Literature DB >> 23153409

Autonomous movement of controllable assembled Janus capsule motors.

Yingjie Wu1, Zhiguang Wu, Xiankun Lin, Qiang He, Junbai Li.   

Abstract

We demonstrate the first example of a self-propelled Janus polyelectrolyte multilayer hollow capsule that can serve as both autonomous motor and smart cargo. This new autonomous Janus capsule motor composed of partially coated dendritic platinum nanoparticles (Pt NPs) was fabricated by using a template-assisted layer-by-layer (LbL) self-assembly combined with a microcontact printing method. The resulting Janus capsule motors still retain outstanding delivery capacities and can respond to external stimuli for controllable encapsulation and triggered release of model drugs. The Pt NPs on the one side of the Janus capsule motors catalytically decompose hydrogen peroxide fuel, generating oxygen bubbles which then recoil the movement of the capsule motors in solution or at an interface. They could autonomously move at a maximum speed of above 1 mm/s (over 125 body lengths/s), while exerting large forces exceeding 75 pN. Also, these asymmetric hollow capsules can be controlled by an external magnetic field to achieve directed movement. This LbL-assembled Janus capsule motor system has potential in making smart self-propelling delivery systems.

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Year:  2012        PMID: 23153409     DOI: 10.1021/nn304335x

Source DB:  PubMed          Journal:  ACS Nano        ISSN: 1936-0851            Impact factor:   15.881


  24 in total

1.  Self-propelled supramolecular nanomotors with temperature-responsive speed regulation.

Authors:  Yingfeng Tu; Fei Peng; Xiaofeng Sui; Yongjun Men; Paul B White; Jan C M van Hest; Daniela A Wilson
Journal:  Nat Chem       Date:  2016-12-12       Impact factor: 24.427

Review 2.  Engineering Active Micro and Nanomotors.

Authors:  Mingwei Liu; Kun Zhao
Journal:  Micromachines (Basel)       Date:  2021-06-11       Impact factor: 2.891

3.  Magnetically-responsive silica-gold nanobowls for targeted delivery and SERS-based sensing.

Authors:  Alexander H Mo; Preston B Landon; Karla Santacruz Gomez; Heemin Kang; Joon Lee; Chen Zhang; Woraphong Janetanakit; Vrinda Sant; Tianyu Lu; David A Colburn; Siddhartha Akkiraju; Samuel Dossou; Yue Cao; Kuo-Fen Lee; Shyni Varghese; Gennadi Glinsky; Ratnesh Lal
Journal:  Nanoscale       Date:  2016-06-09       Impact factor: 7.790

4.  Stimuli-responsive nanomaterials for biomedical applications.

Authors:  Angela P Blum; Jacquelin K Kammeyer; Anthony M Rush; Cassandra E Callmann; Michael E Hahn; Nathan C Gianneschi
Journal:  J Am Chem Soc       Date:  2015-02-06       Impact factor: 15.419

5.  Electroformation of Janus and patchy capsules.

Authors:  Zbigniew Rozynek; Alexander Mikkelsen; Paul Dommersnes; Jon Otto Fossum
Journal:  Nat Commun       Date:  2014-05-23       Impact factor: 14.919

6.  Redox-Sensitive Stomatocyte Nanomotors: Destruction and Drug Release in the Presence of Glutathione.

Authors:  Yingfeng Tu; Fei Peng; Paul B White; Daniela A Wilson
Journal:  Angew Chem Int Ed Engl       Date:  2017-05-22       Impact factor: 15.336

7.  Biodegradable Hybrid Stomatocyte Nanomotors for Drug Delivery.

Authors:  Yingfeng Tu; Fei Peng; Alain A M André; Yongjun Men; Mangala Srinivas; Daniela A Wilson
Journal:  ACS Nano       Date:  2017-02-14       Impact factor: 15.881

8.  Influence of Asymmetry and Driving Forces on the Propulsion of Bubble-Propelled Catalytic Micromotors.

Authors:  Masayuki Hayakawa; Hiroaki Onoe; Ken H Nagai; Masahiro Takinoue
Journal:  Micromachines (Basel)       Date:  2016-12-14       Impact factor: 2.891

9.  A Supramolecular Approach to Nanoscale Motion: Polymersome-Based Self-Propelled Nanomotors.

Authors:  Isamar Ortiz-Rivera; Motilal Mathesh; Daniela A Wilson
Journal:  Acc Chem Res       Date:  2018-09-04       Impact factor: 22.384

10.  Reversed Janus Micro/Nanomotors with Internal Chemical Engine.

Authors:  Xing Ma; Seungwook Jang; Mihail N Popescu; William E Uspal; Albert Miguel-López; Kersten Hahn; Dong-Pyo Kim; Samuel Sánchez
Journal:  ACS Nano       Date:  2016-09-12       Impact factor: 15.881

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