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Materials Science

D-Index
59
Citations
19128
World Ranking
7243
National Ranking
425

Chemistry

D-Index
59
Citations
18756
World Ranking
9998
National Ranking
718

Overview

Philipp Adelhelm is affiliated with Humboldt-Universität zu Berlin in Germany. Their primary field of study lies within Engineering, with a particular focus on Electrical and Electronic Engineering, Automotive Engineering, Materials Chemistry, Electronic, Optical and Magnetic Materials, and Mechanical Engineering.

The scientist's research focuses predominantly on battery and energy storage technologies. Key topics in their work include Advancements in Battery Materials, Advanced Battery Materials and Technologies, Advanced Battery Technologies Research, Supercapacitor Materials and Fabrication, Extraction and Separation Processes, and Thermal Expansion and Ionic Conductivity.

Frequent publication venues showcasing their work include ECS Meeting Abstracts, Batteries & Supercaps, Advanced Energy Materials, Energy Technology, and Advanced Functional Materials.

Notable recent papers authored or co-authored by Philipp Adelhelm feature:

  • Challenges of today for Na-based batteries of the future: From materials to cell metrics (2020), Journal of Power Sources
  • Recent Progress for Concurrent Realization of Shuttle-Inhibition and Dendrite-Free Lithium-Sulfur Batteries (2023), Advanced Materials
  • Designing Cathodes and Cathode Active Materials for Solid-State Batteries (2022), Advanced Energy Materials
  • How Certain Are the Reported Ionic Conductivities of Thiophosphate-Based Solid Electrolytes? An Interlaboratory Study (2020), ACS Energy Letters
  • A Co- and Ni-Free P2/O3 Biphasic Lithium Stabilized Layered Oxide for Sodium-Ion Batteries and its Cycling Behavior (2020), Advanced Functional Materials

Collaborations are common in their work, with frequent co-authors including Guillermo A. Ferrero, Yanan Sun, Gustav Åvall, Knut Janßen, and Youhyun Son.

Best Publications

  • From Lithium-Ion to Sodium-Ion Batteries: Advantages, Challenges, and Surprises.

    Prasant Kumar Nayak;Liangtao Yang;Wolfgang Brehm;Philipp Adelhelm

  • Use of graphite as a highly reversible electrode with superior cycle life for sodium-ion batteries by making use of co-intercalation phenomena.

    Birte Jache;Philipp Adelhelm

  • A rechargeable room-temperature sodium superoxide (NaO2) battery.

    Pascal Hartmann;Conrad L. Bender;Miloš Vračar;Miloš Vračar;Anna Katharina Dürr

  • Intercalation chemistry of graphite: alkali metal ions and beyond.

    Yuqi Li;Yaxiang Lu;Philipp Adelhelm;Maria-Magdalena Titirici

  • Synthesis of hierarchically porous carbon monoliths with highly ordered microstructure and their application in rechargeable lithium batteries with high-rate capability

    Yong-Sheng Hu;Philipp Adelhelm;Bernd M. Smarsly;Sarmimala Hore

  • Review on Challenges and Recent Advances in the Electrochemical Performance of High Capacity Li‐ and Mn‐Rich Cathode Materials for Li‐Ion Batteries

    Prasant Kumar Nayak;Prasant Kumar Nayak;Evan M. Erickson;Florian Schipper;Tirupathi Rao Penki

  • Room-temperature sodium-ion batteries: Improving the rate capability of carbon anode materials by templating strategies

    Sebastian Wenzel;Takeshi Hara;Jürgen Janek;Philipp Adelhelm

  • Degradation of NASICON-Type Materials in Contact with Lithium Metal: Formation of Mixed Conducting Interphases (MCI) on Solid Electrolytes

    Pascal Hartmann;Pascal Hartmann;Thomas Leichtweiss;Martin R. Busche;Meike Schneider

  • High electroactivity of polyaniline in supercapacitors by using a hierarchically porous carbon monolith as a support

    Li-Zhen Fan;Li-Zhen Fan;Yong-Sheng Hu;Joachim Maier;Philipp Adelhelm

  • From lithium to sodium: cell chemistry of room temperature sodium–air and sodium–sulfur batteries

    Philipp Adelhelm;Pascal Hartmann;Conrad L Bender;Martin Busche

  • Dynamic formation of a solid-liquid electrolyte interphase and its consequences for hybrid-battery concepts

    Martin R. Busche;Thomas Drossel;Thomas Leichtweiss;Dominik A. Weber

  • Nanosizing and Nanoconfinement: New Strategies Towards Meeting Hydrogen Storage Goals

    Petra E. de Jongh;Philipp Adelhelm

  • Conversion reactions for sodium-ion batteries

    Franziska Klein;Birte Jache;Amrtha Bhide;Philipp Adelhelm

  • A comprehensive study on the cell chemistry of the sodium superoxide (NaO2) battery

    Pascal Hartmann;Conrad L. Bender;Joachim Sann;Anna Katharina Dürr

  • Electrochemical stability of non-aqueous electrolytes for sodium-ion batteries and their compatibility with Na0.7CoO2

    Amrtha Bhide;Jonas Hofmann;Anna Katharina Dürr;Jürgen Janek

  • The Indium−Lithium Electrode in Solid‐State Lithium‐Ion Batteries: Phase Formation, Redox Potentials, and Interface Stability

    A. L. Santhosha;Lukas Medenbach;Johannes R. Buchheim;Philipp Adelhelm

  • Designing Cathodes and Cathode Active Materials for Solid‐State Batteries

    Unknown

  • Recent Progress for Concurrent Realization of Shuttle‐Inhibition and Dendrite‐Free Lithium–Sulfur Batteries

    Unknown

  • Graphite as Cointercalation Electrode for Sodium-Ion Batteries: Electrode Dynamics and the Missing Solid Electrolyte Interphase (SEI)

    Mustafa Goktas;Christoph Bolli;Erik J. Berg;Petr Novák

  • Challenges of today for Na-based batteries of the future: From materials to cell metrics

    Ivana Hasa;Ivana Hasa;Sathiya Mariyappan;Sathiya Mariyappan;Damien Saurel;Philipp Adelhelm;Philipp Adelhelm

  • Systematical electrochemical study on the parasitic shuttle-effect in lithium-sulfur-cells at different temperatures and different rates

    Martin Rolf Busche;Philipp Adelhelm;Heino Sommer;Holger Schneider

  • A comparative study on the impact of different glymes and their derivatives as electrolyte solvents for graphite co-intercalation electrodes in lithium-ion and sodium-ion batteries

    Birte Jache;Jan Oliver Binder;Takeshi Abe;Philipp Adelhelm

  • Hierarchically Porous Monolithic LiFePO4/Carbon Composite Electrode Materials for High Power Lithium Ion Batteries

    Cara M. Doherty;Cara M. Doherty;Rachel A. Caruso;Rachel A. Caruso;Bernd M. Smarsly;Philipp Adelhelm

Frequent Co-Authors

Jürgen Janek
Jürgen Janek University of Giessen
Bernd M. Smarsly
Bernd M. Smarsly University of Giessen
Markus Antonietti
Markus Antonietti Max Planck Society
Yong-Sheng Hu
Yong-Sheng Hu Chinese Academy of Sciences
Falko Langenhorst
Falko Langenhorst Friedrich Schiller University Jena
Bao-Hang Han
Bao-Hang Han National Center for Nanoscience and Technology, China
Rudolf Holze
Rudolf Holze Chemnitz University of Technology
Yu-Guo Guo
Yu-Guo Guo Chinese Academy of Sciences
Joachim Maier
Joachim Maier Max Planck Society
Petra E. de Jongh
Petra E. de Jongh Utrecht University

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