There is also a youtube channel with tutorials. As a special feature, a flexible multiplet function was implemented to facilitate a convenient analysis of complex spectra. You can generate fit templates and you can export entire fit projects to share them with your co-workers. When a XPST fit project is started, a corresponding subfolder with all required data is generated and saved within the Igor experiment. It includes various graphical interfaces as well as commandline functions to facilitate the workup of XPS data. XPST is a program package for the analysis of X-ray Photoelectron Spectroscopy (XPS) data. The payment will be received after sending the interpretation file to you
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Photocatalytically regenerable Cu2O/Cu/biochar adsorbents by facilely synchronous carbonization-activation-functionalization pyrolysis of hemp hurds.
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The carbon defect engineering generated additional nonpolarized electron-depleted sites in GO of 3D DOA for increased adsorption capacities (2417 μmol/g for benzophenone, 2209 μmol/g for 4-hydroxybenzophenone, 1957 μmol/g for 2,2′,4,4′-tetrahydroxybenzophenone). Using chemical reduction, carbon defects in GO were gradually repaired and nitrogen defects in CTF were created simultaneously.
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In this work, we investigated a series of three-dimensional defect-optimized aerogels (3D DOAs) of graphene oxide (GO) with a covalent triazine framework (CTF) for improved adsorption and photoregeneration performance via tailoring duet carbon and nitrogen defects. It is still a challenge to construct multiple defects of composite materials into advantageous aggregates to deal with complicated matrix pollution. However, various nanomaterial defects play variant roles in environmental applications. Defect engineering of nanomaterials has emerged as a promising approach to improve their performance for pollutant removal.