Title of article :
In-situ TEM on (de)hydrogenation of Pd at 0.5–4.5 bar hydrogen pressure and 20–400°C
Author/Authors :
Yokosawa، نويسنده , , Tadahiro and Alan، نويسنده , , Tuncay and Pandraud، نويسنده , , Gregory and Dam، نويسنده , , Bernard and Zandbergen، نويسنده , , Henny، نويسنده ,
Issue Information :
دوماهنامه با شماره پیاپی سال 2012
Pages :
6
From page :
47
To page :
52
Abstract :
We have developed a nanoreactor, sample holder and gas system for in-situ transmission electron microscopy (TEM) of hydrogen storage materials up to at least 4.5 bar. The MEMS-based nanoreactor has a microheater, two electron-transparent windows and a gas inlet and outlet. The holder contains various O-rings to have leak-tight connections with the nanoreactor. The system was tested with the (de)hydrogenation of Pd at pressures up to 4.5 bar. The Pd film consisted of islands being 15 nm thick and 50–500 nm wide. In electron diffraction mode we observed reproducibly a crystal lattice expansion and shrinkage owing to hydrogenation and dehydrogenation, respectively. In selected-area electron diffraction and bright/dark-field modes the (de)hydrogenation of individual Pd particles was followed. Some Pd islands are consistently hydrogenated faster than others. When thermally cycled, thermal hysteresis of about 10–16 °C between hydrogen absorption and desorption was observed for hydrogen pressures of 0.5–4.5 bar. Experiments at 0.8 bar and 3.2 bar showed that the (de)hydrogenation temperature is not affected by the electron beam. This result shows that this is a fast method to investigate hydrogen storage materials with information at the nanometer scale.
Keywords :
Gas–solid interactions , high pressure , Hydrogen storage materials , Hydrogen (de)absorption , Environmental TEM , Environmental cell , ETEM , Microelectrochemical systems , E-cell , MEMS
Journal title :
Ultramicroscopy
Serial Year :
2012
Journal title :
Ultramicroscopy
Record number :
2158472
Link To Document :
بازگشت