Reversible and Continuous Latching Using a Carbon Internanotube Interface

  • Eun, Youngkee; 
  • Choi, Jungwook; 
  • Lee, Jae-Ik; 
  • Na, Hyungjoo; 
  • Baek, Dae-hyun; 
  • 외 2명
Citations

WEB OF SCIENCE

3
Citations

SCOPUS

3

초록

Mechanical multistability is greatly beneficial in microelectromechanical systems because it offers multiple stable positioning of movable microstructures without a continuous energy supply. Although mechanical latching components based on multistability have been widely used in microsystems, their latching positions are inherently discrete and the number of stable positions is quite limited because of the lithographical minimum feature size limit of microstructures. We report a novel use of aligned carbon nanotube (CNT) arrays as latching elements in a movable micromechanical device. This CNT-array-based latching mechanism allows stable latching at multiple latching positions, together with reversible and bidirectional latching capabilities. The latching element with integrated CNTs on the sidewalls of microstructures can be adopted for diverse microelectromechanical systems that need precise positioning of movable structures without the necessity of continuous power consumption.

키워드

carbon nanotube; internanotube interface; adhesion; multistability; VARIABLE CAPACITORS; NANOTUBE ARRAYS; ADHESIVE; STRENGTH; CONTACT; GROWTH; FORCE
제목
Reversible and Continuous Latching Using a Carbon Internanotube Interface
저자
Eun, Youngkee; Choi, Jungwook; Lee, Jae-Ik; Na, Hyungjoo; Baek, Dae-hyun; Kim, Min-Ook; Kim, Jongbaeg
DOI
10.1021/am401777u
발행일
2013-08
유형
Article
저널명
ACS Applied Materials & Interfaces
권
5
호
15
페이지
7465 ~ 7469