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2005
R Shenhar, Jeoung, E , Srivastava, S , Norsten, TB , and Rotello, VM . 2005. Crosslinked Nanoparticle Stripes And Hexagonal Networks Obtained Via Selective Patterning Of Block Copolymer Thin Films. Advanced Materials, 17, Pp. 2206-2210. doi:10.1002/adma.200500624. Abstract
Robust arrays of ordered nanoparticles (see Figure and cover) have been created by combining two self-assembly strategies: microphase separation of block copolymers and coordination chemistry. Thin films of a microphase-separated block copolymer serve as templates for patterning of terpyridine-functionalized gold nanoparticles. Subsequent treatment with iron salts crosslinks the patterned nanoparticles via the formation of iron–terpyridine complexes.
R Shenhar, Xu, H , Frankamp, BL , Mates, TE , Sanyal, A , Uzun, O , and Rotello, VM . 2005. Molecular Recognition In Structured Matrixes: Control Of Guest Localization In Block Copolymer Films. Journal Of The American Chemical Society, 127, Pp. 16318-16324. doi:10.1021/ja055490f. Abstract
We demonstrate the use of molecular recognition to control the spatial distribution of guest molecules within block copolymer films. Block copolymers bearing recognition units were combined with complementary and noncomplementary molecules, and the extent of segregation of these molecules into the different domain types within microphase-separated thin films was quantitatively analyzed using dynamic secondary ion mass spectrometry (SIMS). Complementarity between the guest molecules and the polymer functionalities proved to be a key factor and an efficient tool for directing the segregation preference of the molecules to the different domain types. The effect of segregation preference on the glass transition temperature was studied using differential scanning calorimetry (DSC), and the results corroborate the SIMS findings. In a complementary study, guests with tunable sizes (via dendron substituents) were used to control block copolymer morphology. Morphological characterization using transmission electron microscopy (TEM) and X-ray diffraction reveal that selectivity differences can be directly translated into the ability to obtain different morphologies from recognition unit-functionalized block copolymer scaffolds.
R Shenhar, Norsten, TB , and Rotello, VM . 2005. Polymer-Mediated Nanoparticle Assembly: Structural Control And Applications. Advanced Materials, 17, Pp. 657-669. doi:10.1002/adma.200401291. Abstract
Nanoparticle-polymer composites are diverse and versatile functional materials, with applications ranging from electronic device fabrication to catalysis. This review focuses on the use of chemical design to control the structural attributes of polymer-mediated assembly of nanoparticles. We will illustrate the use of designed particles and polymers to create nanocomposites featuring interesting and pragmatic structures and properties. We will also describe applications of these engineered materials.