We have constructed a diamond anvil cell and a cryogenic system for high‐pressure experiments at temperatures down to 1.5 K. A new mechanism is used to apply the force, and the body of the cell contains a heat‐exchanger for use with liquid helium or liquid nitrogen. With the press, a maximum force of 30 000 N can be applied to the diamonds. The force can be changed at any temperature from outside the cryostat. We describe a technique to load metal samples with hydrogen at high pressures and do in situ resistance measurements. With this technique, we have synthesized stoichiometric PdH and PdD at a pressure of ∼4 GPa. We also have measured the pressure dependence of their superconducting transition temperatures. For PdH we find Tc=8.8 K and ∂ ln Tc/∂P=−6.8×10−2 GPa−1, and for PdD we find Tc=11.05 K and ∂ ln Tc/∂P=−5.0×10−2 GPa−1.
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March 1989
Research Article|
March 01 1989
Synthesis of metal hydrides and in situ resistance measurements in a high‐pressure diamond anvil cell
H. Hemmes;
H. Hemmes
Physics Department, Free University, Amsterdam, the Netherlands
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A. Driessen;
A. Driessen
Physics Department, Free University, Amsterdam, the Netherlands
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J. Kos;
J. Kos
Physics Department, Free University, Amsterdam, the Netherlands
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F. A. Mul;
F. A. Mul
Physics Department, Free University, Amsterdam, the Netherlands
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R. Griessen;
R. Griessen
Physics Department, Free University, Amsterdam, the Netherlands
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J. Caro;
J. Caro
Center for Submicron Technology, Delft University of Technology, the Netherlands
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S. Radelaar
S. Radelaar
Center for Submicron Technology, Delft University of Technology, the Netherlands
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Rev. Sci. Instrum. 60, 474–480 (1989)
Article history
Received:
July 08 1988
Accepted:
November 05 1988
Citation
H. Hemmes, A. Driessen, J. Kos, F. A. Mul, R. Griessen, J. Caro, S. Radelaar; Synthesis of metal hydrides and in situ resistance measurements in a high‐pressure diamond anvil cell. Rev. Sci. Instrum. 1 March 1989; 60 (3): 474–480. https://doi.org/10.1063/1.1140402
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