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The broad absorption band at 3,402 cm−1 and the peak at 1,466 cm−1 for the sample are due to the -OH groups.
High concentrations of Ca, P, and Mg ions for uncoated sample are due to inorganic salt constituents of DMEM including CaCl2, NaH2PO4, and MgSO4.
The excellent rate performance and cycling stability of the rGO-LVP sample are due to its capability in maintaining a low charge transfer resistance or a higher electrical conductivity and ionic conductivity as compared to the C-LVP sample during electrochemical cycling, as demonstrated by electrochemical impedance spectroscopy and cyclic voltammetry.
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The residual luminescence observed in SiD sample was due to a very low oxidation state of silicon surface.
The asymmetric characteristic of this sample is due to 40 nm GaAs undoped layer at the substrate side.
The increased resonant frequency of the nanotube sample is due to effective screening of the H - field.
High photocatalytic activity of MWASSM sample was due to low concentrations of hydrogen-related defects, high crystallinity, and high aspect ratio of obtained nanoribbons.
This suggest the possibility that, the observed peak in the coal sample is due to the existence of finite size of crystalline and defect induced carbon.
The visible light sensitization of N-doped NTA sample was due to the formation of single-electron-trapped oxygen vacancies (SETOV) and N doping-induced bandgap narrowing.
The High concentration of TDS in the groundwater sample is due to leaching of salts from soil and also by anthropogenic activities.
With CO or C3H6 oxidation, the superior performance of the zoned sample was due to a larger, localized exotherm and a decreased self-poisoning effect.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com