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Anionic Chain-Growth Polymerization: Overview01:20

Anionic Chain-Growth Polymerization: Overview

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The polymerization process that involves carbanion as an intermediate is called anionic polymerization. It is also a type of addition or chain-growth polymerization. Anionic polymerization gets initiated by a strong nucleophile such as an organolithium or a Grignard reagent. The most commonly used initiator for anionic polymerization is butyl lithium. Monomers involved in anionic polymerization must possess a vinyl group bonded to one or two electron-withdrawing groups. For instance,...
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Cationic Chain-Growth Polymerization: Mechanism00:57

Cationic Chain-Growth Polymerization: Mechanism

2.9K
The cationic polymerization mechanism consists of three steps: initiation, propagation, and termination. In the initiation step of the polymerization process, the π bond of a monomer gets protonated by the Lewis acid catalyst, which is formed from boron trifluoride and water. The protonation of the π bond generates a carbocation stabilized by the electron‐donating group. In the propagation step, the π bond of the second monomer acts as a nucleophile and attacks the...
2.9K
Polymer Classification: Architecture01:14

Polymer Classification: Architecture

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Polymers are classified as linear or branched on the basis of their chain architecture. The polymer chains in linear polymers have a long chain-like structure with minimal to no branching at all. Even if a polymer features large substituent groups on the monomer, which appear as branches to the skeleton, it is not considered a branched polymer. A branched polymer contains secondary polymer chains that arise from the main polymer chain. The branching occurs when the polymer growth shifts from...
4.0K
Types of Step-Growth Polymers: Polyesters01:20

Types of Step-Growth Polymers: Polyesters

2.6K
The introduction of polyesters has brought major development to the textile industry. The wrinkle-free behavior of polyester blends has eliminated the need for starching and ironing clothes.
Polyesters are commonly prepared from terephthalic acid and ethylene glycol; the crude product is known as poly(ethylene terephthalate) or PET. However, polyesters are synthesized industrially by transesterification of dimethyl terephthalate with ethylene glycol at 150 °C. The two reactants and the polymer...
2.6K
Anionic Chain-Growth Polymerization: Mechanism01:04

Anionic Chain-Growth Polymerization: Mechanism

2.6K
The mechanism for anionic chain-growth polymerization involves initiation, propagation, and termination steps. In the initiation step, a nucleophilic anion, such as butyl lithium, initiates the polymerization process by attacking the π bond of the vinylic monomer. As a result, a carbanion, stabilized by the electron‐withdrawing group, is generated. The resulting carbanion acts as a Michael donor in the propagation step and attacks the second vinylic monomer, which acts as a Michael...
2.6K
Step-Growth Polymerization: Overview01:03

Step-Growth Polymerization: Overview

4.5K
Step-growth or condensation polymerization is a stepwise reaction of bi or multifunctional monomers to form long-chain polymers. As all the monomers are reactive, most of the monomers are consumed at the early stages of the reaction to form small chains of reactive oligomers, which then combine to form long polymer chains in the late stages. Hence, the reaction has to proceed for a long time to achieve high molecular weight polymers.
Many natural and synthetic polymers are produced by...
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Methionine Functionalized Biocompatible Block Copolymers for Targeted Plasmid DNA Delivery
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Methionine Functionalized Biocompatible Block Copolymers for Targeted Plasmid DNA Delivery

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Poliacetileno "dopado" con boro

Keda Hu1, Zhen Zhang1, James Burke1

  • 1Department of Chemistry & Chemical Biology, University of New Mexico , MSC03 2060, 1 UNM, Albuquerque, New Mexico 87131, United States.

Journal of the American Chemical Society
|July 27, 2017
PubMed
Resumen
Este resumen es generado por máquina.

Los investigadores sintetizaron nuevos polímeros conjugados (PC) que contienen boro sin espina dorsal aromática. Estos poliacetilenos dopados con boro (BPA) muestran una mejor deslocalización electrónica, abriendo nuevas vías para materiales avanzados.

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Área de la Ciencia:

  • Ciencias de los materiales
  • Química de los polímeros
  • Productos electrónicos orgánicos

Sus antecedentes:

  • Los polímeros conjugados (PC) son cruciales para la electrónica orgánica.
  • La incorporación de boro en las columnas vertebrales de polímeros es una estrategia emergente para afinar las propiedades electrónicas.
  • Los PC existentes que contienen boro a menudo dependen de las fracciones aromáticas, lo que limita la deslocalización de la columna vertebral.

Objetivo del estudio:

  • Síntesis y caracterización de una nueva clase de polímeros conjugados que contienen boro en la cadena principal.
  • Investigar los polietileno dopados con boro (BPA) como los primeros ejemplos de CPs que contienen boro en la cadena principal y carecen de fracciones aromáticas en la columna vertebral.
  • Comprender cómo las cadenas laterales conjugadas influyen en las propiedades físicas y electrónicas de estos nuevos polímeros.

Principales métodos:

  • Espectroscopia de resonancia magnética nuclear (RMN)
  • Espectroscopia de absorción y emisión
  • Voltametría cíclica
  • Cálculos teóricos
  • Experimentos de titulación con fluoruro

Principales resultados:

  • Síntesis y caracterización exitosas de nuevos polímeros conjugados de cadena principal que contienen boro (PC).
  • Demostración de los poliacetilenos dopados con boro (BPA) como los primeros PC de cadena principal no aromáticos que contienen boro.
  • Evidencia de una deslocalización electrónica mejorada a lo largo de la cadena principal del polímero debido a la ausencia de unidades aromáticas.
  • Conocimiento detallado del impacto de las cadenas laterales conjugadas cruzadas en las propiedades del polímero.

Conclusiones:

  • Los polietileno dopados con boro (BPA) desarrollados representan un avance significativo en los polímeros conjugados de cadena principal que contienen boro.
  • La ausencia de fracciones aromáticas en la columna vertebral del polímero mejora la deslocalización electrónica, ofreciendo potencial para mejorar el rendimiento electrónico.
  • Este trabajo proporciona una base para el diseño de nuevos polímeros que contienen boro con propiedades adaptadas para aplicaciones avanzadas.