Cannavacciuolo Felicia D, Yadav Rinku, Esper Alec, Vittoria Antonio, Antinucci Giuseppe, Zaccaria Francesco, Cipullo Roberta, Budzelaar Peter H M, Busico Vincenzo, Goryunov Georgy P, Uborsky Dmitry V, Voskoboynikov Alexander Z, Searles Keith, Ehm Christian, Veige Adam S
Dipartimento di Scienze Chimiche, Università di Napoli Federico II, Via Cintia, 80126, Napoli, Italy.
Department of Chemistry, Center for Catalysis, University of Florida, P.O. Box 117200, Gainesville, FL 32611, USA.
Angew Chem Int Ed Engl. 2022 Jun 7;61(23):e202202258. doi: 10.1002/anie.202202258. Epub 2022 Apr 5.
Efficient and economical plastic waste upcycling relies on the development of catalysts capable of polymer degradation. A systematic high-throughput screening of twenty-eight polymerization catalyst precursors, belonging to the catalyst families of metallocenes, ansa-metallocenes, and hemi- and post-metallocenes, in cis-1,4-polybutadiene (PB) degradation reveals, for the first time, important structure-activity correlations. The upcycling conditions involve activation of the catalysts (at 0.18 % catalyst loading) with tri-iso-butyl aluminum at 50 °C in toluene. The data indicate the ability to degrade PB is a general reactivity profile of neutral group 4 metal hydrides. A simple quantitative-structure activity relationship (QSAR) model utilizing two descriptors for the distribution of steric bulk in the active pocket and one measuring the metal ion electrophilicity reveals the degradation ability improves with increased but not overbearing steric congestion and lower electrophilicity.
高效且经济的塑料废物升级回收依赖于能够实现聚合物降解的催化剂的开发。对属于茂金属、桥连茂金属以及半茂金属和后茂金属催化剂家族的28种聚合催化剂前体进行系统的高通量筛选,用于顺式1,4-聚丁二烯(PB)降解,首次揭示了重要的构效关系。升级回收条件包括在50℃的甲苯中用三异丁基铝(催化剂负载量为0.18%)活化催化剂。数据表明,降解PB的能力是中性4族金属氢化物的一般反应活性特征。一个简单的定量构效关系(QSAR)模型利用两个描述活性口袋中空间位阻分布的描述符和一个测量金属离子亲电性的描述符,揭示了降解能力随着空间位阻增加但不过度以及亲电性降低而提高。