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Effect of Atmosphere and Dopants on Sintering of SnO_2

机译:气氛和掺杂剂对SnO_2烧结的影响

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摘要

Tin oxide is an n type semiconductor material with a high covalent behavior. Mass transport in this oxide depends on the surface state promoted by atmosphere or by the solid solution of aliovalent oxide doping. The sintering and grain growth of this type of oxide powder is then controlled by atmosphere and by extrinsic oxygen vacancy formation. For pure SnO_2 powder the surface state depends only on the interaction of atmosphere molecules with the SnO_2 surface. Inert atmosphere like argon or helium promotes oxygen vacancy formation at the surface due to reduction of SnO_2 to SnO at the surface and liberation of oxygen molecules forming oxygen vacancies. As a consequence surface diffusion is enhanced leading to grain coarsening but no densification. Oxygen atmosphere inhibits SnO_2 reduction by decreasing the surface oxygen vacancy concentration. Addition of dopants with lower valence at the sintering temperature creates extrinsic charged oxygen vacancies that promote mass transport at the grain boundary leading to densification and grain growth of this polycrystalline oxide.
机译:氧化锡是具有高共价行为的n型半导体材料。在该氧化物中的质量传输取决于气氛或通过掺杂aliovalent氧化物的固溶体促进的表面状态。然后,通过气氛和外在氧空位的形成来控制这种氧化物粉末的烧结和晶粒生长。对于纯SnO_2粉末,其表面状态仅取决于气氛分子与SnO_2表面的相互作用。惰性气体(如氩气或氦气)会由于表面SnO_2还原为SnO并释放形成氧空位的氧分子而促进表面氧空位的形成。结果,增强了表面扩散,导致晶粒粗化,但没有致密化。氧气氛通过降低表面氧空位浓度来抑制SnO_2的还原。在烧结温度下添加价数较低的掺杂剂会产生外在的带电氧空位,从而促进晶界处的质量传输,从而导致该多晶氧化物的致密化和晶粒生长。

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