4.6 Article

Measurement of the Energy and High-Pressure Dependence of X-ray-Induced Decomposition of Crystalline Strontium Oxalate

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JOURNAL OF PHYSICAL CHEMISTRY A
卷 121, 期 38, 页码 7108-7113

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AMER CHEMICAL SOC
DOI: 10.1021/acs.jpca.7b05604

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资金

  1. Department of Energy National Nuclear Security Administration (DOE-NNSA) [DE-NA0002912]
  2. DOE [DE-FC08-01NV14049]
  3. University of Nevada, Las Vegas
  4. DOE-NNSA [DE-NA0001974]
  5. DOE-BES [DE-FG02-99ER4.5775, DE-AC02-06CH11357]
  6. NSF

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We report measurements of the X-ray-induced decomposition of crystalline strontium oxalate (SrC2O4) as a function of energy and high pressure in two separate experiments. SrC2O4 at ambient conditions was irradiated with monochromatic synchrotron X-rays ranging in energy from 15 to 28 keV. A broad resonance of the decomposition yield was observed with a clear maximum when irradiating with similar to 20 keV X-rays and ambient pressure. Little or no decomposition was observed at 15 keV, which is below the Sr K-shell energy of 16.12 keV, suggesting that excitation of core electrons may play an important role in the destabilization of the C2O42- anion. A second experiment was performed to investigate the high-pressure dependence of the X-ray-induced decomposition of strontium oxalate at fixed energy. SrC2O4 was compressed in a diamond anvil cell (DAC) in the pressure range from 0 to 7.6 GPa with 1 GPa increments and irradiated in situ with 20 keV X-rays. A marked pressure dependence of the decomposition yield of SrC2O4 was observed with a decomposition yield maximum at around 1 GPa, suggesting that different crystal structures of the material play an important role in the decomposition process. This may be due in part to a phase transition observed near this pressure.

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