Green-to-Red Electrochromic Fe(II) Metallo-Supramolecular Polyelectrolytes Self-Assembled from Fluorescent 2,6-Bis(2-pyridyl)pyrimidine Bithiophene
摘要:
The structure and properties of metallo-supramolecular polyelectrolytes (MEPEs) self-assembled from rigid 2,6-bis(2-pyridyl)pyrimidine and the metal ions Fe-II and Co-II are presented. While FeL1-MEPE (L1 = 1,4-bis[2,6-bis(2-pyridyl)pyrimidin-4-yl]benzene) is deep blue, FeL2- and CoL2-MEPE (L2 = 5,5'-bis[2,6-bis(2-pyridyl)pyrimidin-4-yl]-2,2'-bithiophene) are intense green and red in color, respectively. These novel MEPEs display a high extinction coefficient and solvatochromism. Ligand L2 shows a high absolute fluorescence quantum yield (Phi(f) = 82%). Viscosity and static light-scattering measurements reveal that the molar masses of these MEPEs are in the range of 1 x 10(8) g/mol under the current experimental conditions. In water, FeL1-MEPE forms a viscous gel at 20 degrees C (c = 8 mM). Thin films of high optical quality are fabricated by dip coating on transparent conducting indium tin oxide (ITO) glass substrate. Optical, electrochemical, and electrochromic properties of the obtained MEPEs are presented. Green to red and blue to colorless electrochromism is observed for FeL2-MEPE and FeL1-MEPE, respectively. The results show that the electrochromic properties are affected by the ligand topology. The Fe-MEPEs show a reversible redox behavior of the Fe-II/Fe-III couple at 0.86 and 0.82 V versus Fc(+)/Fc and display an excellent redox cycle stability under switching conditions. FeL2-MEPE in its oxidized state exhibits a broad absorption band covering the near-IR region (ca. 1500 nm) due to the ligand-to-metal charge transfer transition originating due to charge delocalization in the bithiophene spacer.
Green-to-Red Electrochromic Fe(II) Metallo-Supramolecular Polyelectrolytes Self-Assembled from Fluorescent 2,6-Bis(2-pyridyl)pyrimidine Bithiophene
摘要:
The structure and properties of metallo-supramolecular polyelectrolytes (MEPEs) self-assembled from rigid 2,6-bis(2-pyridyl)pyrimidine and the metal ions Fe-II and Co-II are presented. While FeL1-MEPE (L1 = 1,4-bis[2,6-bis(2-pyridyl)pyrimidin-4-yl]benzene) is deep blue, FeL2- and CoL2-MEPE (L2 = 5,5'-bis[2,6-bis(2-pyridyl)pyrimidin-4-yl]-2,2'-bithiophene) are intense green and red in color, respectively. These novel MEPEs display a high extinction coefficient and solvatochromism. Ligand L2 shows a high absolute fluorescence quantum yield (Phi(f) = 82%). Viscosity and static light-scattering measurements reveal that the molar masses of these MEPEs are in the range of 1 x 10(8) g/mol under the current experimental conditions. In water, FeL1-MEPE forms a viscous gel at 20 degrees C (c = 8 mM). Thin films of high optical quality are fabricated by dip coating on transparent conducting indium tin oxide (ITO) glass substrate. Optical, electrochemical, and electrochromic properties of the obtained MEPEs are presented. Green to red and blue to colorless electrochromism is observed for FeL2-MEPE and FeL1-MEPE, respectively. The results show that the electrochromic properties are affected by the ligand topology. The Fe-MEPEs show a reversible redox behavior of the Fe-II/Fe-III couple at 0.86 and 0.82 V versus Fc(+)/Fc and display an excellent redox cycle stability under switching conditions. FeL2-MEPE in its oxidized state exhibits a broad absorption band covering the near-IR region (ca. 1500 nm) due to the ligand-to-metal charge transfer transition originating due to charge delocalization in the bithiophene spacer.
Use of metal complex compounds as oxidation catalysts
申请人:Schlingloff Gunther
公开号:US20060052265A1
公开(公告)日:2006-03-09
Use of metal complex compounds of formula (1) and/or (1′) [L
n
Me
m
X
p
]
z
Y
q
(1), [L′
n
Me
m
X
p
]
z
Y
q
(1′), wherein all substituents are as defined in the claims, as catalysts for oxidation reactions, and also novel metal complex compounds and novel ligands.
Use of Metal Complexes Having Bispyridylpyrimidine or Bispyridyltriazine Ligands as Catalysts for Reactions With Peroxy Compounds for Bleaching Coloured Stains on Hard Surfaces
申请人:Wieprecht Torsten
公开号:US20080000032A1
公开(公告)日:2008-01-03
The present invention relates to the use of certain manganese complexes having bispyridylpyrimidine or bispyridyltriazine ligands or mixtures of such ligands as catalysts for reactions with peroxy compounds for bleaching coloured stains on hard surfaces, especially dishes in automatic dishwashers. The invention relates also to cleaning formulations for hard surfaces comprising such catalysts.
Use of metal complex compounds comprising pyridine pyrimidine or s-triazine derived ligands as catalysts for oxidations with organic peroxy acids and/or precursors of organic peroxy acids and h202
申请人:Wieprecht Torsten
公开号:US20090189119A1
公开(公告)日:2009-07-30
The invention accordingly relates to the use as catalysts of at least one metal complex of formula (1) [L
n
Me
m
X
p
]
z
Y
q
(1), wherein all substituents have the meanings as defined in the claims for oxidation reactions with organic peroxy acids and/or precursors of organic peroxy acid and H
2
O
2
, as well as to novel detergent compositions.
Beschrieben werden neue Hetaryl-substituierte Pyridinylpyrimidin-Derivate der Formel (I)
in welcher R¹, R², R³, R⁴, R⁵ und Het die in der Beschreibung angegebene Bedeutung haben, sowie mehrere Verfahren zu deren Herstellung.
Verwendet werden die neuen Verbindungen der Formel (I) zur Bekämpfung von Schädlingen.
LIGANDS, ELECTROCHROMIC METALLO-POLYMERS OBTAINED THEREWITH AND THEIR USE
申请人:Julius-Maximilians-Universität Würzburg
公开号:EP3284801A1
公开(公告)日:2018-02-21
Disclosed are ligands comprising a spacer and two tridentate groups having structural formula I:
T1-B-T2
wherein B is a bond or a linear linking unit (L)m, and wherein T1 and T2 are pyrimidine comprising tridentate groups; metallo-polymers comprising these ligands and the use thereof.
所公开的配体包括一个间隔物和两个结构式为 I 的三叉基团:
T1-B-T2
其中 B 是键或线性连接单元 (L)m,T1 和 T2 是包含三叉戟基团的嘧啶;包含这些配体的金属聚合物及其用途。