UV-Visible Absorption Spectroscopic Properties of Phthalocyanines and Related Macrocycles

吸收(声学) 光化学 酞菁 材料科学 化学 纳米技术 复合材料
作者
Takamitsu Fukuda,Nagao Kobayashi
出处
期刊:Handbook of porphyrin science 卷期号:: 1-644 被引量:42
标识
DOI:10.1142/9789814307246_0014
摘要

Handbook of Porphyrin ScienceHandbook of Porphyrin Science, pp. 1-644 (2010) No AccessUV-Visible Absorption Spectroscopic Properties of Phthalocyanines and Related MacrocyclesTakamitsu Fukuda and Nagao KobayashiTakamitsu FukudaDepartment of Chemistry, Graduate School of Medicine, Osaka University, Toyonaka 560-0043, Japan and Nagao KobayashiDepartment of Chemistry, Graduate School of Science, Tohoku University, Sendai 980-8578, Japanhttps://doi.org/10.1142/9789814307246_0014Cited by:17 PreviousNext AboutSectionsPDF/EPUB ToolsAdd to favoritesDownload CitationsTrack CitationsRecommend to Library ShareShare onFacebookTwitterLinked InRedditEmail Abstract: The following sections are included: List of Abbreviations I. Introduction II. Basic Theoretical Description of the Absorption Properties of Phthalocyanines III. Absorption Spectra of Pcs A. H2Pc and HPc B. Group 1: Li2Pc, LiHPc, LiPc, Na2Pc and K2Pc C. Group 2: BePc, MgPc, CaPc and BaPc D. Group 3: ScPc, ScPc2, YPc2 and Y2Pc3 E. Complexes of the Lanthanide Elements F. Complexes of the Actinide Elements G. Group 4: TiPc, ZrPc, ZrPc2 and HfPc H. Group 5: VPc, NbPc and TaPc I. Group 6: CrPc, MoPc and WPc J. Group 7: MnPc, TcPc, RePc and RePc2 K. Group 8: FePc, RuPc and OsPc L. Group 9: CoPc, RhPc and IrPc M. Group 10: NiPc, PdPc and PtPc N. Group 11: CuPc, AgPc and AuPc O. Group 12: ZnPc, CdPc, Cd2Pc3 and HgPc P. Group 13: B-subPc, AlPc, GaPc, InPc and TlPc Q. Group 14: SiPc, GePc, SnPc, SnPc2 and PbPc R. Group 15: PPc, AsPc, SbPc, BiPc, BiPc2 and Bi2Pc3 IV. Collective Absorption Data Tables V. Acknowledgment VI. References FiguresReferencesRelatedDetailsCited By 17Zinc(II), Palladium(II), and Metal-Free Phthalocyanines Bearing Nipagin-Functionalized Substituents against Candida auris and Selected Multidrug-Resistant MicrobesDaniel Ziental, Dariusz T. Mlynarczyk, Emil Kolasinski, Emre Güzel and Jolanta Dlugaszewska et al.12 August 2022 | Pharmaceutics, Vol. 14, No. 8Menthol modified zinc(II) phthalocyanine regioisomers and their photoinduced antimicrobial activity against Staphylococcus aureusJoanna Szymczak, Lukasz Sobotta, Jolanta Dlugaszewska, Michal Kryjewski and Jadwiga Mielcarek1 Sep 2021 | Dyes and Pigments, Vol. 193From cuvette to cells: How the central metal ion modulates the properties of phthalocyanines and porphyrazines as photosensitizersGabriel F.M. Pereira and Thiago T. Tasso1 May 2021 | Inorganica Chimica Acta, Vol. 519Tuning the Acceptor Unit of Push–Pull Porphyrazines for Dye-Sensitized Solar CellsDiana-Paola Medina, Javier Fernández-Ariza, Maxence Urbani, Frédéric Sauvage and Tomás Torres et al.7 April 2021 | Molecules, Vol. 26, No. 8Phthalocyanine and Related AnaloguesSoji Shimizu28 April 2021Tetra-(benzo-24-crown-8)-phthalocyanines as a platform for supramolecular ensembles: Synthesis and interaction with viologenEvgeniya A. Safonova, Jennifer A. Wytko, Jean Weiss, Elena A. Ugolkova, Nikolay N. Efimov, Vadim V. Minin, Yulia G. Gorbunova and Aslan Yu. Tsivadze28 August 2020 | Journal of Porphyrins and Phthalocyanines, Vol. 24, No. 09Synthesis, structures and reduction chemistry of monophthalocyanine scandium hydroxidesYumeela Ganga-Sah, Elahe Tajbakhsh, Rachel H. Platel, Wen Zhou and Daniel B. Leznoff16 January 2020 | Journal of Porphyrins and Phthalocyanines, Vol. 23, No. 11n12A highly water-soluble zinc(II) phthalocyanines as potential for PDT studies: Synthesis and characterizationYasemin Baygu and Yaşar Gök1 Oct 2018 | Inorganic Chemistry Communications, Vol. 96Molecular Mechanism of Uptake of Cationic Photoantimicrobial Phthalocyanine across Bacterial Membranes Revealed by Molecular Dynamics SimulationsPhilipp S. Orekhov, Ekaterina G. Kholina, Marine E. Bozdaganyan, Alexey M. Nesterenko and Ilya B. Kovalenko et al.19 March 2018 | The Journal of Physical Chemistry B, Vol. 122, No. 14Changes of phthalocyanine visible color caused by near-IR solvatochromismTaniyuki Furuyama, Shiori Uchiyama, Takayuki Iwamoto, Hajime Maeda and Masahito Segi20 March 2018 | Journal of Porphyrins and Phthalocyanines, Vol. 22, No. 01n03Kinetic study of α-pinene allylic oxidation over FePcCl16-NH2-SiO2 catalystJaime-Andrés Becerra, Lina-María González and Aída-Luz Villa1 Nov 2016 | Journal of Molecular Catalysis A: Chemical, Vol. 423Metal-free phthalocyanine aggregation and binding with amines: Specific and general solvent effects on absorption and fluorescence propertiesTao Wang, Xian-Fu Zhang and Xulin Lu1 Mar 2015 | Journal of Molecular Structure, Vol. 1084Quadruple-decker phthalocyanines — one additional layer for a molecule, one giant leap for phthalocyanine chemistryTakamitsu Fukuda (Japan) and Naoto Ishikawa (Japan)30 October 2014 | Journal of Porphyrins and Phthalocyanines, Vol. 18, No. 08n09Novel 4-(2-(benzo[d]thiazol-2-yl)phenoxy) substituted phthalocyanine derivatives: Synthesis, electrochemical and in situ spectroelectrochemical characterizationAsiye Nas, Halit Kantekin and Atıf Koca1 May 2014 | Journal of Organometallic Chemistry, Vol. 757Synthesis and properties of non-planar octaphenyl-substituted phthalocyaninato manganese(III)Takamitsu Fukuda (Japan), Keita Yamamoto (Japan) and Nagao Kobayashi (Japan)29 August 2013 | Journal of Porphyrins and Phthalocyanines, Vol. 17, No. 08n09Synthesis and Spectroscopic Properties of Phthalocyanine-[60]Fullerene Conjugates Connected Directly by Means of a Four-Membered RingTakamitsu Fukuda, Yuu Kikukawa, Shiori Takaishi and Nagao Kobayashi1 February 2012 | Chemistry - An Asian Journal, Vol. 7, No. 4Preparation and electrochemical and optical properties of α-octaalkylphthalocyanines with four fused TTF unitsTakeshi Kimura (), Toshiharu Namauo (), Kaori Amano (), Nobuhiro Takahashi (), Yutaka Takaguchi (), Tomonori Hoshi () and Nagao Kobayashi ()8 April 2012 | Journal of Porphyrins and Phthalocyanines, Vol. 15, No. 07n08 Handbook of Porphyrin ScienceMetrics History PDF download

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