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Molecular Design of Crown Ethers. 19~1. Synthesis of Novel Disulfide and Diselenide-Bridged Bis (benzo-12-crown-4)s and their Ag^+ Selective Electrode Properties 被引量:1
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作者 Heng Yi ZHANG Yu LIU (Department of Chemistry, Nankai University, Tianjin 300071) 《Chinese Chemical Letters》 SCIE CAS CSCD 2000年第2期115-118,共4页
Two novel heteroatom-bridged his (benzo-12-crown-4 ether)s, i.e. his [2-nitro-4,5 (1,4,7,10-tetraoxadecamethylene) disulfide 1 and diselenide 2, have been synthesized. X ray crystallographic structure was obtained for... Two novel heteroatom-bridged his (benzo-12-crown-4 ether)s, i.e. his [2-nitro-4,5 (1,4,7,10-tetraoxadecamethylene) disulfide 1 and diselenide 2, have been synthesized. X ray crystallographic structure was obtained for 1. Ion selective electrodes (ISE) for Ag+, containing 1 and 2 in PVC membrane as neutral carriers, were prepared, and their selectivity coefficients for Ag^+ (K_(Ag.M)^(pot)) were determined against other heavy metal ions, alkali and alkaline-earth metal ions. and ammonium ion. These ISEs showed excellent Ag^+ selectivities, log K_(Ag.M)^(pot) ≤ -3.8, against most of the interfering canons examined, except for Hg^+. 展开更多
关键词 Heteroatom-bridged his (benzo-12-crown-4 ether)s ion selective electrodes selectivity coefficients.
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Synthesis of a New Ligand Containing 1, 7-Diaza-12-crown-4 and the Application in Asymmetric Cyclopropanation Reaction
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作者 Cheng Yun WANG Zhi Cai SHANG +1 位作者 Jiang Hua MEI Qing Sen YU 《Chinese Chemical Letters》 SCIE CAS CSCD 2003年第6期579-580,共2页
A new chiral multidenate ligand (S, S)-1,7-bis(4-benzyloxazolin-2-yl-methyl)-1, 7-diaza- 12-crown-4 1 has been synthesized and used as ligand in the copper catalyzed asymmetric cyclopropanation of 1, 1-diphenylethylene.
关键词 S S)-1 7-Bis (4-benzyloxazolin-2-yl-methyl)-1 7-diaza-12-crown-4 asymmetric cy-clopropanation
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氮杂-12-冠-4取代的单Schiff碱锰(Ⅲ)配合物对羧酸酯水解的催化作用 被引量:4
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作者 冯发美 李建章 +3 位作者 谢家庆 刘富安 曾伟 秦圣英 《四川大学学报(自然科学版)》 CAS CSCD 北大核心 2004年第4期810-815,共6页
合成了N [4 ( 2 羟基苯亚甲基亚胺基 )苯甲基 ] 单氮杂 1 2 冠 4锰 (III)配合物 (MnL1 2Cl) .研究了MnL1 2 Cl催化PNPP水解的动力学 ,分析了反应体系的紫外光谱变化 ,提出了催化反应的机理 .结果表明 ,在中性、碱性和室温 ( 2 5... 合成了N [4 ( 2 羟基苯亚甲基亚胺基 )苯甲基 ] 单氮杂 1 2 冠 4锰 (III)配合物 (MnL1 2Cl) .研究了MnL1 2 Cl催化PNPP水解的动力学 ,分析了反应体系的紫外光谱变化 ,提出了催化反应的机理 .结果表明 ,在中性、碱性和室温 ( 2 5℃ )条件下 ,MnL1 2 Cl能够有效地催化水解PNPP .在底物浓度大于配合物浓度 1 0倍以上时 ,PNPP催化水解的表观一级速率常数遵循方程kob=kK[S]/(K + [S]) . 展开更多
关键词 单氮杂-12-冠-4 单Schiff碱锰(Ⅲ)配合物 催化PNPP水解 动力学
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Inhibiting manganese(Ⅱ)from catalyzing electrolyte decomposition in lithium-ion batteries 被引量:2
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作者 Xuehuan Luo Lidan Xing +6 位作者 Jenel Vatamanu Jiawei Chen Jiakun Chen Mingzhu Liu Cun Wang Kang Xu Weishan Li 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2022年第2期1-8,共8页
A once overlooked source of electrolyte degradation incurred by dissolved manganese(Ⅱ)species in lithium-ion batteries has been identified recently.In order to deactivate the catalytic activity of such manganese(II)i... A once overlooked source of electrolyte degradation incurred by dissolved manganese(Ⅱ)species in lithium-ion batteries has been identified recently.In order to deactivate the catalytic activity of such manganese(II)ion,1-aza-12-crown-4-ether(A12C4)with cavity size well matched manganese(Ⅱ)ion is used in this work as electrolyte additive.Theoretical and experimental results show that stable complex forms between A12C4 and manganese(II)ions in the electrolyte,which does not affect the solvation of Li ions.The strong binding effect of A12C4 additive reduces the charge density of manganese(II)ion and inhibits its destruction of the PF_(6)^(-)structure in the electrolyte,leading to greatly improved thermal stability of manganese(II)ions-containing electrolyte.In addition to bulk electrolyte,A12C4 additive also shows capability in preventing Mn^(2+) from degrading SEI on graphite surface.Such bulk and interphasial stability introduced by A12C4 leads to significantly improved cycling performance of LIBs. 展开更多
关键词 Manganese(Ⅱ)ions Electrolyte decomposition 1-Aza-12-crown-4-ether Thermal stability
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Chelation of lithium ion with crown ether for eliminating adverse effects caused by Li-TFSI/tBP doping system in Spiro-OMeTAD
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作者 Zhongquan Wan Hui Lu +6 位作者 Jinyu Yang Yunpeng Zhang Fangyan Lin Jianxing Xia Xiaojun Yao Junsheng Luo Chunyang Jia 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2022年第11期489-496,I0013,共9页
Lithium bis(trifluoromethanesulfonyl)imide(Li-TFSI)/4-tert-butylpyridine(tBP)is a classic doping system for the hole transport material Spiro-OMeTAD in typical n-i-p structure perovskite solar cells(PSCs),but this sys... Lithium bis(trifluoromethanesulfonyl)imide(Li-TFSI)/4-tert-butylpyridine(tBP)is a classic doping system for the hole transport material Spiro-OMeTAD in typical n-i-p structure perovskite solar cells(PSCs),but this system will cause many problems such as high hygroscopicity,Li+migration,pinholes and so on,which hinder PSC from maintaining high efficiency and stability for long-term.In this work,an effective strategy is demonstrated to improve the performance and stability of PSC by replacing t BP with 12-crown-4.The chelation of 12-crown-4 with Li+not only improves the doping effect of Li-TFSI,but also perfectly solves the problems caused by the Li-TFSI/tBP system.The PSC based on this strategy achieved a champion power conversion efficiency(PCE)over 21%,which is significantly better than the pristine device(19.37%).More importantly,the without encapsulated device based on Li-TFSI/12-crown-4 still maintains 87%of the initial PCE even after 60 days exposure in air,while the pristine device only maintains 22%of the initial PCE under the same aging conditions.This strategy paves a novel way for constructing efficient and stable PSCs. 展开更多
关键词 Perovskite solar cells Spiro-OMeTAD Li-TFSI dopant 12-crown-4 CHELATION
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