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About Dendrimers: Structure, Physical Properties, and Applications

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This article is published in Chemical Reviews.The article was published on 1999-05-01. It has received 2175 citations till now.

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Aggregation-Induced Emission: Together We Shine, United We Soar!

TL;DR: This paper presents a meta-analysis of the chiral stationary phase transition of Na6(CO3)(SO4)2, a major component of the response of the immune system to Na2CO3.
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Chitosan chemistry and pharmaceutical perspectives.

TL;DR: Department of Pharmaceutics, National Institute of Pharmaceutical Education and Research (NIPER), Sector 67, S. S. Nagar, Punjab-160 062, India, Institute of Biochemistry, Faculty of Medicine, Polytechnic University, Via Ranieri 67, IT-60100 Ancona, Italy, and Department of Medicinal Chemistry & Natural Products,The Hebrew University of Jerusalem, School of Pharmacy-Faculty of medicine, Jerusalem 91120, Israel.
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Dendrimer-Encapsulated Metal Nanoparticles: Synthesis, Characterization, and Applications to Catalysis

TL;DR: Intradendrimer hydrogenation and carbon-carbon coupling reactions in water, organic solvents, biphasic fluorous/organic solvent, and supercritical CO2 are also described.
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A field guide to foldamers.

TL;DR: I. Foldamer Research 3910 A. Backbones Utilizing Bipyridine Segments 3944 1.
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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.
References
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Journal ArticleDOI

Polyvalent Interactions in Biological Systems: Implications for Design and Use of Multivalent Ligands and Inhibitors.

TL;DR: Polyvalent interactions can be collectively much stronger than corresponding monovalent interactions, and they can provide the basis for mechanisms of both agonizing and antagonizing biological interactions that are fundamentally different from those available inmonovalent systems.
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A new class of polymers: Starburst-dendritic macromolecules

TL;DR: 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.
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Linear solvation energy relationships. 23. A comprehensive collection of the solvatochromic parameters, .pi.*, .alpha., and .beta., and some methods for simplifying the generalized solvatochromic equation

TL;DR: In this article, a table of donnees (pour de nombreux solvants) des valeurs des parametres M*, α and β donnant respectivement la polarisabilite du solvant, son pouvoir de donneur de proton, and d'accepteur de protons dans les liaisons hydrogene solute-solvant
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Preparation of polymers with controlled molecular architecture. A new convergent approach to dendritic macromolecules

TL;DR: 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.
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