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Materials Science

D-Index
47
Citations
10232
World Ranking
11034
National Ranking
2596

Overview

Tobias Hanrath is affiliated with Cornell University in the United States and works primarily in the field of Materials Science. Their research spans several subfields including Materials Chemistry, Renewable Energy, Sustainability and the Environment, Catalysis, Electrical and Electronic Engineering, and Biomaterials.

The research topics covered by Hanrath focus notably on CO₂ Reduction Techniques and Catalysts, Quantum Dots Synthesis and Properties, Ionic Liquids Properties and Applications, Pickering Emulsions and Particle Stabilization, Supramolecular Self-Assembly in Materials, Microbial Fuel Cells and Bioremediation, as well as Advanced Photocatalysis Techniques.

Recent publications by Hanrath include:

  • Pulse check: Potential opportunities in pulsed electrochemical CO2 reduction (2021) published in Joule
  • Selective Electrochemical CO2 Reduction during Pulsed Potential Stems from Dynamic Interface (2020) published in ACS Catalysis
  • Cu(I) Reducibility Controls Ethylene vs Ethanol Selectivity on (100)-Textured Copper during Pulsed CO2 Reduction (2021) published in ACS Applied Materials & Interfaces
  • Multiscale hierarchical structures from a nanocluster mesophase (2022) published in Nature Materials
  • Effect of Electrolyte Composition and Concentration on Pulsed Potential Electrochemical CO2 Reduction (2020) published in ChemElectroChem

Hanrath frequently publishes in venues including ACS Catalysis, ACS Applied Materials & Interfaces, ACS Nano, Advanced Engineering Materials, and Microscopy and Microanalysis.

Frequent collaborators in Hanrath's work include Daniel M. Balazs, Rileigh Casebolt, Jin Suntivich, Tyler A. Dunbar, and Lena F. Kourkoutis.

Best Publications

  • Bright infrared quantum-dot light-emitting diodes through inter-dot spacing control

    Liangfeng Sun;Joshua J. Choi;David Stachnik;Adam C. Bartnik

  • Solventless synthesis of monodisperse Cu2S nanorods, nanodisks, and nanoplatelets

    Michael B. Sigman;Ali Ghezelbash;Tobias Hanrath;Aaron E. Saunders

  • PbSe nanocrystal excitonic solar cells.

    Joshua J. Choi;Yee-Fun Lim;Mitk’El B. Santiago-Berrios;Matthew Oh

  • Nucleation and growth of germanium nanowires seeded by organic monolayer-coated gold nanocrystals.

    Tobias Hanrath;Brian A Korgel

  • Supercritical Fluid–Liquid–Solid (SFLS) Synthesis of Si and Ge Nanowires Seeded by Colloidal Metal Nanocrystals

    Tobias Hanrath;Brian A. Korgel

  • In spite of recent doubts carrier multiplication does occur in PbSe nanocrystals.

    M. Tuan Trinh;Arjan J. Houtepen;Juleon M. Schins;Tobias Hanrath

  • Thermally induced structural evolution and performance of mesoporous block copolymer-directed alumina perovskite solar cells.

    Kwan Wee Tan;David T. Moore;Michael Saliba;Hiroaki Sai

  • SnSe nanocrystals: synthesis, structure, optical properties, and surface chemistry.

    William J. Baumgardner;Joshua J. Choi;Yee-Fun Lim;Tobias Hanrath

  • Charge transport and localization in atomically coherent quantum dot solids.

    Kevin Whitham;Jun Yang;Benjamin H. Savitzky;Lena F. Kourkoutis

  • Predicting Nanocrystal Shape through Consideration of Surface-Ligand Interactions

    Clive R. Bealing;William J. Baumgardner;Joshua J. Choi;Tobias Hanrath

  • Chemical Surface Passivation of Ge Nanowires

    Tobias Hanrath;Brian A Korgel

  • Photogenerated Exciton Dissociation in Highly Coupled Lead Salt Nanocrystal Assemblies

    Joshua J. Choi;Justin Luria;Byung-Ryool Hyun;Adam C. Bartnik

  • Controlling nanocrystal superlattice symmetry and shape-anisotropic interactions through variable ligand surface coverage.

    Joshua J. Choi;Clive R. Bealing;Kaifu Bian;Kevin J. Hughes

  • Shape-anisotropy driven symmetry transformations in nanocrystal superlattice polymorphs.

    Kaifu Bian;Joshua J. Choi;Ananth Kaushik;Paulette Clancy

  • Nanocrystal and Nanowire Synthesis and Dispersibility in Supercritical Fluids

    Parag S. Shah;Tobias Hanrath;Keith P. Johnston;Brian A. Korgel

  • Growth of single crystal silicon nanowires in supercritical solution from tethered gold particles on a silicon substrate

    Xianmao Lu;Tobias Hanrath;Keith P. Johnston;Brian A. Korgel

  • Confined-but-Connected Quantum Solids via Controlled Ligand Displacement

    William J. Baumgardner;Kevin Whitham;Tobias Hanrath

  • Inorganic bulk multijunction materials and processes for preparing the same

    Tobias Hanrath;James R. Engstrom

  • Influence of surface states on electron transport through intrinsic Ge nanowires.

    Tobias Hanrath;Brian A Korgel

  • Pulse check: Potential opportunities in pulsed electrochemical CO2 reduction

    Rileigh Casebolt;Kelsey Levine;Jin Suntivich;Tobias Hanrath

  • Solution-processed nanocrystal quantum dot tandem solar cells.

    Joshua J Choi;Whitney Wenger;Rachel Hoffman;Yee-Fun Lim

Frequent Co-Authors

Brian A. Korgel
Brian A. Korgel The University of Texas at Austin
Lena F. Kourkoutis
Lena F. Kourkoutis Cornell University
Frank W. Wise
Frank W. Wise Cornell University
Detlef-M. Smilgies
Detlef-M. Smilgies Cornell University
Doh C. Lee
Doh C. Lee Korea Advanced Institute of Science and Technology
Zhongwu Wang
Zhongwu Wang Cornell University
Keith P. Johnston
Keith P. Johnston The University of Texas at Austin
David A. Muller
David A. Muller Cornell University
Héctor D. Abruña
Héctor D. Abruña Cornell University
Uri Banin
Uri Banin Hebrew University of Jerusalem

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