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Self-propelled supramolecular nanomotors with temperature-responsive speed regulation

Authors :
Tu, Yingfeng
Peng, F.
Sui, X.
Men, Y.
White, P.B.
van Hest, J.C.M.
Wilson, D.A.
Tu, Yingfeng
Peng, F.
Sui, X.
Men, Y.
White, P.B.
van Hest, J.C.M.
Wilson, D.A.
Source :
Nature Chemistry vol.9 (2017) date: 2017-05-09 nr.5 p.480-486 [ISSN 1755-4330]
Publication Year :
2017

Abstract

Self-propelled catalytic micro- and nanomotors have been the subject of intense study over the past few years, but it remains a continuing challenge to build in an effective speed-regulation mechanism. Movement of these motors is generally fully dependent on the concentration of accessible fuel, with propulsive movement only ceasing when the fuel consumption is complete. Here we report a demonstration of control over the movement of self-assembled stomatocyte nanomotors via a molecularly built, stimulus-responsive regulatory mechanism. A temperature-sensitive polymer brush is chemically grown onto the nanomotor, whereby the opening of the stomatocytes is enlarged or narrowed on temperature change, which thus controls the access of hydrogen peroxide fuel and, in turn, regulates movement. To the best of our knowledge, this represents the first nanosized chemically driven motor for which motion can be reversibly controlled by a thermally responsive valve/brake. We envision that such artificial responsive nanosystems could have potential applications in controllable cargo transportation.

Details

Database :
OAIster
Journal :
Nature Chemistry vol.9 (2017) date: 2017-05-09 nr.5 p.480-486 [ISSN 1755-4330]
Notes :
Tu, Yingfeng
Publication Type :
Electronic Resource
Accession number :
edsoai.on1359182595
Document Type :
Electronic Resource