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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Further Understanding of the Electronic Interactions between N719 Sensitizer and Anatase TiO2 Films: A Combined X-ray Absorption and X-ray Photoelectron Spectroscopic Study
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Further Understanding of the Electronic Interactions between N719 Sensitizer and Anatase TiO2 Films: A Combined X-ray Absorption and X-ray Photoelectron Spectroscopic Study

机译:N719敏化剂与锐钛矿型TiO2薄膜之间电子相互作用的进一步理解:X射线吸收和X射线光电子能谱研究的结合

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In this study, the electronic properties of N719 adsorbed onto anatase were comparably investigated by using X-ray absorption spectroscopy (XAS) and X-ray photoelectron spectroscopy (XPS) techniques. Sensitized TiO2 films made from two different nanocrystalline anatase powders were investigated: a commercial one (Solaronix) and our synthetic variety produced through aqueous synthesis. This was done to investigate how our aqueous-produced nanocrystalline anatase substrates compared with commercial products and to observe whether both nanocrystalline anatase anodes behaved in a similar manner in terms of their bonding and electronic interactions. Surface coordination changes to Ti—O groups previously reported via Ti K-edge extended X-ray absorption fine structure (EXAFS) data [using transmission or fluorescence yield (FY)] between the pure TiO2 and the adsorbed state were not observed in our measurements via the Ti L or K X-ray absorption near-edge structure (XANES) (nor EXAFS) data for both substrates via a surface-sensitive detection technique (total electron yield, TEY). This is likely due to the probing depth of TEY mode (5—10 nm), in which the coordination changes that occur to the surface groups, which should in turn affect the XANES spectrum, are not observed at Ti K- or L-edge XANES spectrum. The C and N K-edge XANES spectra of the N719 adsorbed onto two TiO2 films were for the first time evaluated in this work. From the C K-edge XANES data, the spectral changes revealed that additional electronic states occur between dye molecules and TiO2 surface. The C K-edge XANES spectra allowed us to propose that electronic interactions do not only occur through the covalent bonding of the anchoring groups but also through the aromatic electron density of the bipyridine groups and the d states found in TiO2. This was further confirmed via XPS analysis by monitoring the N bipyridine groups before and after sensitization. XPS used in combination with XAS (in TEY mode) provided complementary information owing to its higher surface sensitivity. The Ti 2p and O 1s XPS spectra showed that adsorption of the dye on TiO2 leads to a change of the surface dipole and/or a change in the Fermi level position in the band gap, which shifts all the core levels of TiO2. These are not equal for both TiO2 substrates in spite of them being nanocrystallnine anatase. This effect was found to be greater for the N719—aqueous TiO2 system than the respective Solaronix one. For the N 1s and S 2p XPS, the shift toward higher energy indicated that there exists an additional H-bonding interaction of the NCS ligand of the dye molecule with the TiO2 surface groups (OH/H2O).
机译:在这项研究中,通过使用X射线吸收光谱(XAS)和X射线光电子能谱(XPS)技术对吸附在锐钛矿上的N719的电子性质进行了比较研究。研究了由两种不同的纳米晶锐钛矿粉制成的敏化TiO2薄膜:一种商品化的(Solaronix),而我们的合成品种是通过水合成制备的。这样做是为了调查我们的水产纳米晶锐钛矿底物与市售产品相比如何,并观察两个纳米晶锐钛矿阳极在键合和电子相互作用方面是否表现出相似的行为。在我们的测量中,未观察到先前通过Ti K边缘扩展X射线吸收精细结构(EXAFS)数据[使用透射或荧光产率(FY)]报告的纯TiO2与吸附态之间的Ti-O基团的表面配位变化。通过表面敏感的检测技术(总电子产量,TEY)通过Ti L或K X射线吸收近边缘结构(XANES)(或EXAFS)获得两个基板的数据。这可能是由于TEY模式的探测深度(5-10 nm)所致,其中在Ti K或L边缘未观察到表面基团发生的配位变化,这反过来又会影响XANES光谱。 XANES光谱。在这项工作中,首次评估了吸附在两个TiO2薄膜上的N719的C和N K边缘XANES光谱。从C K边缘XANES数据来看,光谱变化表明在染料分子和TiO2表面之间出现了其他电子态。 C K边缘XANES光谱使我们提出电子相互作用不仅通过锚定基团的共价键发生,而且通过联吡啶基团的芳族电子密度和TiO2中的d状态发生。通过在致敏前后监测N个联吡啶基团,通过XPS分析进一步证实了这一点。与XAS结合使用的XPS(在TEY模式下)由于其较高的表面敏感性而提供了补充信息。 Ti 2p和O 1s XPS光谱表明,染料在TiO2上的吸附导致表面偶极子的改变和/或带隙中费米能级的位置改变,从而改变了TiO2的所有核心能级。尽管它们是纳米晶锐钛矿,但对于两种TiO2底物而言,它们并不相等。已发现,对于N719-水性TiO2系统,其效果要比相应的Solaronix系统更大。对于N 1s和S 2p XPS,向更高能量的转移表明染料分子的NCS配体与TiO2表面基团(OH / H2O)之间存在额外的H键相互作用。

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