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Recyclable Polypentenamers with Precise Crystallization and Versatile Functionalization
DOI:10.1021/acs.macromol.4c02655.png)
摘要
En 中文
The recyclability and reuse of polymeric materials have become increasingly necessary. Introducing depolymerizability or degradability into polymers without compromising the mechanical performance but concurrently endowing the polymers with new properties is challenging. In this contribution, a family of polypentenamers with different alkyl side chains ranging from nonyl to octacosyl were synthesized. The polycyclopentene backbone provides polymer depolymerizability, promoting degradation into their original building blocks, which also can repolymerize into polymers, realizing full closed-loop recycling. Crystalline side chains help afford polyethylene-like strength and modulus. The lamellar thickness of sub-5 nm can be precisely controlled. Inserting an ethylene glycol unit along the side chain allowed them to be easily transferred into 10 kinds of new polyolefins with various functions. These degradable polycyclopentene-backboned polymers with crystalline pendants pave sustainable ways for the recyclability and reuse of polyolefin materials for, for example, packaging applications.
Keyword:
OPENING METATHESIS POLYMERIZATION
THERMAL-PROPERTIES
RING
POLYETHYLENE
CYCLOPENTENE
COPOLYMERS
ADMET
POLYOLEFINS
ETHYLENE
DEFECTS
期刊
IF:
5.2
论文数:
3.7W
被引数:
9.4W
机构
引用论文
Variable Temperature ROMP: Leveraging Low Ring Strain Thermodynamics To Achieve Well-Defined Polypentenamers可变温度ROMP: 利用低环应变热力学来实现定义明确的聚戊烯
MACROMOLECULES
IF5.2
Analysis of Ethylene Copolymers with Long-Chain α-Olefins (1-Dodecene, 1-Tetradecene, 1-Hexadecene): A Transition between Main Chain Crystallization and Side Chain Crystallization
ACS OMEGA
IF4.3

