Title: Enhanced Selective Oxidation of Benzyl Alcohol via in-situ H2O2 Production Over Supported Pd-based Catalysts - data
Citation
Crombie CM, Lewis RJ, Taylor RL, et al. (2021). Enhanced Selective Oxidation of Benzyl Alcohol via in-situ H2O2 Production Over Supported Pd-based Catalysts - data. Cardiff University. https://doi.org/10.17035/d.2021.0128838559
Access Rights: Creative Commons Attribution 4.0 International
Access Method: https://doi.org/10.17035/d.2021.0128838559 will take you to the repository page for this dataset, where you will be able to download the data or find further access information, as appropriate.
Cardiff University Dataset Creators
Dataset Details
Publisher: Cardiff University
Date (year) of data becoming publicly available: 2021
Data format: vms
Software Required: Casa XPS v.X or above
Estimated total storage size of dataset: Less than 1 gigabyte
DOI : 10.17035/d.2021.0128838559
DOI URL: http://doi.org/10.17035/d.2021.0128838559
Catalytic testing data for the direct synthesis of H2O2, the subsequent degradation of H2O2 (presented as productivity units and/ or % as appropriate), and the oxidation of benzyl alcohol to benzaldehyde via in-situ H2O2 synthesis (presented as the conversion of benzyl alcohol and product selectivity, H2 conversion and selectivity data (%) is also provided) (as excel files). Data files related to catalyst characterisation including XPS (as VMS files ) and EPR (as PAR files) are also included. Testing data may be opened with Microsoft Excel or alternative graphing software, such as Origin (2019 version recommended). XPS data files may be opened with CasaXPS v2.3.24 or a newer version. EPR spectra may be opened with either Bruker WIN-EPR or the EasySpin toolbox in Mathworks MATLAB. Baseline correction may be performed in the Bruker WIN-EPR software, and spectral simulations are performed in EasySpin.
Description
Keywords
Palladium-Iron
Related Projects
- DTP 2016-17 Cardiff University (01/10/2016 - 30/09/2021)
- DTP - Cardiff University (2015) (01/10/2015 - 30/09/2019)