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Formation of Extended Covalently Bonded Ni Porphyrin Networks on the Au(lll) Surface
引用本文:Sergey A. Krasnikov,Catherine M. Doyle,Natalia N. Sergeeva,Alexei B. Preobrajenski,Nikolay A.Vinogradov,Yulia N. Sergeeva,Alexei A. Zakharov,Mathias O. Senge,Attilio A. Cafolla. Formation of Extended Covalently Bonded Ni Porphyrin Networks on the Au(lll) Surface[J]. Nano Research, 2011, 4(4): 376-384. DOI: 10.1007/s12274-010-0092-7
作者姓名:Sergey A. Krasnikov  Catherine M. Doyle  Natalia N. Sergeeva  Alexei B. Preobrajenski  Nikolay A.Vinogradov  Yulia N. Sergeeva  Alexei A. Zakharov  Mathias O. Senge  Attilio A. Cafolla
作者单位:[1]School of Physical Sciences, Dublin City University, Glasnevin, Dublin 9, Ireland [2]Centre tbr Research on Adaptive Nanostructures and Nanodevices (CRANN), School of Physics, Trinity College Dublin, Dublin 2, Ireland [3]SFI Tetrapyrrole Laboratory, School of Chemistry, Trinity College Dublin, Dublin 2, Ireland [4]MAX-Lab, Lund University, Box 118, 22100 Lund, Sweden
摘    要:

关 键 词:镍卟啉  表面层  Au  网络  扫描隧道显微镜  X射线吸收  分子层  电子衍射

Formation of extended covalently bonded Ni porphyrin networks on the Au(111) surface
Sergey A. Krasnikov,Catherine M. Doyle,Natalia N. Sergeeva,Alexei B. Preobrajenski,Nikolay A. Vinogradov,Yulia N. Sergeeva,Alexei A. Zakharov,Mathias O. Senge,Attilio A. Cafolla. Formation of extended covalently bonded Ni porphyrin networks on the Au(111) surface[J]. Nano Research, 2011, 4(4): 376-384. DOI: 10.1007/s12274-010-0092-7
Authors:Sergey A. Krasnikov  Catherine M. Doyle  Natalia N. Sergeeva  Alexei B. Preobrajenski  Nikolay A. Vinogradov  Yulia N. Sergeeva  Alexei A. Zakharov  Mathias O. Senge  Attilio A. Cafolla
Affiliation:(1) Department of Chemistry and Pharmacy, University Erlangen-N?rnberg, Egerlandstra?e 3, 91058 Erlangen, Germany
Abstract:The growth and ordering of {5,10,15,20-tetrakis(4-bromophenyl)porphyrinato}nickel(II) (NiTBrPP) molecules on the Au(111) surface have been investigated using scanning tunnelling microscopy, X-ray absorption, core-level photoemission, and microbeam low-energy electron diffraction. When deposited onto the substrate at room temperature, the NiTBrPP forms a well-ordered close-packed molecular layer in which the molecules have a flat orientation with the porphyrin macrocycle plane lying parallel to the substrate. Annealing of the NiTBrPP layer on the Au(111) surface at 525 K leads to dissociation of bromine from the porphyrin followed by the formation of covalent bonds between the phenyl substituents of the porphyrin. This results in the formation of continuous covalently bonded porphyrin networks, which are stable up to 800 K and can be recovered after exposure to ambient conditions. By controlling the experimental conditions, a robust, extended porphyrin network can be prepared on the Au(111) surface that has many potential applications such as protective coatings, in sensing or as a host structure for molecules and clusters.
Keywords:Porphyrins   covalently bonded networks   scanning tunnelling microscopy   X-ray photoemission spectroscopy  near-edge X-ray absorption fine structure   Au(111)
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