We combine the characterization techniques of scanning AC nanocalorimetry and x-ray diffraction to study phase transformations in complex materials system. Micromachined nanocalorimeters have excellent performance for high-temperature and high-scanning-rate calorimetry measurements. Time-resolved X-ray diffraction measurements during in-situ operation of these devices using synchrotron radiation provide unprecedented characterization of thermal and structural material properties. We apply this technique to a Fe(0.84)Ni(0.16) thin-film sample that exhibits a martensitic transformation with over 350âK hysteresis, using an average heating rate of 85âK/s and cooling rate of 275âK/s. The apparatus includes an array of nanocalorimeters in an architecture designed for combinatorial studies.
In-situ X-ray diffraction combined with scanning AC nanocalorimetry applied to a Fe(0.84)Ni(0.16) thin-film sample.
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作者:Gregoire John M, Xiao Kechao, McCluskey Patrick J, Dale Darren, Cuddalorepatta Gayatri, Vlassak Joost J
| 期刊: | Applied Physics Letters | 影响因子: | 3.600 |
| 时间: | 2013 | 起止号: | 2013 May 20; 102(20):201902 |
| doi: | 10.1063/1.4806972 | ||
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