Dataset for "High quality hydrogen silsesquioxane encapsulated graphene devices with edge contacts"

Datasets underpinning the four figures for "High quality hydrogen silsesquioxane encapsulated graphene devices with edge contacts" in Materials Letters. The primary data files are transmission line measurements for edge contacts and Hall mobilities of devices with and without hydrogen silsesquioxane (HSQ) encapsulation. Also included are a device processing chart and atomic force microscopy (AFM) profiles. Raman data presented in the Supporting Information are also included.

Subjects:
Manufacturing
Materials processing
Materials sciences

Cite this dataset as:
Li, P., Collomb, D., Bending, S., 2019. Dataset for "High quality hydrogen silsesquioxane encapsulated graphene devices with edge contacts". Bath: University of Bath Research Data Archive. Available from: https://doi.org/10.15125/BATH-00718.

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Data

Fig_2c_AFM.ibw
application/octet-stream (1MB)
Creative Commons: Attribution 4.0

Fig_2c_AFM_inset.xlsx
application/vnd.openxmlformats-officedocument.spreadsheetml.sheet (12kB)
Creative Commons: Attribution 4.0

Fig_3.zip
application/zip (146kB)
Creative Commons: Attribution 4.0

Fig_S1.zip
application/zip (38kB)
Creative Commons: Attribution 4.0

Creators

Penglei Li
University of Bath

David Collomb
University of Bath

Simon Bending
University of Bath

Contributors

University of Bath
Rights Holder

Coverage

Collection date(s):

From October 2018 to February 2019

Documentation

Data collection method:

Detailed methods can be found in the Experimental section of the associated article.

Technical details and requirements:

Details of the instrumentation used can be found in the Experimental section of the associated article. Igor Binary Wave files (.ibw) may be opened with WaveMetrics Igor Pro (https://www.wavemetrics.com/); third party software such as Gwyddion (http://gwyddion.net/), IgorR (from CRAN) and igor (from PyPI) may also be used.

Methodology link:

Li, P., Collomb, D., and Bending, S., 2019. High quality hydrogen silsesquioxane encapsulated graphene devices with edge contacts. Materials Letters, 257. Available from: https://researchportal.bath.ac.uk/en/publications/high-quality-hydrogen-silsesquioxane-encapsulated-graphene-device.

Documentation Files

Readme.txt
text/plain (497B)
Creative Commons: Attribution 4.0

Funders

Engineering and Physical Sciences Research Council (EPSRC)
https://doi.org/10.13039/501100000266

Graphene nanosensors for scanning Hall microscopy and susceptometry
EP/R007160/1

Publication details

Publication date: 28 October 2019
by: University of Bath

Version: 1

DOI: https://doi.org/10.15125/BATH-00718

URL for this record: https://researchdata.bath.ac.uk/id/eprint/718

Related papers and books

Li, P., Collomb, D., and Bending, S., 2019. High quality hydrogen silsesquioxane encapsulated graphene devices with edge contacts. Materials Letters, 257, 126765. Available from: https://doi.org/10.1016/j.matlet.2019.126765.

Li, P., Collomb, D., and Bending, S., 2020. Corrigendum to “High quality hydrogen silsesquioxane encapsulated graphene devices with edge contacts” [Mater. Lett. 257 (2019) 126765]. Materials Letters, 260, 126976. Available from: https://doi.org/10.1016/j.matlet.2019.126976.

Contact information

Please contact the Research Data Service in the first instance for all matters concerning this item.

Contact person: Penglei Li

Departments:

Faculty of Science
Physics

Research Centres & Institutes
Centre for Nanoscience and Nanotechnology