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Open AccessJournal ArticleDOI

A new class of polymers: Starburst-dendritic macromolecules

TLDR
Starburst polymers as mentioned in this paper are a class of topological macromolecules which are derived from classical monomers/oligomers by their extraordinary symmetry, high branching and maximized terminal functionality density.
Abstract
This paper describes the first synthesis of a new class of topological macromolecules which we refer to as “starburst polymers.” The fundamental building blocks to this new polymer class are referred to as “dendrimers.” These dendrimers differ from classical monomers/oligomers by their extraordinary symmetry, high branching and maximized (telechelic) terminal functionality density. The dendrimers possess “reactive end groups” which allow (a) controlled moelcular weight building (monodispersity), (b) controlled branching (topology), and (c) versatility in design and modification of the terminal end groups. Dendrimer synthesis is accomplished by a variety of strategies involving “time sequenced propagation” techniques. The resulting dendrimers grow in a geometrically progressive fashion as shown: Chemically bridging these dendrimers leads to the new class of macromolecules—”starburst polymers” (e.g., (A)n, (B)n, or (C)n).

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Cancer nanotechnology: opportunities and challenges.

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The dawning era of polymer therapeutics

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Journal ArticleDOI

Nonviral Vectors for Gene Delivery

TL;DR: Two nonviral gene delivery systems using either biodegradable poly(D,Llactide-co-glycolide) (PLG) nanoparticles or cell penetrating peptide (CPP) complexes have been designed and studied using A549 human lung epithelial cells.
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Luminescent and Redox-Active Polynuclear Transition Metal Complexes.

TL;DR: This review considers only polynuclear transition metal complexes that can be defined as supramolecular species and that are reported to exhibit luminescence and redox properties, and reviews several interesting systems such as polymer-appended metal.
References
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Book

The Fractal Geometry of Nature

TL;DR: This book is a blend of erudition, popularization, and exposition, and the illustrations include many superb examples of computer graphics that are works of art in their own right.
Journal ArticleDOI

The Fractal Geometry of Nature

TL;DR: A blend of erudition (fascinating and sometimes obscure historical minutiae abound), popularization (mathematical rigor is relegated to appendices) and exposition (the reader need have little knowledge of the fields involved) is presented in this article.
Journal ArticleDOI

Density of states on fractals : « fractons »

TL;DR: In this article, the density of states on a fractal is calculated taking into account the scaling properties of both the volume and the connectivity, and proper mode counting requires a reciprocal space with new intrinsic fracton dimensionality d = 2 d/(2 + δ).
Journal ArticleDOI

Fractal Form of Proteins

TL;DR: In this article, electron spin relaxation measurements on low-spin proteins showed that they occupy a space of fractal dimensionality, in conformity with the dimensionality of a self-avoiding random walk.
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