Contactless graphene conductivity mapping on a wide range of substrates with terahertz time-domain reflection spectroscopy
                        
                        
                            - Submitting institution
 
                            - 
                                The University of Lancaster
                                
 
                            
 
                            - Unit of assessment
 
                            - 12 - Engineering
 
                            - Output identifier
 
                            - 238288395
 
                            - Type
 
                            - D - Journal article
 
                                - DOI
 
                                - 
                                        10.1038/s41598-017-09809-7
                                
 
                                - Title of journal
 
                                - Scientific Reports
 
                                - Article number
 
                                - 10625
 
                                - First page
 
                                - -
 
                                - Volume
 
                                - 7
 
                                - Issue
 
                                - 1
 
                                - ISSN
 
                                - 2045-2322
 
                                - Open access status
 
                                - Compliant
 
                            - Month of publication
 
                            - September
 
                            - Year of publication
 
                            - 2017
 
                            - URL
 
                            - 
-                            
 
                            - Supplementary information
 
                            - 
-                            
 
                            - Request cross-referral to
 
                            - -
 
                            - Output has been delayed by COVID-19
 
                            - No
 
                            - COVID-19 affected output statement
 
                            - -
 
                            - Forensic science
 
                            - No
 
                            - Criminology
 
                            - No
 
                            - Interdisciplinary
 
                            - Yes
 
                            - Number of additional authors
 
                            - 
                                8
                            
 
                            - Research group(s)
 
                            - 
-                            
 
                            - Proposed double-weighted
 
                            - No
 
                            - Reserve for an output with double weighting
 
                            - No
 
                            - Additional information
 
                            - This work demonstrates an alternative measurement of key electrical properties across large-area graphene. Variant of the published technique is implemented in commercial systems such as Das Nano Onyx (https://www.das-nano.com/onyx/) for rapid graphene and 2D materials characterisation. This work has attracted the attention of TeraView, a world leading UK company in terahertz spectrometers and industrial applications to measure and cross-validate graphene and 2D materials using existing spectrometers (phil.taday@teraview.com) with whom collaboration is being actively explored. It also underpins in-situ measurement investigations and is the subject of a Leverhulme Trust grant proposal currently under preparation.
 
                            - Author contribution statement
 
                            - -
 
                            - Non-English
 
                            - No
 
                            - English abstract
 
                            - -