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Inside Cover Self-Template-Directed Formation of Coordination-Polymer Hexagonal Tubes and Rings and their Calcination to ZnO Rings (Angew. Chem. Int. Ed

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Hexagonal
tubes and rings …
… with unusual shapes were generated through a unique self-template-directed growth
mechanism. As described by M. Oh and co-workers in the Communication on
page 1459 ff., initially formed solid coordination polymer particles (CPPs) act as templates for the growth of the final hexagonal tubes and rings. Simple calcination of these
unusually shaped CPPs results in the spontaneous formation of ZnO particles while the
unique shape is maintained.
Inside Cover
Soyoung Jung, Won Cho, Hee Jung Lee, and Moonhyun Oh*
Hexagonal tubes and rings with unusual shapes were generated through a unique selftemplate-directed growth mechanism. As described by M. Oh and co-workers in the
Communication on page 1459 ff., initially formed solid coordination polymer particles
(CPPs) act as templates for the growth of the final hexagonal tubes and rings. Simple
calcination of these unusually shaped CPPs results in the spontaneous formation of
ZnO particles while the unique shape is maintained.
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self, coordination, formation, calcination, ring, polymer, int, cover, angel, chem, hexagonal, insider, template, zno, directed, tube
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