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To monitor the intermediates of the thermal decay, the samples were prepared in conditions of DSC measurement by dynamic heating up to the selected temperatures, with the heating rate of 5°C/min and consequently analyzed by suitable techniques.
Investigations of clean silicon surfaces prepared in conditions of actual technological chambers are of great interest due to the industrial requirements to operate on nanometer and subnanometer scales when designing future nanoelectronic devices [1].
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The PFSA/ePTFE polymer electrolyte membranes (PEMs) prepared in the conditions of initial Pinner of 5 × 102 Pa and 5 vol.% surfactant concentration are well impregnated and show a high resistance to the hydrogen gas permeability over 4500 dry/wet cycles, indicating a better durability and stability.
There is no obvious difference in properties of samples prepared in the conditions of the 250 mL and the 1 L scale experiment, exhibiting a good scalability.
The XRD patterns of the ZnS Mn nanocrystals prepared in the condition of alcohol and water volume ratio of 1 1 are presented in Fig. 1.
The DSC thermograms of pure aspirin and aspirin loaded CS-NPs were prepared in the condition of 0.8 mg/mL aspirin and 2.5, 3.0, and 4.0 mg/mL TPP were recorded with a heating rate of 20°C/min in nitrogen between 25°C and 180°C.
The WRPH-pa with the higher cytotoxic activity was prepared in the condition of D2A2C3B1.
The silica particles were prepared in basic conditions under atmosphere of carbon dioxide (CO2), using tetraethylorthosilicate (TEOS) as a precursor and octyltriethoxysilane (OTES) as a surface modifying agent.
The sample prepared in optimal conditions had reflection loss of less than −10 dB (absorption >90%) and covering a frequency range of 8.4 11.6 GHz.
The sample prepared in optimal conditions indicated reflection loss of −15 dB corresponding to 97% absorption, at the range of 9.2 10.8 GHz.
Samples prepared in different conditions were characterized from the point of view of composition, structure, morphology and optical properties.
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