我们报告了一种简便的合成路线,该路线基于微波辅助程序来获得功能化的四吡啶配体及其反式-dithiocyanato钌络合物。钌配合物已使用硅胶色谱柱进行了纯化,方法是保护作为异丁酯的羧酸基团,然后将其水解。高纯度复合物在整个可见光区域均表现出全色响应。对溶液中的钌络合物进行了DFT /时间依赖性DFT计算,并将其吸附到TiO 2上分析相对的电子和光学特性。带有官能化四吡啶吡啶配体的钌配合物在染料敏化太阳能电池中用作敏化剂,产生的短路光电流密度超过19 mA cm -2,入射光子到电流的转换效率范围从400到900不等,在700 nm时超过80%。
few selective JMJD6 inhibitors have been reported. In this investigation, molecular docking and biological activity evaluation were performed to retrieve new JMJD6 inhibitors, which led to the identification of a hit compound, J2. Further structural optimization and structure–activityrelationship (SAR) analysis towards J2 were carried out, which gave a new potent JMJD6 inhibitor, 7p. This compound
A Simple Synthetic Route to Obtain Pure<i>Trans</i>-Ruthenium(II) Complexes for Dye-Sensitized Solar Cell Applications
作者:Claudia Barolo、Jun-Ho Yum、Emma Artuso、Nadia Barbero、Davide Di Censo、Maria Grazia Lobello、Simona Fantacci、Filippo De Angelis、Michael Grätzel、Mohammed Khaja Nazeeruddin、Guido Viscardi
DOI:10.1002/cssc.201200973
日期:2013.11
We report a facile synthetic route to obtain functionalized quaterpyridine ligand and its trans‐dithiocyanato ruthenium complex, based on a microwave‐assisted procedure. The ruthenium complex has been purified using a silica chromatographic column by protecting carboxylic acid groups as iso‐butyl ester, which are subsequently hydrolyzed. The highly pure complex exhibits panchromatic response throughout
我们报告了一种简便的合成路线,该路线基于微波辅助程序来获得功能化的四吡啶配体及其反式-dithiocyanato钌络合物。钌配合物已使用硅胶色谱柱进行了纯化,方法是保护作为异丁酯的羧酸基团,然后将其水解。高纯度复合物在整个可见光区域均表现出全色响应。对溶液中的钌络合物进行了DFT /时间依赖性DFT计算,并将其吸附到TiO 2上分析相对的电子和光学特性。带有官能化四吡啶吡啶配体的钌配合物在染料敏化太阳能电池中用作敏化剂,产生的短路光电流密度超过19 mA cm -2,入射光子到电流的转换效率范围从400到900不等,在700 nm时超过80%。