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1)  trans-Polyaeetylene chain
反式聚乙炔链
2)  Trans-polyacetylene
反式聚乙炔
1.
Study on Elementary Excitations in Trans-polyacetylene with the Real Space Kronig-Penny Model;
反式聚乙炔元激发的实坐标空间研究
2.
Anisotropic Electrical Conductivity of Oriented trans-Polyacetylene Doped with Iodine and Bromine;
溴和碘掺杂高取向反式聚乙炔导电性能各向异性研究
3.
Our results on different kinds of samples support the assignment that this peak is from residuals in the preparation, possibly trans-polyacetylene.
而通过对不同样品的比较,从侧面支持了将它归结为杂质,即反式聚乙炔的指认。
3)  trans polyacetylene
反式聚乙炔
1.
Because the soliton lattice should be emerged in trans polyacetylene whe.
反式聚乙炔在重掺杂时会出现孤子晶格,在能隙中央形成孤子能带。
4)  Polyacetylene chain
聚乙炔链
5)  cispolyactylene
顺式聚乙炔
1.
s:From the extended two dimensional SSH model, we have studied numerically the effects of next-neighbour hopping interaction on the electron states, excitations and localizedvibrationalmodes in cispolyactylene.
采用数值计算的方法,研究了次近邻电子跳跃作用对顺式聚乙炔(Cis-PA)的能谱、电子束缚态和双极化子附近的二维局域振动模的影响。
6)  polyphenylacetylene
聚苯乙炔
1.
In this paper,polyphenylacetylene(PPA)is modified by Fe(III)-phthalocyanine on the side-chain by means of special molecular design.
本文基于分子设计的思路,在聚苯乙炔侧链引入酞菁基团对其化学改性,并对其性能作了初步的探索。
补充资料:反式,反式-1,3-丁二烯-1,4-二羧酸
分子式:C6H6O4
分子量:142.11
CAS号:3588-17-8

性质:熔点290°C (dec.)。沸点320°C。水溶性insoluble。

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