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The geometries,electronic structures,polarizabilities and hyperpolarizabilities,as well as the UV-Vis spectra of the two organic dye sensitizers containing bis-dimethylfluorenyl amino benzofuran were studied via density functional theory and time-dependent DFT.

运用密度泛函理论和含时密度泛函理论研究了两种含二-二甲基芴氨基苯并呋喃基团的有机染料敏化剂的几何结构、电子结构、极化率和超极化率以及紫外可见谱。

The dye Eosin and Coumarin mixture is used to sensitize nanocrystalline porous TiO2 films.

采用曙红与香豆素混合的方法,配制成敏化剂修饰纳米晶薄膜。

There are blue and green emission spectral series in the phosphors activated by three valence ions of Terbium.

三价铽离子激活的磷光体有兰色和绿色两个发射谱线系列。本文分析了这两个系列谱线的强度,随着激活剂浓度而变化的实验结果,发现在激活剂浓度达到一定数量之后,当继续增加激活剂含量时,兰色和绿色发射谱线相对强度的变化规律,和加入敏化剂的结果是一致的。

In order to manufacture Dye-sensitized Solar Cells of considerable efficiency under the current experimental conditions, we have adopted the process of even adhesion and spray painting to produce the nano-sized TiO2 porous films, and applied natural chlorophyll with N719 as the Dye Sensitizer; as for Electrolytes, we have selected a low volatile salt which has 1-/13 redox couple, and ITO conductive glass is used to be the conducting substrate.

本实验采用均胶和喷涂工艺制备得到TiO2纳米多孔薄膜,用天然叶绿素以及N719作为染料敏化剂,并选用含I-/I3-氧化还原电对的低挥发性盐作为电解质,以ITO导电玻璃作为导电基底,在现有的实验条件下,制备具有一定效率的染料敏化太阳电池***请不要用google等翻译工具,不然偶也不用提问了*********谢拉是太阳能电池方面的,以下是摘要中的一些专业词汇 TiO2纳米多孔薄膜 nano-sized TiO2 porous films 染料敏化太阳电池 Dye-sensitized Solar Cells 染料敏化剂 dye

The photodegradation rate of M-PPV 1 was constrained by DABCO that quenches the triplet state of M-PPV; 2increased when the solvent changed from benzene to deuterated benzene in whichthe lifetime of triplet state is longer than that in benzene; 3 was improveddramatically with high concentration of M-PPV triplet state was generated by energytrasfer from biacetyl.

发现:1能猝灭M-PPV的三重态的1,4-二氮二环[2.2.2]辛烷也能有效地抑制光氧化反应的进行;2能提高M-PPV三重态寿命的氘代溶剂也能使M-PPV光氧化降解速率加快,3丁二酮和M-PPV间的能量传递能够提高M-PPV三重态的浓度,这和丁二酮作三重态敏化剂敏化光氧化M-PPV时,M-PPV的光降解速率大大增加也是一致的。

N719 makes the sensitizer by the star dye dipyridyl ruthenium complex compound, Has successfully assembled the dye sensitization unidimensional ZnO nanometer crystal solar battery prototype component.

以明星染料联吡啶钌络合物(N719)做敏化剂,成功地组装了染料敏化的一维ZnO纳米晶光电池原型器件。

It was found that the thermodynamically unfavourable isomerization of quadracyclane to norbornadiene could be accomplished in the presence of toluene or durene as a co-sensitizer.

首次发现在甲苯、杜苯等芳烃共敏化下,可以使原来不能进行的、热力学不利的四环烷→降冰片二烯异构化得以进行,并根据CIDNP结果提出这是由于生成了敏化剂/底物/芳烃三元基激络合物使反应的势能面改变造成的并促进单线态的系间窜跃。

In the presence of different sensitizers, we measured the rate of photoisomerization of t-stilbene to cis-stilbene as a method for evaluating the efficiency of these compounds.

本文还测定了存在不同敏化剂时,芪的顺、反异构化反应速度,以此评价化合物的敏化效率。

The invention belongs to the technical field of solar batteries, which more particularly relates to a preparation of a novel triphenylamine group organic dye and the application thereof as a photosensitizer in a dye-sensitized solar cell.

本发明属于太阳能电池技术领域,具体为一种新型三苯胺基有机染料的制备及其在染料敏化太阳能电池中作为光敏化剂的应用。

The invention belongs to solar energy battery technology, which in detail relates to a novle triphenylamine organic dye and preparation and its application as photosensitizer in dye sensitization solar energy battery.

本发明属于太阳能电池技术邻域,具体为一类新型三苯胺基有机染料和制备及其在染料敏化太阳能电池中作为光敏化剂的应用。

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