Materials Map

Discover the materials research landscape. Find experts, partners, networks.

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The Materials Map is an open tool for improving networking and interdisciplinary exchange within materials research. It enables cross-database search for cooperation and network partners and discovering of the research landscape.

The dashboard provides detailed information about the selected scientist, e.g. publications. The dashboard can be filtered and shows the relationship to co-authors in different diagrams. In addition, a link is provided to find contact information.

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The Materials Map is still under development. In its current state, it is only based on one single data source and, thus, incomplete and contains duplicates. We are working on incorporating new open data sources like ORCID to improve the quality and the timeliness of our data. We will update Materials Map as soon as possible and kindly ask for your patience.

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693.932 PEOPLE
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Toney, Michael

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in Cooperation with on an Cooperation-Score of 37%

Topics

Publications (5/5 displayed)

  • 2021Improving molecular alignment and charge percolation in semiconducting polymer films with highly localized electronic states through tailored thermal annealing11citations
  • 2020Concentration and velocity profiles in a polymeric lithium-ion battery electrolyte54citations
  • 2018Acoustic phonon lifetimes limit thermal transport in methylammonium lead iodide105citations
  • 2017Using heterostructural alloying to tune the structure and properties of the thermoelectric Sn1−xCaxSe22citations
  • 2009Crystalline Ultrasmooth Self-Assembled Monolayers of Alkylsilanes for Organic Field-Effect Transistors565citations

Places of action

Chart of shared publication
Luzio, Alessandro
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Caironi, Mario
1 / 15 shared
Martin, Jaime
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Cheng, Christina H.
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Salleo, Alberto
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Stingelin, Natalie
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Kim, Hong-Keun
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Steinrueck, Hans-Georg
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Srinivasan, Venkat
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Will, Johannes
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Ruta, Beatrice
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Cao, Chuntian
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Takacs, Christopher
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Zontone, Federico
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Chushkin, Yuriy
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Mackanic, David
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Borodin, Oleg
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Holladay, Benjamin
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Narayanan, Suresh
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Dufresne, Eric M.
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Sinha, Sunil K.
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Smith, Ic
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Gold-Parker, Aryeh
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Frost, Jm
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Parshall, Dan
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Walsh, Aron
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Skelton, Jonathan M.
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Karunadasa, Hi
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Gehring, Pm
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Perkins, John D.
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Vigil-Fowler, Derek
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Lany, Stephan
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Forkner, Michael R.
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Zakutayev, Andriy
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Siol, Sebastian
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Schelhas, Laura
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May, James W.
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Oh, Joon Hak
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Locklin, Jason
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Mannsfeld, Stefan
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Virkar, Ajay A.
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Bao, Zhenan
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Ito, Yutaka
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Chart of publication period
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2020
2018
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2009

Co-Authors (by relevance)

  • Luzio, Alessandro
  • Caironi, Mario
  • Martin, Jaime
  • Cheng, Christina H.
  • Salleo, Alberto
  • Stingelin, Natalie
  • Kim, Hong-Keun
  • Steinrueck, Hans-Georg
  • Srinivasan, Venkat
  • Will, Johannes
  • Ruta, Beatrice
  • Cao, Chuntian
  • Takacs, Christopher
  • Zontone, Federico
  • Chushkin, Yuriy
  • Mackanic, David
  • Borodin, Oleg
  • Holladay, Benjamin
  • Narayanan, Suresh
  • Dufresne, Eric M.
  • Sinha, Sunil K.
  • Smith, Ic
  • Gold-Parker, Aryeh
  • Frost, Jm
  • Parshall, Dan
  • Walsh, Aron
  • Skelton, Jonathan M.
  • Karunadasa, Hi
  • Gehring, Pm
  • Perkins, John D.
  • Vigil-Fowler, Derek
  • Lany, Stephan
  • Forkner, Michael R.
  • Zakutayev, Andriy
  • Siol, Sebastian
  • Schelhas, Laura
  • May, James W.
  • Oh, Joon Hak
  • Locklin, Jason
  • Mannsfeld, Stefan
  • Virkar, Ajay A.
  • Bao, Zhenan
  • Ito, Yutaka
OrganizationsLocationPeople

article

Acoustic phonon lifetimes limit thermal transport in methylammonium lead iodide

  • Toney, Michael
  • Smith, Ic
  • Gold-Parker, Aryeh
  • Frost, Jm
  • Parshall, Dan
  • Walsh, Aron
  • Skelton, Jonathan M.
  • Karunadasa, Hi
  • Gehring, Pm
Abstract

Hybrid organic–inorganic perovskites (HOIPs) have become an important class of semiconductors for solar cells and other optoelectronic applications. Electron–phonon coupling plays a critical role in all optoelectronic devices, and although the lattice dynamics and phonon frequencies of HOIPs have been well studied, little attention has been given to phonon lifetimes. We report high-precision momentum-resolved measurements of acoustic phonon lifetimes in the hybrid perovskite methylammonium lead iodide (MAPI), using inelastic neutron spectroscopy to provide high-energy resolution and fully deuterated single crystals to reduce incoherent scattering from hydrogen. Our measurements reveal extremely short lifetimes on the order of picoseconds, corresponding to nanometer mean free paths and demonstrating that acoustic phonons are unable to dissipate heat efficiently. Lattice-dynamics calculations using ab initio third-order perturbation theory indicate that the short lifetimes stem from strong three-phonon interactions and a high density of low-energy optical phonon modes related to the degrees of freedom of the organic cation. Such short lifetimes have significant implications for electron–phonon coupling in MAPI and other HOIPs, with direct impacts on optoelectronic devices both in the cooling of hot carriers and in the transport and recombination of band edge carriers. These findings illustrate a fundamental difference between HOIPs and conventional photovoltaic semiconductors and demonstrate the importance of understanding lattice dynamics in the effort to develop metal halide perovskite optoelectronic devices.

Topics
  • density
  • perovskite
  • single crystal
  • theory
  • semiconductor
  • molecular dynamics
  • Hydrogen
  • thermal conductivity
  • neutron spectroscopy
  • phonon modes