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新型无机胶黏剂——磷酸镁胶结材料的研究进展 被引量:5
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作者 周序洋 杨建明 王进 《四川建筑科学研究》 2012年第6期239-244,共6页
介绍了一种新型无机胶黏剂——磷酸镁胶结材料(MPC)的性能特点,综述了其酸碱反应机理和主要水化产物特性,分析了影响MPC凝结时间的因素和现有凝结时间调控技术的作用效果,在此基础上对MPC急需解决的问题及其应用前景进行了探讨。
关键词 新型无机胶凝材料 镁胶结材料(MPC) 酸碱反应机理 凝结时间
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磷酸钾镁水泥研究进展 被引量:6
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作者 徐选臣 邵云霞 《四川建筑科学研究》 2013年第3期201-204,共4页
介绍了磷酸钾镁水泥(MKPC)的酸碱反应机理和主要水化产物特性,分析了影响MKPC凝结时间的因素和现有凝结时间调控技术的作用效果,解析了MKPC水稳定性差的原因并提出了改善其水稳定性的措施,列举了现有水稳定性调控技术的作用效果,在此基... 介绍了磷酸钾镁水泥(MKPC)的酸碱反应机理和主要水化产物特性,分析了影响MKPC凝结时间的因素和现有凝结时间调控技术的作用效果,解析了MKPC水稳定性差的原因并提出了改善其水稳定性的措施,列举了现有水稳定性调控技术的作用效果,在此基础上对MKPC急需解决的问题及其应用前景进行了探讨。 展开更多
关键词 钾镁水泥(MKPC) 酸碱反应机理 凝结时间 水稳定性
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A Mechanism Study of a Novel Acid-Activatable Michael-Type Fluorescent Probe for Thiols 被引量:1
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作者 Yao Tong Chun-guang Dai +1 位作者 Yi Ren Shi-wei Luo 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 2015年第3期277-287,I0001,共12页
A Michael addition is usually taken as a base-catalysed reaction. However, our synthesized 2-(quinolin-2-ylmethylene) malonic acid (QMA) as a Michael-type thiol fluorescent probe is acid-active in its sensing reac... A Michael addition is usually taken as a base-catalysed reaction. However, our synthesized 2-(quinolin-2-ylmethylene) malonic acid (QMA) as a Michael-type thiol fluorescent probe is acid-active in its sensing reaction. In this work, based on theoretic calculation and experimental study on 7-hydroxy-2-(quinolin-2-ylmethylene) malonic acid, we demonstrated that QMA as a Michael acceptor is acid-activatable, i.e., it works only in solutions at pH〈7, and the lower the pH of solutions is, the higher reactivity QMA has. In alkaline solution, the malonate QMA[-2H+]2- cannot react with both RSand RSH. In contrast, 2-(quinolin-2- ylmethylene) malonic ester (QME), the ester of QMA, reveal a contrary pH effect on its sensing reaction, that is, it can sense thiols in alkaline solutions but not in acidic solutions, like a normal base-catalysed Michael addition. The values of activation enthalpies from theoretic calculation support the above sensing behavior of two probes under different pH conditions. In acidic solutions, the protonated QMA is more highly reactive towards electrophilic attack over its other ionized states in neutral and alkaline solutions, and so can react with lowly reactive RSH. In contrast, there is a big energy barrier in the interaction of QME with RSH (acidic solutions), and the reaction of QME with the highly reactive nucleophile RS- is a low activation energy process (in alkaline solutions). Theoretic calculation reveals that the sensing reaction of QMA undergoes a 1,4-addition process with neutral thiols (RSH), and a 1,2-addition pathway for the sensing reaction of QME with RS-. Therefore, the sensing reaction of QMA is an acid-catalysed Michael addition via a 1,4-addition, and a normal base-catalysed Michael addition via a 1,2-addition. 展开更多
关键词 Fluorescent probe THIOLS Michael addition DFT calculation Transitionstate Activation enthalpy
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