Reinhold-López Karla, Braeuer Andreas, Popovska Nadejda, Leipertz Alfred
Lehrstuhl für Technische Thermodynamik and Erlangen Graduate School in Advanced Optical Technologies, Universität Erlangen-Nuernberg, Am Weichselgarten 8, 91058 Erlangen, Germany.
Opt Express. 2010 Aug 16;18(17):18223-8. doi: 10.1364/OE.18.018223.
To understand the reaction mechanisms taking place by growing carbon nanotubes via the catalytic chemical vapor deposition process, a strategy to monitor in situ the gas phase at reaction conditions was developed applying linear Raman spectroscopy. The simultaneous determination of the gas temperature and composition was possible by a new strategy of the evaluation of the Raman spectra. In agreement to the well-known exothermic decomposition of acetylene, a gas temperature increase was quantified when acetylene was added to the incident flow. Information about exhaust gas recirculation and location of the maximal acetylene conversion was derived from the composition measurements.
为了理解通过催化化学气相沉积法生长碳纳米管时发生的反应机理,采用线性拉曼光谱法开发了一种在反应条件下原位监测气相的策略。通过一种评估拉曼光谱的新策略,可以同时测定气体温度和成分。与众所周知的乙炔放热分解一致,当乙炔加入到入射流中时,气体温度升高被量化。关于废气再循环和最大乙炔转化率位置的信息来自成分测量。