , Amit Kumar , Christopher B. Gorman , Hans Biebuyck , Karl K. Berggren
- Applicant Address: US MA Cambridge
- Assignee: President and Fellows of Harvard College
- Current Assignee: President and Fellows of Harvard College
- Current Assignee Address: US MA Cambridge
- Main IPC: C03C15/00
- IPC: C03C15/00

Abstract:
Improved methods of forming a patterned self-assembled monolayer on a surface and derivative articles are provided. According to one method, an elastomeric stamp is deformed during and/or prior to using the stamp to print a self-assembled molecular monolayer on a surface. According to another method, during monolayer printing the surface is contacted with a liquid that is immiscible with the molecular monolayer-forming species to effect controlled reactive spreading of the monolayer on the surface. Methods of printing self-assembled molecular monolayers on nonplanar surfaces and derivative articles are provided, as are methods of etching surfaces patterned with self-assembled monolayers, including methods of etching silicon. Optical elements including flexible diffraction gratings, mirrors, and lenses are provided, as are methods for forming optical devices and other articles using lithographic molding. A method for controlling the shape of a liquid on the surface of an article is provided, involving applying the liquid to a self-assembled monolayer on the surface, and controlling the electrical potential of the surface.
Public/Granted literature
- US07875197B2 Methods of etching articles via microcontact printing Public/Granted day:2011-01-25
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