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Title: Jenseits von Ladungsausgleich: Gegenkationen in der Polyoxometallat‐Chemie

Abstract

Abstract Polyoxometallate (POMs) sind molekulare Metalloxidanionen, die Anwendung in Energiewandlung und ‐speicherung, biomolekularer Chemie sowie Materialdesign und ‐integration finden. Das Wechselspiel von intrinsisch anionischen POMs mit organischen oder anorganischen Gegenionen wird häufig übersehen, ist jedoch essenziell, um die Aggregation, Stabilisierung, Löslichkeit und Funktion von POMs zu verstehen. Jenseits von einfachen Alkalimetall‐ oder Ammoniumkationen können neuartige Anwendungen durch vielseitige Kationen wie Dendrimere, mehrwertige Metallkationen, Metallkomplexe, Amphiphile oder Alkaloidkationen erzielt werden. Dieser Aufsatz gibt einen Überblick über grundlegende POM‐Kation‐Wechselwirkungen in Lösung, die daraus resultierenden Festkörperstrukturen und bespricht neuartige Reaktivitäten und Eigenschaften, die aus diesen Wechselwrkungen resultieren. Wir untersuchen, wie anwendungsnahe Forschung das Kation‐kontrollierte Design neuartiger POM‐Materialien ermöglicht hat, was wiederum den Wunsch nach der Aufklärung der Grundlagen von POM‐Kation‐Wechselwirkungen angeregt hat.

Authors:
 [1];  [2]; ORCiD logo [1]; ORCiD logo [2]
  1. Anorganische Chemie I Universtität Ulm Albert-Einstein-Allee 11 89081 Ulm Deutschland
  2. Department of Chemistry Oregon State University Corvallis OR 97331 USA
Publication Date:
Sponsoring Org.:
USDOE
OSTI Identifier:
1580769
Alternate Identifier(s):
OSTI ID: 1572577
Grant/Contract Number:  
DE SC0010802
Resource Type:
Published Article
Journal Name:
Angewandte Chemie
Additional Journal Information:
Journal Name: Angewandte Chemie Journal Volume: 132 Journal Issue: 2; Journal ID: ISSN 0044-8249
Publisher:
Wiley Blackwell (John Wiley & Sons)
Country of Publication:
Germany
Language:
English

Citation Formats

Misra, Archismita, Kozma, Karoly, Streb, Carsten, and Nyman, May. Jenseits von Ladungsausgleich: Gegenkationen in der Polyoxometallat‐Chemie. Germany: N. p., 2019. Web. doi:10.1002/ange.201905600.
Misra, Archismita, Kozma, Karoly, Streb, Carsten, & Nyman, May. Jenseits von Ladungsausgleich: Gegenkationen in der Polyoxometallat‐Chemie. Germany. https://doi.org/10.1002/ange.201905600
Misra, Archismita, Kozma, Karoly, Streb, Carsten, and Nyman, May. Thu . "Jenseits von Ladungsausgleich: Gegenkationen in der Polyoxometallat‐Chemie". Germany. https://doi.org/10.1002/ange.201905600.
@article{osti_1580769,
title = {Jenseits von Ladungsausgleich: Gegenkationen in der Polyoxometallat‐Chemie},
author = {Misra, Archismita and Kozma, Karoly and Streb, Carsten and Nyman, May},
abstractNote = {Abstract Polyoxometallate (POMs) sind molekulare Metalloxidanionen, die Anwendung in Energiewandlung und ‐speicherung, biomolekularer Chemie sowie Materialdesign und ‐integration finden. Das Wechselspiel von intrinsisch anionischen POMs mit organischen oder anorganischen Gegenionen wird häufig übersehen, ist jedoch essenziell, um die Aggregation, Stabilisierung, Löslichkeit und Funktion von POMs zu verstehen. Jenseits von einfachen Alkalimetall‐ oder Ammoniumkationen können neuartige Anwendungen durch vielseitige Kationen wie Dendrimere, mehrwertige Metallkationen, Metallkomplexe, Amphiphile oder Alkaloidkationen erzielt werden. Dieser Aufsatz gibt einen Überblick über grundlegende POM‐Kation‐Wechselwirkungen in Lösung, die daraus resultierenden Festkörperstrukturen und bespricht neuartige Reaktivitäten und Eigenschaften, die aus diesen Wechselwrkungen resultieren. Wir untersuchen, wie anwendungsnahe Forschung das Kation‐kontrollierte Design neuartiger POM‐Materialien ermöglicht hat, was wiederum den Wunsch nach der Aufklärung der Grundlagen von POM‐Kation‐Wechselwirkungen angeregt hat.},
doi = {10.1002/ange.201905600},
journal = {Angewandte Chemie},
number = 2,
volume = 132,
place = {Germany},
year = {Thu Oct 31 00:00:00 EDT 2019},
month = {Thu Oct 31 00:00:00 EDT 2019}
}

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https://doi.org/10.1002/ange.201905600

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Electronic and relativistic contributions to ion-pairing in polyoxometalate model systems
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Spontaneous Self-Assembly of Metal−Organic Cationic Nanocages to Form Monodisperse Hollow Vesicles in Dilute Solutions
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Self-Assembled Polyoxometalates Nanoparticles as Pickering Emulsion Stabilizers
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Are Keggin’s POMs Charged Nanocolloids or Multicharged Anions?
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Polyoxometalate, Cationic Cluster, and γ-Cyclodextrin: From Primary Interactions to Supramolecular Hybrid Materials
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Synthesis of Dendritic Polyoxometalate Complexes Assembled by Ionic Bonding and Their Function as Recoverable and Reusable Oxidation Catalysts
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Porous Crystal Formation from Polyoxometalate Building Blocks:  Single-Crystal Structure of [AlO 4 Al 12 (OH) 12 (H 2 O) 24 ][Al(OH) 6 Mo 6 O 18 ] 2 ((OH)· 29.5H 2 O
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Polyoxometalate-Driven Self-Assembly of Short Peptides into Multivalent Nanofibers with Enhanced Antibacterial Activity
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Reversible Redox Reactions in an Extended Polyoxometalate Framework Solid
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