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991.
The copolymerizations of ethylene with polar hydroxyl monomers such as 10-undecen-1-ol, 5-hexen-1-ol and 3-buten-1-ol were investigated by the vanadium(III) catalysts bearing bidentate [N,O] ligands (1, [PhNC(CH3)CHC(Ph)O]VCl2(THF)2; 2, [PhNCHC6H4O]VCl2(THF)2; 3, [PhNCHC(Ph)CHO]VCl2(THF)2). The polar monomers were pretreated by alkylaluminum before the polymerization. High catalytic activities and efficient comonomer incorporations can be easily obtained by changing monomer masking reagents and polymerization conditions in the presence of diethylaluminium chloride as a cocatalyst. The longer the spacer group, the higher the incorporation of the monomer. Under the mild conditions, the incorporation level of 10-undecen-1-ol reached 13.9 mol% in the resultant copolymers was obtained. The reactivity ratios of copolymerization (r1 = 41.4, r2 = 0.02, r1r2 = 0.83) were evaluated by Fineman–Ross method. According to 13C NMR spectra, polar units were located both on the main chain and at the chain end. The end-hydroxylated polymers were probably obtained due to the formation of dormant species after the insertion of the comonomer followed by the chain transfer to alkylaluminum. In addition, the signals derived from polar monomer inverse insertion were detected for the first time. 相似文献
992.
Zhang Zheng Mu Xianzhong Tu Chuang Sun Zheren Hu Guangwen 《Clean Technologies and Environmental Policy》2023,25(5):1643-1658
Clean Technologies and Environmental Policy - Distributed hybrid energy systems are innovative means of effectively addressing energy and environmental issues in the age of carbon neutrality. This... 相似文献
993.
994.
拖式混凝土泵技术的发展 总被引:1,自引:0,他引:1
本文阐述拖式混凝土泵的技术历史,地国际国内拖泵动力与传动系统,混凝土分配机构作重点论述,对制造和使用中的关键问题作出说明,并大致描绘拖泵技术的未来趋势 相似文献
995.
996.
施工招投标阶段水利水电工程造价控制 总被引:1,自引:0,他引:1
从工程量清单计价方式给工程造价控制带来的影响、业主对工程造价失控的防范措施、造价控制风险评估、建立有效的工程造价控制系统四个方面,对施工招投标阶段水利水电工程造价的控制进行了探讨,以期促进我国水利水电工程造价管理事业更上一个新的台阶. 相似文献
997.
998.
Muñoz Jairo Alberto Bolmaro Raúl E. Jorge Alberto Moreira Zhilyaev Alexander Cabrera José María 《Metallurgical and Materials Transactions A》2020,51(9):4674-4684
Metallurgical and Materials Transactions A - It is well known that a balance between the generation of low-angle and high-angle grain boundaries (LABG and HAGB) is achieved in materials undergoing... 相似文献
999.
1000.
Hwang D Jo SM Kim DY Armel V MacFarlane DR Jang SY 《ACS applied materials & interfaces》2011,3(5):1521-1527
High-performance, room-temperature (RT), solid-state dye-sensitized solar cells (DSSCs) were fabricated using hierarchically structured TiO? nanofiber (HS-NF) electrodes and plastic crystal (PC)-based solid-state electrolytes. The electrospun HS-NF photoelectrodes possessed a unique morphology in which submicrometer-scale core fibers are interconnected and the nanorods are dendrited onto the fibers. This nanorod-in-nanofiber morphology yielded porosity at both the mesopore and macropore level. The macropores, steming from the interfiber space, afforded high pore volumes to facilitate the infiltration of the PC electrolytes, whereas the mesoporous nanorod dendrites offered high surface area for enhanced dye loading. The solid-state DSSCs using HS-NFs (DSSC-NF) demonstrated improved power conversion efficiency (PCE) compared to conventional TiO? nanoparticle (NP) based DSSCs (DSSC-NP). The improved performance (>2-fold) of the DSSC-NFs was due to the reduced internal series resistance (R(s)) and the enhanced charge recombination lifetime (τ(r)) determined by electrochemical impedance spectroscopy and intensity modulated photocurrent/photovoltage spectroscopy. The easy penetration of the PC electrolytes into HS-NF layers via the macropores reduces R(s) significantly, improving the fill factor (FF) of the resulting DSSC-NFs. The τ(r) difference between the DSSC-NF and DSSC-NP in the PC electrolytes was extraordinary (~14 times) compared to reported results in conventional organic liquid electrolytes. The optimized PCE of DSSC-NF using the PC electrolytes was 6.54, 7.69, and 7.93% at the light intensity of 100, 50, and 30 mW cm?2, respectively, with increased charge collection efficiency (>40%). This is the best performing RT solid-state DSSC using a PC electrolyte. Considering the fact that most reported quasi-solid state or nonvolatile electrolytes require higher iodine contents for efficient ion transport, our HS-NFs are a promising morphology for such electrolytes that have limited ion mass transport. 相似文献