Benjamin Max
Impact in
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- Ferroelectric and Negative Capacitance Devices
- Semiconductor materials and devices
- Advanced Memory and Neural Computing
- Materials Chemistry top 10%
- Ferroelectric and Piezoelectric Materials
- MXene and MAX Phase Materials
- Electronic and Structural Properties of Oxides
Papers in
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- Ferroelectric and Negative Capacitance Devices 17
- Advanced Memory and Neural Computing 13
- Semiconductor materials and devices 8
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- Ferroelectric and Piezoelectric Materials 7
- MXene and MAX Phase Materials 4
- Graphene research and applications 1
- Electronic and Structural Properties of Oxides 1
- Co-authors
- Thomas Mikolajick (18 shared papers)Stefan Slesazeck (16 shared papers)Michael Hoffmann (12 shared papers)Uwe Schroeder (8 shared papers)Terence Mittmann (3 shared papers)Franz P. G. Fengler (2 shared papers)Raluca Negrea (1 shared paper)Melanie Herzig (1 shared paper)
In The Last Decade
Benjamin Max
18 papers receiving 887 citations
Benjamin Max's Hit Papers
Peers
Comparison fields: 5 of 36
- Electrical and Electronic Engineering 804
- Materials Chemistry 536
- Electronic, Optical and Magnetic Materials 58
- Biomedical Engineering 67
- Cellular and Molecular Neuroscience 27
Countries citing papers authored by Benjamin Max
This map shows the geographic impact of Benjamin Max's research. It shows the number of citations coming from papers published by authors working in each country. You can also color the map by specialization and compare the number of citations received by Benjamin Max with the expected number of citations based on a country's size and research output (numbers larger than one mean the country cites Benjamin Max more than expected).
Fields of papers citing papers by Benjamin Max
This network shows the impact of papers produced by Benjamin Max. Nodes represent research fields, and links connect fields that are likely to share authors. Colored nodes show fields that tend to cite the papers produced by Benjamin Max. The network helps show where Benjamin Max may publish in the future.
Co-authors
The 25 scholars most cited alongside Benjamin Max, linked wherever they have co-authored with each other. Click a name or a connecting line to browse the papers they share.
All Works
| # | Work | ||
|---|---|---|---|
| 1 | Unveiling the double-well energy landscape in a ferroelectric layer Hit paper breakdown → | 2019 | 326 |
| 2 | 2019 | 92 | |
| 3 | 2022 | 74 | |
| 4 | 2019 | 65 | |
| 5 | 2018 | 58 | |
| 6 | 2018 | 56 | |
| 7 | 2018 | 53 | |
| 8 | 2019 | 35 | |
| 9 | 2019 | 33 | |
| 10 | 2019 | 30 | |
| 11 | 2019 | 20 | |
| 12 | 2018 | 19 | |
| 13 | 2021 | 16 | |
| 14 | 2020 | 9 | |
| 15 | 2023 | 5 | |
| 16 | 2023 | 4 | |
| 17 | 2017 | 2 | |
| 18 | 2023 | 1 | |
| 19 | 2022 | 0 |
About Benjamin Max
Benjamin Max is a scholar working on Electrical and Electronic Engineering, Materials Chemistry, Cellular and Molecular Neuroscience, Atomic and Molecular Physics, and Optics and Mechanical Engineering, having authored 19 papers that have together received 898 indexed citations. Recurring topics across this work include Ferroelectric and Negative Capacitance Devices (17 papers), Advanced Memory and Neural Computing (13 papers), Semiconductor materials and devices (8 papers), Ferroelectric and Piezoelectric Materials (7 papers), MXene and MAX Phase Materials (4 papers), Neuroscience and Neural Engineering (2 papers), Graphene research and applications (1 paper) and Electronic and Structural Properties of Oxides (1 paper). The work is most often cited by research in Electrical and Electronic Engineering (804 citations), Materials Chemistry (536 citations), Electronic, Optical and Magnetic Materials (58 citations), Biomedical Engineering (67 citations) and Cellular and Molecular Neuroscience (27 citations). Benjamin Max has collaborated with scholars based in Germany, Italy and Romania. Frequent co-authors include Thomas Mikolajick, Stefan Slesazeck, Michael Hoffmann, Uwe Schroeder, Terence Mittmann, Franz P. G. Fengler, Raluca Negrea, Melanie Herzig, L. Pintilie and Halid Mulaosmanovic. Their work appears in journals such as Advanced Energy Materials, Nature, Journal of Applied Physics, IEEE Journal of the Electron Devices Society and Metallurgical and Materials Transactions A.
Rankless uses publication and citation data sourced from OpenAlex, an open and comprehensive bibliographic database. While OpenAlex provides broad and valuable coverage of the global research landscape, it—like all bibliographic datasets—has inherent limitations. These include incomplete records, variations in author disambiguation, differences in journal indexing, and delays in data updates. As a result, some metrics and network relationships displayed in Rankless may not fully capture the entirety of a scholar's output or impact.