Understanding and Controlling the Self Assembly of Nanoscale Polyoxometalate Clusters
Lead Research Organisation:
University of Glasgow
Department Name: School of Chemistry
Abstract
Nanoscale polyoxometalate clusters are molecules of metal oxide 10,000 times thinner than a human hair (a common metal oxide is rust) and they provide arguably an unrivalled class of molecules displaying a wide range of very interesting physical properties (they can be used as molecular machines to 'help' one molecule turn into another very quickly without waste, they can change colour in light and be used to store information like dyes on a DVD, be used like a battery to store electricity and even as very small magnets). This is because they can be thought of being based on a common set of building blocks, or lego bricks, that can be put together in many ways to build different types of molecular objects in 'one step'. Although these molecules are large and contain many thousands of building blocks, the way they build themselves is not understood and it is not possible to design the molecules using a blueprint or any other plan. Also these molecules are fragile and easily fall apart.In this research we will develop an approach to look at the 'one step' construction of these very large clusters with the aim of working out exactly how they are built. To do this we will need to adopt a number of different styles of detective work, from examining the structure of these molecules by making them more stable by wrapping them in a type of plastic, to trapping the individual lego bricks before they assemble into the nanoscale cluster. We will do this by weighing the clusters and building blocks present, and by measuring their molecular fingerprint when we make the clusters. We will also design different plans and test them by trying to predict the shape of the cluster before we make them. We will also look at the clusters using an extremely powerful microscope so we can accurately make this comparison.
Organisations
People |
ORCID iD |
Leroy Cronin (Principal Investigator) |
Publications
Robbins PJ
(2013)
Use of ion-mobility mass spectrometry (IMS-MS) to map polyoxometalate Keplerate clusters and their supramolecular assemblies.
in Chemical communications (Cambridge, England)
Sartzi H
(2015)
Trapping the d Isomer of the Polyoxometalate-Based Keggin Cluster with a Tripodal Ligand.
in Angewandte Chemie (International ed. in English)
Sartzi H
(2015)
Trapping the d Isomer of the Polyoxometalate-Based Keggin Cluster with a Tripodal Ligand
in Angewandte Chemie
Zhan C
(2014)
Time-resolved assembly of cluster-in-cluster {Ag12}-in-{W76} polyoxometalates under supramolecular control.
in Angewandte Chemie (International ed. in English)
Zang HY
(2013)
Template-directed assembly of polyoxothiometalate scaffolds into nanomolecular architectures.
in Angewandte Chemie (International ed. in English)
Miras H
(2012)
Sulfite Anions as Structure-Directing Templates for the Engineering of Modular Polyoxometalates
in European Journal of Inorganic Chemistry
Ye JC
(2018)
Strategies to Explore and Develop Reversible Redox Reactions of Li-S in Electrode Architectures Using Silver-Polyoxometalate Clusters.
in Journal of the American Chemical Society
Ritchie C
(2009)
Spontaneous assembly and real-time growth of micrometre-scale tubular structures from polyoxometalate-based inorganic solids.
in Nature chemistry
Quesada Cabrera R
(2012)
Spectroscopic studies of sulfite-based polyoxometalates at high temperature and high pressure
in Journal of Solid State Chemistry
Surman AJ
(2016)
Sizing and Discovery of Nanosized Polyoxometalate Clusters by Mass Spectrometry.
in Journal of the American Chemical Society
Takashima Y
(2016)
Shrink wrapping redox-active crystals of polyoxometalate open frameworks with organic polymers via crystal induced polymerisation.
in Chemical communications (Cambridge, England)
Zheng Q
(2018)
Self-Sorting of Heteroanions in the Assembly of Cross-Shaped Polyoxometalate Clusters.
in Journal of the American Chemical Society
Zhang B
(2015)
Self-assembly of triangular polyoxometalate-organic hybrid macroions in mixed solvents.
in Chemical communications (Cambridge, England)
Gao J
(2011)
Self-assembly of a family of macrocyclic polyoxotungstates with emergent material properties
in Chemical Science
MacDonald L
(2018)
Selective hydrogenation of nitroarenes using an electrogenerated polyoxometalate redox mediator.
in Chemical communications (Cambridge, England)
Wilson EF
(2011)
Real-time observation of the self-assembly of hybrid polyoxometalates using mass spectrometry.
in Angewandte Chemie (International ed. in English)
Musumeci C
(2011)
Programmable Surface Architectures Derived from Hybrid Polyoxometalate-Based Clusters
in The Journal of Physical Chemistry C
Boyd T
(2017)
POMzites: A Family of Zeolitic Polyoxometalate Frameworks from a Minimal Building Block Library.
in Journal of the American Chemical Society
Vilà-Nadal L
(2013)
Polyoxometalate {W18O56XO6} clusters with embedded redox-active main-group templates as localized inner-cluster radicals.
in Angewandte Chemie (International ed. in English)
Jing B
(2013)
Polyoxometalate macroion induced phase and morphology instability of lipid membrane
in Chemical Science
Cooper GJ
(2011)
Osmotically driven crystal morphogenesis: a general approach to the fabrication of micrometer-scale tubular architectures based on polyoxometalates.
in Journal of the American Chemical Society
Miras HN
(2012)
Oscillatory template exchange in polyoxometalate capsules: a ligand-triggered, redox-powered, chemically damped oscillation.
in Journal of the American Chemical Society
Gabb D
(2012)
Organic-soluble lacunary {M2(P2W15)2} polyoxometalate sandwiches showing a previously unseen aßßa isomerism.
in Dalton transactions (Cambridge, England : 2003)
Mirza MM
(2017)
One dimensional transport in silicon nanowire junction-less field effect transistors.
in Scientific reports
Sans V
(2014)
Non-equilibrium dynamic control of gold nanoparticle and hyper-branched nanogold assemblies
in Chemical Science
Lydon C
(2012)
Nanoscale growth of molecular oxides: assembly of a {V6} double cubane between two lacunary {P2W15} polyoxometalates.
in Angewandte Chemie (International ed. in English)
Winter RS
(2013)
Nanoscale control of polyoxometalate assembly: a {Mn8W4} cluster within a {W36Si4Mn10} cluster showing a new type of isomerism.
in Chemistry (Weinheim an der Bergstrasse, Germany)
Boulay AG
(2012)
Morphogenesis of polyoxometalate cluster-based materials to microtubular network architectures.
in Chemical communications (Cambridge, England)
Endo D
(2012)
Molecular Motions and Hydrogen-Bonding Networks in ( o -Aminoanilinium)-(Crown Ethers)-[PMo 12 O 40 ] 4- Crystals
in Bulletin of the Chemical Society of Japan
Cameron JM
(2016)
Investigating the Transformations of Polyoxoanions Using Mass Spectrometry and Molecular Dynamics.
in Journal of the American Chemical Society
Boyd T
(2011)
Investigating Cation Binding in the Polyoxometalate-Super-Crown [P 8 W 48 O 184 ] 40-
in Chemistry - A European Journal
Thiel J
(2012)
Insights into the Self-Assembly Mechanism of the Modular Polyoxometalate "Keggin-Net" Family of Framework Materials and Their Electronic Properties
in Crystal Growth & Design
Akutagawa T
(2011)
Hydrogen-bonded assemblies of two-electron reduced mixed-valence [XMo12O40] (X = P and Si) with p-phenylenediamines.
in Inorganic chemistry
Chen JJ
(2015)
High-Performance Polyoxometalate-Based Cathode Materials for Rechargeable Lithium-Ion Batteries.
in Advanced materials (Deerfield Beach, Fla.)
Cronin L
(2012)
From serendipity to design of polyoxometalates at the nanoscale, aesthetic beauty and applications
in Chemical Society Reviews
Zheng Q
(2015)
Following the Reaction of Heteroanions inside a {W 18 O 56 } Polyoxometalate Nanocage by NMR Spectroscopy and Mass Spectrometry
in Angewandte Chemie
Mitchell SG
(2011)
Extended polyoxometalate framework solids: two Mn(II)-linked {P8W48} network arrays.
in Inorganic chemistry
Tsunashima R
(2011)
Exploring the thermochromism of sulfite-embedded polyoxometalate capsules.
in Physical chemistry chemical physics : PCCP
Fujibayashi M
(2016)
Exploring the solvent mediated assembly and redox activity of a POM-organic hybrid [Na(SO3)2(PhPO3)4MoV4MoVI14O49]5.
in New journal of chemistry = Nouveau journal de chimie
Yin P
(2013)
Exploring the programmable assembly of a polyoxometalate-organic hybrid via metal ion coordination.
in Journal of the American Chemical Society
Xuan W
(2017)
Exploring the Molecular Growth of Two Gigantic Half-Closed Polyoxometalate Clusters {Mo180 } and {Mo130 Ce6 }.
in Angewandte Chemie (International ed. in English)
Molina PI
(2013)
Exploring the assembly of supramolecular polyoxometalate triangular morphologies with Johnson solid cores: [(Mn(II)(H2O)3)2(K?{a-GeW10Mn(II)2O38}3)]19-.
in Inorganic chemistry
Zang H
(2016)
Exploiting the equilibrium dynamics in the self-assembly of inorganic macrocycles based upon polyoxothiometalate building blocks.
in Chemical communications (Cambridge, England)
Miras HN
(2012)
Engineering polyoxometalates with emergent properties.
in Chemical Society reviews
Lydon C
(2012)
Directed assembly of nanoscale Co(II)-substituted {Co9[P2W15]3} and {Co14[P2W15]4} polyoxometalates.
in Chemical communications (Cambridge, England)
Miras H
(2011)
Direct Synthesis and Mass Spectroscopic Observation of the {M 40 } Polyoxothiometalate Wheel
in European Journal of Inorganic Chemistry
Vilà-Nadal L
(2017)
Design and synthesis of polyoxometalate-framework materials from cluster precursors
in Nature Reviews Materials
Pradeep CP
(2011)
Design and synthesis of "dumb-bell" and "triangular" inorganic-organic hybrid nanopolyoxometalate clusters and their characterisation through ESI-MS analyses.
in Chemistry (Weinheim an der Bergstrasse, Germany)
Chen J
(2017)
Design and Performance of Rechargeable Sodium Ion Batteries, and Symmetrical Li-Ion Batteries with Supercapacitor-Like Power Density Based upon Polyoxovanadates
in Advanced Energy Materials
Miras HN
(2010)
Controlling transformations in the assembly of polyoxometalate clusters: {Mo11V7}, {Mo17V8} and {Mo72V30}.
in Chemical communications (Cambridge, England)
Description | New inorganic clusters that can have potential applications in materials and electronics, an increased knowledge on how some techniques like MS and NMR can be used to predict / decipher their structures and formation processes. |
Exploitation Route | The development of MS and NMR techniques for this type of molecules is of high interest for people working in the field of inorganic chemistry, but also for industries and academics wishing to develop new analytical techniques for materials and nanoelectronics starting materials. |
Sectors | Aerospace, Defence and Marine,Chemicals,Electronics,Energy,Pharmaceuticals and Medical Biotechnology |
URL | http://www.croninlab.com |
Description | The clusters discovered and the understanding of their formation generated by this work have been used in a range of different research areas such as catalysis, nanofabrication and in biological-like environments |
Sector | Chemicals |