2) low band gap polymers
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低能带隙聚合物
1.
It is important of applications of low band gap polymers to improve the properties of their photoelectric devices.
低能带隙聚合物对光电器件具有重要的意义。
3) low band gap
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低带隙
4) low energy gap
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低能隙
1.
The trend about low energy gap polymer conductor that will be developed in future is also discussed.
论述了导电高分子材料的研究现状 ;介绍了导电聚苯胺的合成、掺杂方法、结构与性能的关系以及应用 ;对未来的研究发展趋势 ,即低能隙高分子导体的研究进行了讨
5) energy band gap
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能量带隙
1.
The effects of content of Nb2O5 on refractive index,stability,optical band gap and energy band gap of the glasses are discussed.
利用样品的吸收光谱计算了其直接允许跃迁、间接允许跃迁及能量带隙。
6) Band gap
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能带隙
1.
According to the concept of "polymer band gap engineering", a series of soluble low band gap polymers were designed and synthesized, including polymers containing phenylene units among the backbone, polymers with electron- and hole- transport units as the side chains, and polymers grafted by porphyrin units.
从聚合物能带隙工程的原理出发,设计和合成了一系列可溶性的低能带隙聚合物、侧链含有电子与空穴传输单元的低能带隙聚合物以及侧链含有卟啉单元的低能带隙聚合物,并探讨了它们对聚合物太阳能电池的光谱敏化作用。
补充资料:间接带隙(见半导体的能带结构)
间接带隙(见半导体的能带结构)
indirect band gap
I’ed接带隙indireet band gap见半导体的能带结构。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条