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1)  Anionic modification
阴离子修饰
2)  ion modification
离子修饰
1.
The cause which ions doped in TiO_2 improve photocatalytic activity of TiO_2 has been exlained according to the mechanism of ion modification,and being faced with problems and developing prospects of photocatalytic proces.
本文在参考近年来国内外光催化领域文献资料的基础上,综述了过渡金属离子修饰TiO2技术研究新进展。
2.
The cause which ions doped in TiO2 improve photocatalytic activity of TiO2 has been exlained according to the mechanism of ion modification,and being faced with problems and developing prospects of photocatalytic process are set forth.
在参考近年来国内外光催化领域文献资料的基础上,综述了金属离子修饰T iO2技术研究新进展。
3.
The cause which ions doped in TiO2 improve photocatalytic activity of TiO2 has been explained according to the mechanism of ion modification,and being faced with problems and developing prospects of ph.
本文在参考近年来国内外光催化领域文献资料的基础上,综述了TiO2表面金属阳离子修饰及非金属阴离子修饰技术研究新进展。
3)  Modified Ions
离子修饰
1.
Ab Initio Analyses About Chromium(Ⅲ) Oxide and Its Modified Ions;
氧化铬模型及离子修饰从头算分析
4)  Ion beam modification
离子束修饰
5)  Ionic functionalization
离子化修饰
6)  cathode modification
阴极修饰
补充资料:阴离子-阳离子干扰
分子式:
CAS号:

性质:火焰原子吸收光谱分析中,伴生阴离子对待测阳离子测定时信号的抑制作用。它属于化学干扰。例如,测定钙时若有磷酸根离子存在则生成难解离的焦磷酸钙,降低了火焰中基态原子的密度,从而测钙的灵敏度下降。加入三氯化镧可消除干扰,因生成的磷酸镧比焦磷酸钙更加稳定。

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