采用核磁共振波谱法对聚环戊烯橡胶进行一维氢谱和碳谱分析,结合二维核磁HSQC(Heteronuclear Single Quantum Coherence)方法,对聚环戊烯橡胶顺反异构体核磁谱峰进行归属。建立了聚环戊烯橡胶顺反异构体含量计算公式,根据该公式计算得...采用核磁共振波谱法对聚环戊烯橡胶进行一维氢谱和碳谱分析,结合二维核磁HSQC(Heteronuclear Single Quantum Coherence)方法,对聚环戊烯橡胶顺反异构体核磁谱峰进行归属。建立了聚环戊烯橡胶顺反异构体含量计算公式,根据该公式计算得到聚环戊烯橡胶顺反异构体含量。将本方法定量结果与红外法定量结果进行比对,结果显示,核磁共振波谱法更适合于聚环戊烯橡胶顺反异构体定量分析。展开更多
Ligand effect of the catalytic system WCl6-Et2AlCl for ring opening metathesis polymerization (ROMP) of dicyclopentadiene (DCPD) was investigated. The experimental results show that adding sterically hindered phenol-2...Ligand effect of the catalytic system WCl6-Et2AlCl for ring opening metathesis polymerization (ROMP) of dicyclopentadiene (DCPD) was investigated. The experimental results show that adding sterically hindered phenol-2. 6-di-tert-butylcresylol(DTBC) in the catalytic system not only can obviously increase the monomer conversion of polymerization but also improve the mechanical properties, such as notched impact strength (NIS), tensile strength (TS) ect. 5 of the synthesized polyicycolpentadiene (PDCPD). A similar effect can be observed by using a sterically hindered polymeric phenol - linear phenol formaldehyde resin (LPF) as a ligand.展开更多
Tri(4-methoxy-1-benzyloxyl)(pentamethylcyclopentadienyl)titanium(Cp*Ti(OBzOCH3)3) in conjunction with modified methylalumoxane(mMAO) was an efficient catalyst for the living polymerization of butene-1. The steric and ...Tri(4-methoxy-1-benzyloxyl)(pentamethylcyclopentadienyl)titanium(Cp*Ti(OBzOCH3)3) in conjunction with modified methylalumoxane(mMAO) was an efficient catalyst for the living polymerization of butene-1. The steric and highly electron-releasing nature of the catalyst was probably responsible for the resulting polymers with high molecular weight and narrow molecular weight distribution(Mw/Mn=1.25 to 1.36). The effects of polymerization conditions on the catalytic activity, molecular weight and stereo-regularity of the products were investigated in detail. Especially, the content of TMA in MAO used in polymerization of butene-1 had a profound influence on polymer microstructure. The structural properties of the polybutene-1 product were characterized by 13 C NMR, GPC, DSC and WAXD. The results indicated that the polybutene-1 was isotacticity-rich(at 0 ℃, [mmmm] reached up to 60.3%) and the relative content of methylene pentad sequences [mmmm] of the polymer increased with a decreasing temperature.展开更多
文摘采用核磁共振波谱法对聚环戊烯橡胶进行一维氢谱和碳谱分析,结合二维核磁HSQC(Heteronuclear Single Quantum Coherence)方法,对聚环戊烯橡胶顺反异构体核磁谱峰进行归属。建立了聚环戊烯橡胶顺反异构体含量计算公式,根据该公式计算得到聚环戊烯橡胶顺反异构体含量。将本方法定量结果与红外法定量结果进行比对,结果显示,核磁共振波谱法更适合于聚环戊烯橡胶顺反异构体定量分析。
文摘Ligand effect of the catalytic system WCl6-Et2AlCl for ring opening metathesis polymerization (ROMP) of dicyclopentadiene (DCPD) was investigated. The experimental results show that adding sterically hindered phenol-2. 6-di-tert-butylcresylol(DTBC) in the catalytic system not only can obviously increase the monomer conversion of polymerization but also improve the mechanical properties, such as notched impact strength (NIS), tensile strength (TS) ect. 5 of the synthesized polyicycolpentadiene (PDCPD). A similar effect can be observed by using a sterically hindered polymeric phenol - linear phenol formaldehyde resin (LPF) as a ligand.
基金the National Natural Science Foundation of China (No. 21174011)the Natural Science Foundation of Beijing, China (No. 2102036)
文摘Tri(4-methoxy-1-benzyloxyl)(pentamethylcyclopentadienyl)titanium(Cp*Ti(OBzOCH3)3) in conjunction with modified methylalumoxane(mMAO) was an efficient catalyst for the living polymerization of butene-1. The steric and highly electron-releasing nature of the catalyst was probably responsible for the resulting polymers with high molecular weight and narrow molecular weight distribution(Mw/Mn=1.25 to 1.36). The effects of polymerization conditions on the catalytic activity, molecular weight and stereo-regularity of the products were investigated in detail. Especially, the content of TMA in MAO used in polymerization of butene-1 had a profound influence on polymer microstructure. The structural properties of the polybutene-1 product were characterized by 13 C NMR, GPC, DSC and WAXD. The results indicated that the polybutene-1 was isotacticity-rich(at 0 ℃, [mmmm] reached up to 60.3%) and the relative content of methylene pentad sequences [mmmm] of the polymer increased with a decreasing temperature.