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The effect of H2O2 amount on the photocatalytic activities of Cu2O materials was systematically studied.
The surface chemistry of the resulting materials was systematically characterized by TPD experiments and XPS measurements.
The effect of CTS on the mechanical properties of PU/WG grouting materials was systematically studied by compression test, fracture mechanical test, flexural test and dynamic mechanical analysis.
The fluorination of porous carbonaceous materials was systematically investigated employing different fluorinating agents (molecular F2 and atomic F released by XeF2 decomposition) and conditions (static and dynamic).
The photocatalytic performance under visible light of all materials was systematically studied in the presence of a hole-scavenger, showing that both synthesis routes produce CTFs with similar hydrogen evolution rates (HER), but different optical properties.
In this study cytological examination of the hydrated materials was systematically performed.
Similar(54)
Physical properties by the change of the substitution groups of the synthesized materials were systematically examined.
Some important factors such as reaction time, temperature, and concentrations of starting materials were systematically investigated in details.
The effects, morphology, capacitive properties, and formation mechanism of the CoMoO4@Ni(OH)2 composite materials are systematically investigated.
The physicochemical and electrochemical properties of the Cr-doped Fe2F5·H2O cathode materials are systematically characterized.
The effects of salt content and reaction temperature on the structure and properties of the BCZT materials were systematically investigated.
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