Brumbach Michael T, Boal Andrew K, Wheeler David R
Sandia National Laboratories, Albuquerque, New Mexico 87123, USA.
Langmuir. 2009 Sep 15;25(18):10685-90. doi: 10.1021/la901130a.
Porphyrin adsorption on TiO2 nanoparticles has been achieved for multiple porphyrins, and in mixed porphyrin assemblies, via axial ligation to surface-bound pyridine anchored by either para carboxylic or phosphonic functionalizations. Homogenous assemblies were prepared and characterized, while mixed metalloporphyrin assemblies were demonstrated by controlling the concentration ratios of respective porphyrins in the modifying solution. Evaluation of the assemblies using spectroscopic techniques and electrochemistry confirms high porphyrin retention, while exhibiting their surface bound optical and electrochemical properties. A thorough study is discussed where several metalloporphyrins have been evaluated (Ru(CO)OEP, Ru(CO)TPP, and ZnTPP) for relative comparisons and relationships to pyridyl axial binding strengths. The systematic study evaluates multiple background cases using either H2TPP, TiO2 modification with benzoic acid, or unmodified TiO2 to confirm the high affinity of Ru and Zn porphyrins for surface-anchored pyridyl sites. The simple method of step-by-step coordinative anchoring of porphyrins to TiO2 using small, commercially available molecules is highly adaptable for use in dye-sensitized solar cells (DSSC) where intimate contact between the absorbing dye and the semiconductor is required. DSSC devices with novel mixed porphyrin assemblies were shown to give higher power performance than DSSCs utilizing sensitization with only one type of porphyrin.
通过轴向连接到由对羧基或膦酸官能化锚定的表面结合吡啶上,多种卟啉以及混合卟啉组装体已实现了在TiO2纳米颗粒上的吸附。制备并表征了均匀组装体,同时通过控制修饰溶液中各卟啉的浓度比来展示混合金属卟啉组装体。使用光谱技术和电化学对组装体进行评估,证实了卟啉的高保留率,同时展现出它们的表面结合光学和电化学性质。讨论了一项深入研究,其中评估了几种金属卟啉(Ru(CO)OEP、Ru(CO)TPP和ZnTPP)以进行相对比较以及与吡啶基轴向结合强度的关系。该系统研究使用H2TPP、用苯甲酸修饰的TiO2或未修饰的TiO2评估了多个背景案例,以确认Ru和Zn卟啉对表面锚定吡啶基位点的高亲和力。使用小的市售分子将卟啉逐步配位锚定到TiO2的简单方法非常适合用于染料敏化太阳能电池(DSSC),在这种电池中需要吸收染料与半导体之间紧密接触。具有新型混合卟啉组装体的DSSC器件显示出比仅使用一种卟啉敏化的DSSC具有更高的功率性能。