Sn-Ge-As alloy as well as preparation method and use thereof
An arsenic alloy, tin germanium technology, applied in the field of tin germanium arsenic alloy material and its preparation, can solve the problem of difficulty in adding arsenic element, and achieve the effects of high arsenic content, wide frequency band, and reducing series resistance
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Embodiment 1
[0054] The tin-germanium-arsenic master alloy is prepared by the following preparation method, and its composition and mass percentage are: Ge: 3%, As: 10%. Sn: balance (referred to as SnGe3As10).
[0055] The preparation process is as follows:
[0056] a) Prepare raw materials: Purify tin 4N (99.99%) raw materials by electrolysis to remove impurity elements (mainly control Pb, Sb, In, Bi and rare earth elements), so that the purity of metal tin can reach more than 5N (>99.999 %), purchased germanium and arsenic raw materials above 5N; calculated and weighed according to the above-mentioned composition and mass percentage ratio.
[0057] b) Put the quartz crucible in the order of arsenic, germanium and tin, and then put the quartz crucible into the autoclave;
[0058] c) vacuuming, vacuum degree 5Pa;
[0059] d) Fill the autoclave with argon, and control the pressure in the autoclave within the range of 5MPa;
[0060] e) heating up, controlling the heating rate to 10°C / min...
Embodiment 2
[0066] The method described in Example 1 was used to prepare a tin-germanium-arsenic master alloy, and its composition and mass percentage were: Ge: 1%, As: 5%. Sn: balance (referred to as SnGe1As5).
Embodiment 3
[0068] The method described in Example 1 was used to prepare the tin-germanium-arsenic master alloy, and its composition and weight percentage were: Ge: 5%, As: 10%. Sn: balance (referred to as SnGe5As10).
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