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Journal ArticleDOI

Preparation of polymers with controlled molecular architecture. A new convergent approach to dendritic macromolecules

Craig J. Hawker, +1 more
- 10 Oct 1990 - 
- Vol. 112, Iss: 21, pp 7638-7647
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TLDR
In this article, a convergent growth approach to topological macromolecules based on dendritic fragments is described, where polyether dendric fragments are prepared by starting from what will become the periphery of the molecule and progressing inward.
Abstract
The novel convergent growth approach to topological macromolecules based on dendritic fragments is described. The polyether dendritic fragments are prepared by starting from what will become the periphery of the molecule and progressing inward. In the first step, 2 mol of a benzylic bromide is condensed with the two phenolic groups of the monomer, 3,5-di-hydroxybenzyl alcohol, under phase-transfer conditions. After transformation of the benzylic alcohol functionality of the growing molecule into the corresponding bromide, the procedure is repeated with stepwise addition of the monomer followed again by activation of the benzylic site. After several generations of growth, the resulting dendritic wedges, in their benzylic bromide form, can be coupled to a polyfunctional core such as 1,1,1-tris(4{prime}-hydroxyphenyl)ethane to form the final hyperbranched macromolecule. Unique features of the convergent approach include the control over the nature and placement of the groups that are placed at the periphery of the molecule and the fact that each growth step only involves reaction at a single site of the growing macromolecule.

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Designing dendrimers for biological applications.

TL;DR: Advances in understanding of the role of molecular weight and architecture on the in vivo behavior of dendrimers, together with recent progress in the design of biodegradable chemistries, has enabled the application of these branched polymers as anti-viral drugs, tissue repair scaffolds, targeted carriers of chemotherapeutics and optical oxygen sensors.
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Dendrimers in biomedical applications--reflections on the field.

TL;DR: The reflections on biomedical applications of dendrimers given in this review clearly demonstrate the potential of this new fourth major class of polymer architecture and indeed substantiate the high hopes for the future of dendedrimers.
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Polymer nanocomposites based on functionalized carbon nanotubes

TL;DR: There are several methods for the dispersion of CNTs in the polymer matrix such as solution mixing, melt mixing, electrospinning, in-situ polymerization and chemical functionalization of the carbon nanotubes as discussed by the authors.
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