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Nanoscale Control of Polyoxometalate Assembly: A {Mn8W4} Cluster within a {W36Si4Mn10} Cluster Showing a New Type of Isomerism
Authors:Ross S Winter  Dr Jun Yan  Dr Christoph Busche  Dr Jennifer S Mathieson  Dr Alessandro Prescimone  Prof Euan K Brechin  Dr De‐Liang Long  Prof Leroy Cronin
Institution:1. WestCHEM, School of Chemistry, The University of Glasgow, Glasgow G12 8QQ, Scotland (UK);2. EaStCHEM School of Chemistry, The University of Edinburgh, West Mains Road, Edinburgh, EH9 3JJ (UK)
Abstract:Two near isomeric clusters containing a novel {Mn8W4} Keggin cluster within a W36Mn10Si4O136(OH)4(H2O)8]24? cluster are reported: K10Li14 W36Si4O136MnII10(OH)4(H2O)8] ( 1 ) and K10Li13.5Mn0.25W36Si4O136MnII10(OH)4(H2O)8] ( 1′ ). Bulk characterization of the clusters has been carried out by single crystal X‐ray structure analysis, ICP‐MS, TGA, ESI‐MS, CV and SQUID‐magnetometer analysis. X‐ray analysis revealed that 1′ has eight positions within the central Keggin core that were disordered W/Mn whereas 1 contained no such disorder. This subtle difference is due to a differences is how the two clusters assemble and recrystallize from the same mother liquor and represents a new type of isomerism. The rapid recrystallization process was captured via digital microscopy and this uncovered two “intermediate” types of crystal which formed temporarily and provided nucleation sites for the final clusters to assemble. The intermediates were investigated by single crystal X‐ray analysis and revealed to be novel clusters K4Li22W36Si4Mn7O136(H2O)8]?56 H2O ( 2 ) and Mn2K8Li14W36Si4Mn7O136(H2O)8]?45 H2O ( 3 ). The intermediate clusters contained different yet related building blocks to the final clusters which allowed for the postulation of a mechanism of assembly. This demonstrates a rare example where the use X‐ray crystallography directly facilitated understanding the means by which a POM assembled.
Keywords:isomerization  pH control  polyoxometalates  self‐assembly
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