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1)  lead-tellurium sediment
铅碲渣
1.
Determination of tellurium in lead-tellurium sediment by flame atomic absorption spectrometry;
火焰原子吸收光谱法测定铅碲渣中碲
2)  tellurium lead
碲铅
3)  tellurium slag
碲渣
1.
Thermodynamic analysis and experimental studies of leaching lead-rich tellurium slag;
从高铅碲渣中浸出碲的热力学分析及实验
2.
Study on process of recovering tellurium from the tellurium slag
从碲渣中回收碲的工艺研究
4)  lead telluride
碲化铅
1.
The microstructure and morphology of the lead telluride optical thin films prepared by ion beam assisted deposition(IBAD) were observed by atomic force microscopy(AFM).
利用原子力显微镜(AFM)研究了离子束辅助沉积碲化铅(PbTe)薄膜的微观结构和表面形貌。
5)  kuranakhite
碲锰铅矿
6)  PbTe
碲化铅
1.
Study on crystal growth and physical property of thermoelectric material lead telluride PbTe;
热电材料碲化铅PbTe的晶体生长及物理性质研究
2.
Preparation of PbTe Nanoparticals under Mild Conditions
温和条件下碲化铅纳米颗粒的制备
3.
, Infrared reflectivity spectra with variant parameter PbTe crystal was measured and compared, in order to choose high grade material with low carrier conce- ntration and high mobility.
通过测量碲化铅晶体的红外反射光谱可以比较、分析不同晶体的性能,从而可选出低浓度、高迁移率的优质材料。
补充资料:铅碲合金
分子式:
CAS号:

性质:铅和碲的合金,含有0.02%~0.085%碲,余为铅。加入少量碲可以消除杂质铋对耐蚀性的有害影响,细化晶粒,提高强度,改善耐蚀性。熔融法制备,压力加工成材,用于机械电子电器等工业。

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