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| Content Provider | World Health Organization (WHO)-Global Index Medicus |
|---|---|
| Author | Toney, Michael F. Parilla, Philip A. Fields, Jeremy D. Pool, Vanessa L. Ahmad, Md Imteyaz Yu, Jiafan Van Hest, Maikel F. A. M. Van Campen, Douglas G. Ginley, David S. |
| Description | Country affiliation: United States Author Affiliation: Ahmad MI ( SSRL, SLAC National Accelerator Laboratory, 2575, Sand Hill Road, Menlo Park, California 94025, USA.); Van Campen DG ( SSRL, SLAC National Accelerator Laboratory, 2575, Sand Hill Road, Menlo Park, California 94025, USA.); Fields JD ( National Renewable Energy Laboratory, Golden, Colorado 80401, USA.); Yu J ( SSRL, SLAC National Accelerator Laboratory, 2575, Sand Hill Road, Menlo Park, California 94025, USA.); Pool VL ( SSRL, SLAC National Accelerator Laboratory, 2575, Sand Hill Road, Menlo Park, California 94025, USA.); Parilla PA ( National Renewable Energy Laboratory, Golden, Colorado 80401, USA.); Ginley DS ( National Renewable Energy Laboratory, Golden, Colorado 80401, USA.); Van Hest MF ( SSRL, SLAC National Accelerator Laboratory, 2575, Sand Hill Road, Menlo Park, California 94025, USA.); Toney MF ( SSRL, SLAC National Accelerator Laboratory, 2575, Sand Hill Road, Menlo Park, California 94025, USA.) |
| Abstract | Rapid thermal processing (RTP) is widely used for processing a variety of materials, including electronics and photovoltaics. Presently, optimization of RTP is done primarily based on ex-situ studies. As a consequence, the precise reaction pathways and phase progression during the RTP remain unclear. More awareness of the reaction pathways would better enable process optimization and foster increased adoption of RTP, which offers numerous advantages for synthesis of a broad range of materials systems. To achieve this, we have designed and developed a RTP instrument that enables real-time collection of X-ray diffraction data with intervals as short as 100 ms, while heating with ramp rates up to 100 °Cs(-1), and with a maximum operating temperature of 1200 °C. The system is portable and can be installed on a synchrotron beamline. The unique capabilities of this instrument are demonstrated with in-situ characterization of a Bi2O3-SiO2 glass frit obtained during heating with ramp rates 5 °C s(-1) and 100 °C s(-1), revealing numerous phase changes. |
| ISSN | 00346748 |
| Issue Number | 1 |
| Journal | Review of Scientific Instruments |
| Volume Number | 86 |
| e-ISSN | 10897623 |
| Language | English |
| Publisher | American Institute of Physics |
| Publisher Date | 2015-01-01 |
| Publisher Place | United States |
| Access Restriction | One Nation One Subscription (ONOS) |
| Subject Keyword | Discipline Physics Discipline Chemistry |
| Content Type | Text |
| Resource Type | Article |
| Subject | Medicine Instrumentation |
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