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Vibrational properties and phonon transport of nanobridges (A08*)

Subject Area Theoretical Condensed Matter Physics
Term from 2016 to 2019
Project identifier Deutsche Forschungsgemeinschaft (DFG) - Project number 32152442
 
We will study how vibrational properties of nanobridges can be tuned through temperature and mechanical stress. Developing an ab-initio description based on density functional theory, we will include anharmonic effects to consider their influence on the heat current by phonons and its fluctuations. Within this methodology that allows to determine phonon lifetimes based on phonon-phonon scattering, we will focus on molecular and atomic scale junctions. We will explore the dependence of phonon transport on molecular shape, conjugation, anchoring groups, substituents and electrode materials as well as ways to achieve a suppression of thermal conductance through destructive phonon inter-ference and increased anharmonicities. Finally, using molecular dynamics and force fields, calibrated with the ab-initio approach, we will explore a new type of thermal diode that exploits different thermal expansion coefficients to achieve a high rectification ratio.
DFG Programme Collaborative Research Centres
Applicant Institution Universität Konstanz
Project Head Professor Dr. Fabian Pauly, since 1/2016
 
 

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