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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Calcium Silicate Phases Explained by High-Temperature-Resistant Phosphate Probe Molecules
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Calcium Silicate Phases Explained by High-Temperature-Resistant Phosphate Probe Molecules

机译:耐高温磷酸盐探针分子解释的硅酸钙相

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In this work, high-temperature-resistant phosphate molecules are applied to characterize ultrathin (100 nm) calcium silicate (C-S) phases. These C-S phases are synthesized on silicon wafers, and the interaction of phosphates with the C-S phases is studied by means of in situ transmission Fourier transform infrared (FTIR) spectroscopy. At room temperature, the chemistry of the system is dominated by the formation of calcium phosphates (C-P). In the case of temperature rising to 1000 degrees C, the C-S phases are regenerated. FTIR results are analyzed on the basis of first principles calculations and further supported by complementary time-of flight secondary ion mass spectrometry (ToF-SIMS) experiments. This study provides a detailed and self-consistent picture of the chemical and structural properties of interfaces such as the one between the atmosphere and ultrathin C-S phases (gas/C-S) and the one between them and silicon wafers (C-S/Si bulk). The material combination of ultrathin-C-S phases grown on silicon wafers might in the future have great potential in selective chemistry, catalysis, and sensing technology as well as in semiconductor manufacturing.
机译:在这项工作中,耐高温磷酸盐分子被应用于表征超薄(100 nm)硅酸钙(C-S)相。这些C-S相在硅片上合成,并且通过原位透射傅立叶变换红外(FTIR)光谱研究了磷酸盐与C-S相的相互作用。在室温下,系统的化学作用主要由磷酸钙(C-P)的形成决定。在温度升高到1000摄氏度的情况下,C-S相会再生。 FTIR结果在第一性原理计算的基础上进行了分析,并得到了补充飞行时间二次离子质谱(ToF-SIMS)实验的进一步支持。这项研究提供了界面化学和结构特性的详细且自洽的图景,例如大气层和超薄C-S相之间的一种(气相/碳-硫)以及它们与硅片之间的界面(C-S / Si块)。将来,在硅晶片上生长的超薄C-S相的材料组合可能在选择性化学,催化和传感技术以及半导体制造中具有巨大潜力。

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