1)  mutation
致变
1.
To understand the effect of chronic fluorosis on abnormality and mutation in chicks,36 one-day LuoManHe cocks were randomly divided into 6 groups of 6 each.
本试验拟在人工复制鸡慢性氟中毒模型的基础上,深入研究高氟对鸡致畸致变作用。
2)  photochromic
光致变色
1.
Experimental study on storage by femtosecond laser writing/reading in photochromic/photobleaching materials;
致变色和光致漂白材料的飞秒激光写/读实验研究
2.
Synthesis of photochromic 1'-(2-hydroxyethyl)-6-nitrio-spiro〔2H-1-benzopyran -2,2'-indoline〕;
致变色化合物1'-(2-羟乙基)-6-硝基螺〔2H-1-苯并吡喃-2,2'-吲哚啉〕的合成
3.
Preparation of Photochromic WO 3/4,4'-BPPOBp Superlattice Film;
致变色WO_3/4,4'-BPPOBp超晶格薄膜的制备
3)  electrochromic
电致变色
1.
Synthesis and characterization of PANI/PSSA-PVA electrochromic film;
聚苯胺/聚苯乙烯磺酸-聚乙烯醇电致变色膜的制备和表征
2.
Properties of electrochromic MoO_3 thin films on plastic substrate;
塑料基MoO_3电致变色薄膜性能
3.
The electrochromic effect of LiClO_4 polyelectrolyte;
LiClO_4有机高分子电解质的电致变色效应
4)  hydrogen-chromics
氢致变色
5)  thermochromic
热致变色
1.
The reported thermally light-adjusting polymeric materials are mainly classified into three types, such as thermotropics, thermochromics and hybrids.
现有的各种热致调光聚合物材料主要分为热致散射、热致变色以及双功能3类。
2.
Applied some kinds of carboxylic acid as solvent,a series of malachite green-boric acid reversible thermochromic paints were prepared by solid phase synthesis method.
选用羧酸类溶剂,采用固相法合成了孔雀石绿-硼酸系列可逆热致变色材料。
3.
This paper chose some kinds of carboxylic acid as the solvent and a series of crystal violet-boric acid reversible thermochromic paints were prepared by solid phase synthesis method.
选用羧酸类溶剂,采用固相法合成了结晶紫-硼酸系列可逆热致变色材料。
6)  photochromism
光致变色
1.
Study on the photochromism of phosphotungstic acid/polyviny pyrrolidone nanocomposite films;
钨磷酸/聚乙烯基吡咯烷酮纳米复合膜的光致变色性能
2.
Quantitative Determination of Citrate in Bismuth Potassium Citrate Tablets by Photochromism;
致变色法测定丽珠得乐中枸橼酸及其盐含量
3.
Synthesis of indolin spiropyran and research of photochromism;
吲哚啉螺吡喃化合物的合成及光致变色性质研究
参考词条
补充资料:场致变宽
分子式:
CAS号:

性质:主要指电场与磁场的影响使谱线变宽。前者称斯塔克变宽(Stark broadening),由外部电场或带电粒子和离子形成的电场引起;后者称塞曼变宽(Zee-man broadening),由电磁场和永久磁场引起。在原子吸收分析条件下,电场强度很弱,可忽略不计;后者在强磁场作用下,谱线发生分裂,可用于背景校正。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。