Investigations of Flow and Particle Clustering Around Optically Trapped Rotating Nanorods

dc.contributor.authorGiesselmann, Niels
dc.contributor.departmentChalmers tekniska högskola / Institutionen för fysiksv
dc.contributor.examinerKäll, Mikael
dc.contributor.supervisorJungová, Hana
dc.date.accessioned2020-12-04T10:09:11Z
dc.date.available2020-12-04T10:09:11Z
dc.date.issued2020sv
dc.date.submitted2020
dc.description.abstractThe investigation and development of nanomachines is a topic that is widely researched, as it promises applications in fields like physics, biology or medicine. A recent development of this research are light-driven rotary motors, consisting of optically trapped gold nanorods. These rods are brought to rotate by the use of circularly polarized light, making use of their plasmonic characteristics. It is now of interest to better understand the effect that these nanorotors have on their environment. In this context, this work explores the clustering of fluorescent nanospheres around an optically trapped, rotating nanorod by the means of a combination of dark-field and fluorescence microscopy. The work also discusses an attempt to track particles in order to map the microfluidic flow around the trapped nanorod. By observing the changes in brightness that occur when a particle enters this cluster, it was possible to show that the rotation of a nanorod can induce and amplify the clustering of these particles around it. Furthermore, the results suggest that higher laser powers also support stronger clustering.sv
dc.identifier.coursecodeTIFX61sv
dc.identifier.urihttps://hdl.handle.net/20.500.12380/302102
dc.language.isoengsv
dc.setspec.uppsokPhysicsChemistryMaths
dc.subjectoptical trapsv
dc.subjectLSPRsv
dc.subjectfluorescencesv
dc.subjectparticle trackingsv
dc.subjectnanophotonicssv
dc.subjectnanorodsv
dc.subjectnanorotorsv
dc.titleInvestigations of Flow and Particle Clustering Around Optically Trapped Rotating Nanorodssv
dc.type.degreeExamensarbete för masterexamensv
dc.type.uppsokH

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