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华东理工大学材料科学与工程学院,上海,200237
纸质出版日期:2016-12-20,
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胡爱国. 基于Bergman环化反应的高分子合成方法[J]. 高分子学报, 2016,(12):1635-1644.
Hu Aiguo. Bergman Cyclization Polymerization[J]. Acta Polymerica Sinica, 2016,(12):1635-1644.
胡爱国. 基于Bergman环化反应的高分子合成方法[J]. 高分子学报, 2016,(12):1635-1644. DOI: 10.11777/j.issn1000-3304.2016.16225.
Hu Aiguo. Bergman Cyclization Polymerization[J]. Acta Polymerica Sinica, 2016,(12):1635-1644. DOI: 10.11777/j.issn1000-3304.2016.16225.
高分子合成化学是高分子科学的基础,高效的聚合反应是合成高分子材料的关键.Bergman环化反应是一种可以形成芳香双自由基活性物质的化学过程.芳基双自由基可以快速偶联形成聚芳烃,为此类聚合物的合成提供简洁的方法.本文系统地介绍了Bergman环化反应进入高分子科学后的发展轨迹,阐述了我们研究组利用该反应的原位聚合机制以及不需要催化剂不产生副产物的特点,在明确该反应的聚合反应机理的基础上,建立了线形聚合物、聚合物粒子、面形聚合物等具有多种特殊拓扑结构形貌以及功能的聚合物纳米材料的工作.最后,对Bergman环化反应中尚存在的问题进行总结并对其未来在高分子科学中的发展予以展望.
Synthetic polymeric chemistry is one of the basic parts of polymer science
and highly efficient polymerization reactions are essential for the synthesis of high performance polymeric materials
for which the development of new synthetic methods for the emerging polymer science is of great importance.Bergman cyclization is a chemical process during which highly reactive aryl diradicals are formed from enediyne precursors.Bergman cyclization has shown strong impacts on a number of application fields including pharmaceutics
synthetic chemistry and material science.The diradicals intermediates stemmed from enediynes can cause DNA cleavage under physiological conditions
leading to the strong cytotoxicity of many naturally occurred enediyne antibiotics.Meanwhile
the diradicals intermediates can quickly couple with each other to construct polyarylenes
providing a novel method to synthesize this kind of conjugated polymers thanks to the advantages of facile operation
high efficiency
tailored structure and catalyst-free feature.Moreover
the conjugated polymers generated through Bergman cyclization show many remarkable properties
such as excellent thermal stability
good solubility and processability
which enables these polymers to be further manufactured into carbon-rich materials.In this article
a brief overview of the trajectory of Bergman cyclization in polymer science was introduced
followed by the introduction of the research advances mainly from our group in developing polymerization methods with Bergman cyclization
taking advantages of its catalyst-free
by-product-free features and in situ polymerization mechanism to synthesize new polymeric materials with various structures and morphology.These synthetic strategies include fabrication of rod-like polymers with polyester
dendrimer and chiral imide side chains
functionalization of carbon nanomaterials by surface-grafting conjugated polymers
formation of nanoparticles by intramolecular collapse of single polymer chains
construction of carbon nanomembranes on the external and internal surface of inorganic nanomaterials.These polymers with novel structural features were further used in a variety of fields like energy transformation
energy storage
catalyst support
and fluorescent detection.At the end of this article
an outlook of the future development of Bergman cyclization in medicinal chemistry and especially in polymer science is presented.
Bergman环化反应原位聚合高分子纳米复合材料二维聚合物高分子可控合成
Bergman cyclizationIn situ polymerizationPolymer nanocomposites materialsTwo dimensional polymersControlled synthesis of polymers
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