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2-氨基乙脒化二溴化氢盐的制备
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作者 卢晗 洪镛裕 邓优华 《化学试剂》 CAS CSCD 北大核心 2007年第7期439-440,共2页
采用叔丁氧羰基(BOC)对2-氨基乙腈的氨基进行保护,在氨气的甲醇溶剂中催化形成脒,最后用无水溴化氢脱保护得到最终产物2-氨基乙脒化二溴化氢盐,经核磁鉴定为目标产物。
关键词 2-氨基乙 2-氨基乙脒化二溴氢盐
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达比加群酯脒化中间体的合成研究及工艺改进
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作者 王相玉 《山东化工》 CAS 2019年第4期30-31,34,共3页
目前制备甲磺酸达比加群酯的关键中间体-3-(2-(4-脒基-苯氨基)甲基)-1-甲基-N-(吡啶-2-基)-1H-苯并【d】咪唑-5-酰胺基)丙酸乙酯盐酸盐的方法主要是利用经典的pinner反应,首先在无水条件下进行酸解(通HCl气体),再将酸除去,进行氨解(加... 目前制备甲磺酸达比加群酯的关键中间体-3-(2-(4-脒基-苯氨基)甲基)-1-甲基-N-(吡啶-2-基)-1H-苯并【d】咪唑-5-酰胺基)丙酸乙酯盐酸盐的方法主要是利用经典的pinner反应,首先在无水条件下进行酸解(通HCl气体),再将酸除去,进行氨解(加入碳酸铵,通入氨气等方法)得到产品。鉴于其合成过程中醇解反应乙醇用量大、氨解杂质不易控制等一系列缺点,使该合成工艺的进一步推广、利用受到限制。基于此,本文通过对传统的pinner反应过程的改进,结合对温度、所需乙醇量、HCl/NH3量的优化,确定了产物合成的最优条件,使杂质生成量明显降低。同时,通过对所得合成产物采用新型溶剂进行重结晶,使该过程既保证了原有产品的收率,同时也使产品提纯的工艺大大简化。 展开更多
关键词 甲磺酸达比加群酯 脒化中间体 Pinner反应
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除草剂安全剂解草啶小试合成研究 被引量:1
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作者 卢贵平 杨建萍 +1 位作者 吴军 郑舟 《浙江化工》 CAS 2001年第1期13-14,共2页
介绍安全剂解草啶的性质、用途及以苯甲腈为起始原料,经脒化、环合、氯化合成解草啶原药的工艺路线,总收率达56.12%,解草啶原药含量达到92.7%。
关键词 除草剂 安全剂 解草啶 合成 脒化 环合
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乙氧嘧啶磷的合成研究 被引量:2
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作者 潘力勇 吴国明 +1 位作者 胡楚珍 郑志明 《农药》 CAS 北大核心 2002年第5期11-12,共2页
研究了以丙腈为起始原料 ,经脒化、环合、氯化、水解、烷基化制备中间体羟基嘧啶 ,进而经缩合合成乙氧嘧啶磷的方法。反应条件温和 ,操作方便 ,收率高 。
关键词 乙氧嘧啶磷 丙腈 合成 杀虫剂 脒化 环合
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Effect of Four Pesticides on Controlling Autumn Cowpea Greenhouse Whitefly
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作者 彭昌家 白体坤 +2 位作者 丁攀 冯礼斌 杨宇衡 《Agricultural Science & Technology》 CAS 2016年第9期2119-2123,共5页
In order to mitigate the occurrence and damage of cowpea whitefly, reduce chemical pesticide consumption, residue and environmental pollution, the methods of forecasting, randomized block design andstatistical analysi... In order to mitigate the occurrence and damage of cowpea whitefly, reduce chemical pesticide consumption, residue and environmental pollution, the methods of forecasting, randomized block design andstatistical analysis were used in field efficacy trials, to study the control effect of cowpea anthracnose by usingchemical pesticides dinotefuran, acetamiprid, pymetrozine, and bio-pesticide avermectin. The results showed that after applying 1.85% avermectin EC 375 g, 20% dinotefuran SP 600 g, 5% acetamiprid WP 600 g, and 25% pymetrozine WP 600 g (control pesticide) per hm2 once every 5-8 days, and 3 times continuously underserious autumn occurrence of greenhouse whitefly, the control efficacy was 90.9%, 97.0%, 88.0%, 93.9%respectively on the 7th day after the pesticides application; 97.4%, 92.1%, 84.2%, 89.4% respectively on the 14th day after the pesticides application; and 95.6%, 86.7%, 82.2%, 84.5%, respectively on the 20th day afterthe pesticides application. The control effects among avermectin, acetamiprid and pymetrozine were not significantly different, while the effects of avermectin and pymetrozine were significantly higher than that of acetamiprid on the 7th day. The control effects among avermectin, dinotefuran and pymetrozine were not significantly different, while significantly higher than that of acetamiprid on the 14th day. The control effect of avermectin was significantly higher than that of dinotefuran, acetamiprid and pymetrozine on the 20th day. Meanwhile, the control effect of avermectin was slightly lower, higher and much higher than that of dinotefuran on the 7th, 14th, 20th day respectively after the treatment. These results indicated that the four pesticides,especiaLly biopesticide avermectin, were ideal pesticides, which could not only be used for controlling cowpea whitefly, but also realize modern, green, organic and ecological agricultural production. 展开更多
关键词 COWPEA Greenhouse whitefly Bio-pesticide AVERMECTINS Chemical pesticides DINOTEFURAN ACETAMIPRID PYMETROZINE Control effect
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Exploring stability of formamidinium lead trihalide for solar cell application 被引量:3
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作者 Mingkui Wang 《Science Bulletin》 SCIE EI CAS CSCD 2017年第4期249-255,共7页
Formamidinium lead triiodide (FAPbI3) is a promising photoactive perovskite for low-cost and efficient solar cells. This article reports on an experimental investigation on the stability of FAPbI3 by comparison with... Formamidinium lead triiodide (FAPbI3) is a promising photoactive perovskite for low-cost and efficient solar cells. This article reports on an experimental investigation on the stability of FAPbI3 by comparison with that of widely-used methylamidinium lead triiodide (MAPbI3). A hydration of the FAPbI3 with mois- ture could be the dominant mechanism for its degradation in air, rather than a common thermal decom- position in the MAPbI3. This can be mainly contributed to a relatively strong bond formation between formamidinium ions (FA+) and 1-. Consequently, the stability of FAPbl3 based devices can be greatly enhanced by removal moisture in the surrounding. This conclusion renders FAPbI3 extremely attractive for stable perovskite solar cells with fine encapsulation. 展开更多
关键词 Perovskite Solar cell Stability Cation
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Kinetic study on hydrolysis and oxidation of formamidine disulfide in acidic solutions
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作者 HU Ying FENG JiaMin LI YanWei SUN YanYan XU Li ZHAO YueMin GAO QingYu 《Science China Chemistry》 SCIE EI CAS 2012年第2期235-241,共7页
Hydrolysis and oxidation of formamidine disulfide in acidic medium were investigated using high-performance liquid chro- matography (HPLC) and mass spectrometry (MS) at 25 ~C. By controlling the slow reaction rate... Hydrolysis and oxidation of formamidine disulfide in acidic medium were investigated using high-performance liquid chro- matography (HPLC) and mass spectrometry (MS) at 25 ~C. By controlling the slow reaction rate and choosing appropriate mobile phase, HPLC provides the unique advantages over other methods (UV-Vis, chemical separation) in species tracking and kinetic study. In addition to thiourea and formamidine sulfinic acid, two unreported products were also detected in the hy- drolysis reaction. Mass spectrometry measurement indicates these two products to be formamidine sulfenic acid and thiocyan- ogen with mass weights of 92.28 and 116,36, respectively. In the oxidation of formamidine disulfide by hydrogen peroxide, besides thiourea, formamidine sulfenic acid, formamidine sulfinic acid, thiocyanogen and urea, formamidine sulfonic acid and sulfate could be detected. The oxidation reaction was found to be first order in both forrnamidine disulfide and hydrogen per- oxide. The rate constants of hydrolysis and oxidation reactions were determined in the pH range of 1.5-3.0. It was found both rate constants are increased with the increasing of pH. Experimental curves of different species can be effectively simulated via a mechanism scheme for formamidine disulfide oxidation, including hydrolysis equilibrium of formamidine disulfide and irre- versible hydrolysis of formamidine sulfenic acid. 展开更多
关键词 formamidine disulfide HYDROLYSIS OXIDATION HPLC-MS
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