Porphyrin Materials for Solar Cells

来源 :The First Asian Conference on Porphyrins, Phthalocyanines an | 被引量 : 0次 | 上传用户:jxnydxlhy1
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
  Porphyrin dyes with a push-pull feature have been prepared and used in dye-sensitized solar cells(DSCs),their spectral,electrochemical and photovoltaic properties were investigated.
其他文献
卟啉类大环化合物不仅在催化、电产氢以及传感器方面有着重要的应用,而且在抗肿瘤方面具有潜在的应用前景[1,2],近年来,PDT 作为一种新型的治疗肿瘤的方法,已经成为科学家们广泛研究的热点.PDT与传统的肿瘤治疗方法相比,具有创伤性小和治疗效果好等优点.
An Ir8Pd4-heteronuclear metal-organic cage(MOC-51)was assembled from bipodal metalloligand[Ir(ppy)2(qpy)(BF4)](qpy=4,4:2,2:4,4-quaterpyridine; ppy=2-Phenylpridine)with Pd(Ⅱ)salt.The cubic barrelshaped
In recent years,photodynamic therapy(PDT)has become an important cancer treatment technology.It has beenincreasingly used in the treatment of various cancer.However,in the field of leukemia treatment,
The endoplasmic reticulum(ER),as the largest organelle in eukaryotic cells,plays complex but pivotal roles in multiple intracellular metabolic functions,involved in biosynthesis,sensing,and signal tra
生物分子特异性识别性能的化合物可望运用于肿瘤靶向治疗及抗耐药菌的感染[1]。我们近期研究发现二吡啶取代的近红外吸收效应的氟硼吡咯能用于线粒体靶向性成像及血液中铜离子的检测;三苯胺基团取代的氟硼吡咯能进入线粒体,通过调节线粒体硫氧还蛋白实现肿瘤的抑制[2];而金刚烷取代的氟硼吡咯能区别生物体系中游离铜离子及螯合的铜离子。
Photodynamic therapy(PDT)has recently emerged as a promising noninvasive and safe treatment protocol for cancers and other non-malignant diseases.PDT involves the site-specific delivery of a photosens
Ru complexes have been extensively studied for their potential use in energy conversion and molecular recognition,due to their favorable photochemistry and photophysical properties [1-2].In recent yea
The natural planar and rigid structures of most of the hydrophobic photosensitizers(PSs)(such as tetraphenyl porphyrin(TPP))significantly reduce their loading efficiency in polymeric nanoparticles(NPs
In the past decades,fast growth in energy consumption and demand has prompted us focused on artificial photosynthesis for H2 production over semiconductors,which could contribute to sustainable energy
Water splitting is an ideal energy storage carrier for the next generation of renewable energy systems,other molecules such as CH4,and CO can also be used for energy storage to provide clean renewable