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水分子结构模式及液态固态水若干特征成因探讨 被引量:6
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作者 濮培民 濮江平 朱政宾 《气象科学》 北大核心 2016年第5期567-580,共14页
水是包括海洋大气在内的地球生态系统中极重要又有很多特殊性的物质。其特性的成因尚远非清晰。本文提出一种水分子(H2O)结构及其固态液态水体的结构模式,探讨和模拟计算了其若干特征的成因,结果能较好符合实测值。(1)从氢(H)氧(... 水是包括海洋大气在内的地球生态系统中极重要又有很多特殊性的物质。其特性的成因尚远非清晰。本文提出一种水分子(H2O)结构及其固态液态水体的结构模式,探讨和模拟计算了其若干特征的成因,结果能较好符合实测值。(1)从氢(H)氧(O)原子结构和电子绕各原子核及相互绕行规律的等概率随机轨道中实现符合库伦力和开普勒运动规律的优势轨道耦合成平均状态稳定的准刚性的水分子结构。其核心是O原子与等距离分立其两侧的2个H原子构成的等腰三角形,其间距平方之比(H-H)2/(H-O)2=2.5;电子云活动空间为1个由4个等边三角形为面构成具有6个等长稜的正四面锥体结构水分子模式(可简称“水分子正锥体模式”);该模式具有很大电偶极矩。(2)水分子的端点间在约0.27 nm距离内可以按“+”“-”电荷吸引原则耦合。6个水分子将按正、负电荷对接耦合,连接成六边环形“壁”的“笼式隧道空间”,可容纳其他物质,无电荷显示,电导率极地。(3)在空气中0℃以下凝结冰晶时三维不对称,“薄片”的雪花形成概率更大,其形态也按自相似原则体现了水分子结构的六角六边六针形的特征。(4)液态水分子维持固态水冰的“冰/水笼”结构模式,但由于2个氢原子上的电子同时到达1个“-”电荷端的概率为1/11,当0℃以上部份水分子能摆脱框架水分子束缚后,可以再耦合一个从框架上“脱落”的“自由水分子”使其进入水笼,从而水容积缩小;固体冰和液态水的密度之比为11/12=0.916 667。自由水分子和水笼框架上的水分子可以随时互换(在10-5s时间尺度上),并适应固体壁的形态,既是不可压缩,又有柔软、可变形特点;水在0100℃时的空/占比达2.28,模式可解译高温高压的水汽中检测到2.16 g·cm-3,水热传导系数很大,比热容量很大,有“异常”的U形特点,且液态水的比热容量略大于固态水冰的热容量的1/2等特征。(5)讨论了水对O2、H2S、NaCl、KCl等的溶解度随温度变化的若干特征的成因和计算模式。通过NaCl饱和溶液实验,证实了本文模式。(6)与液态水体表面特征有关的特点及本文实际应用将在随后续文中讨论。 展开更多
关键词 特性与水分子结构模式 冰框架结构模式 雪花与水分子结构 液态与固态结构的差异 的比热与水分子结构关系 自相似
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基于水分子结构变化的不同温度下细菌浓度的检测 被引量:1
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作者 朱乐 顾鹏 +2 位作者 张胜 孔丽琴 冯耀泽 《华中农业大学学报》 CAS CSCD 北大核心 2020年第3期120-126,共7页
为探究样本温度、细菌浓度对水分子结构的改变从而明确细菌浓度检测的机理,以金黄色葡萄球菌悬浊液样本为例在水的特征吸收波段(1334~1539 nm)对不同温度下不同浓度细菌进行表征和检测。首先,通过对比不同预处理方法,得到最佳预处理方法... 为探究样本温度、细菌浓度对水分子结构的改变从而明确细菌浓度检测的机理,以金黄色葡萄球菌悬浊液样本为例在水的特征吸收波段(1334~1539 nm)对不同温度下不同浓度细菌进行表征和检测。首先,通过对比不同预处理方法,得到最佳预处理方法,然后利用多级成分分析分别建立一级模型(温度与光谱的关系模型)和二级模型(细菌浓度与光谱的关系模型)。结果表明,Savitzky-Golay卷积平滑结合连续小波变换的预处理方法最优。一级模型可以精确表征样本温度,其校正相关系数(correlation coefficient,RC)和校正均方根误差(root mean square error,RMSEC)分别为0.997和0.37℃。对温度贡献较大的波长对应水溶剂化层OH-(H2O)1,4和超氧化物O2-(H2O)4、游离水和游离OH-(S0)及具有1个氢键的水分子(S1),该模型预测相关系数RP和预测均方根误差RMSEP分别为0.997和0.37℃。二级模型可以较好表征样本浓度,其校正相关系数RC和校正均方根误差RMSEC分别为0.887和0.891 log CFU/mL。对细菌浓度贡献最大的波长对应H2O非对称伸缩振动V3,具有1个氢键的水分子(S1)、具有3个氢键的水分子(S3)及具有4个氢键的水分子(S4),预测相关系数RP和预测均方根误差RMSEP分别为0.869和0.858 log CFU/mL。本研究所建模型均具有较好的检测精度和适应性,表明水的结构特性对细菌悬浊液温度、细菌浓度检测起重要作用。 展开更多
关键词 样本温度 细菌浓度 水分子结构 检测机理 近红外光谱 模型预测 多级同时成分分析(MSCA)
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量子态下的水分子结构及其布朗运动 被引量:3
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作者 樊丽辉 《河北交通教育》 2020年第2期46-49,53,共5页
对原子模型及分子构型的认知,经典理论囿于静态思维模式,即便引入了现代量子理论,也依然没能摆脱僵化的思维惯式。本文从水分子及其化学键切入,基于量子态及动态思维模式,分析研究原子分子间相互作用及运动规律,首次提出了原子键合的&qu... 对原子模型及分子构型的认知,经典理论囿于静态思维模式,即便引入了现代量子理论,也依然没能摆脱僵化的思维惯式。本文从水分子及其化学键切入,基于量子态及动态思维模式,分析研究原子分子间相互作用及运动规律,首次提出了原子键合的"常态与暂态"概念及其互为转化原理,阐释了水分子常态键(共价键、氢键)与暂态键(范德华力)本属同宗同源,所不同的是其概率分布。以全新视角诠释了水分子共价键及氢键的作用机制,揭示了水分子布朗运动机理,引申出物质相变机理,为物理学基础研究开辟了新的契机。 展开更多
关键词 水分子结构 化学键 量子态 布朗运动
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NaCl对猪肉糜加工特性和蛋白质二级结构的影响 被引量:22
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作者 李可 赵颖颖 +3 位作者 康壮丽 王虎虎 马汉军 徐幸莲 《食品科学》 EI CAS CSCD 北大核心 2017年第15期77-81,共5页
NaCl是猪肉糜制品加工过程中必不可少的辅料,为进一步探明NaCl在猪肉糜加工过程中的作用,通过低场核磁共振和拉曼光谱等方法,研究了NaCl对猪肉糜的蒸煮得率、硬度、水分迁移和蛋白质二级结构的影响。结果表明:蒸煮得率和硬度随着Na Cl... NaCl是猪肉糜制品加工过程中必不可少的辅料,为进一步探明NaCl在猪肉糜加工过程中的作用,通过低场核磁共振和拉曼光谱等方法,研究了NaCl对猪肉糜的蒸煮得率、硬度、水分迁移和蛋白质二级结构的影响。结果表明:蒸煮得率和硬度随着Na Cl添加量的增加而显著提高(P<0.05),特征峰T_(2b)和T_(22)的自旋-自旋弛豫时间逐渐缩短,T_(21)(不易流动水)的峰面积比例逐渐增加;NaCl添加量从1%增加到2%,对蛋白质二级结构含量影响显著,β-折叠含量提高,从2%增加到3%,二级结构相对含量差异不显著(P>0.05);随着Na Cl添加量的增加,—OH基团伸缩振动波峰向高波数方向移动(3226 cm^(-1)和3227 cm^(-1)),水分子内氢键增多。因此,在猪肉糜加工中适量添加Na Cl能够改变猪肉糜蛋白质二级结构,增强蛋白质的水合作用,有助于提高猪肉糜的加工特性。 展开更多
关键词 拉曼光谱 低场核磁共振 二级结构 水分子结构
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水裂变的机理的探讨 被引量:1
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作者 栗河川 刘君华 +1 位作者 栗广林 常荣仙 《中国新技术新产品》 2012年第2期21-22,共2页
水在超高温条件下可以裂变生成氢气,美科学家似已认定,澳新式太阳能发电提高26%发电功率似给予了证实。本文论述水在超高温条件下裂变生成氢气的机理及澳新式太阳能发电提高26%发电功率的原因。水在超高温条件下分子内的氢、氧原子急速... 水在超高温条件下可以裂变生成氢气,美科学家似已认定,澳新式太阳能发电提高26%发电功率似给予了证实。本文论述水在超高温条件下裂变生成氢气的机理及澳新式太阳能发电提高26%发电功率的原因。水在超高温条件下分子内的氢、氧原子急速转动产生的离心力≧向心力时,氢、氧原子间的氢键自然断裂,氢、氧原子变成——氢和氧。氢遇火燃烧放出热量生成水。水裂变热值是15888.87kj/kg,是标准煤热值的0.54217倍。就是1吨水裂变生成的氢燃烧放出的热量等于0.54217吨标准煤完全燃烧放出的热量,且为零排放。 展开更多
关键词 裂变 裂变能源 裂变无效温度 裂变温度 裂变热值 水分子结构氢键 离心力
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Molecular Dynamics Study on Microstructure of Potassium Dihydrogen Phosphates Solution
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作者 王坤 卢贵武 +2 位作者 周广刚 杨红旺 苏东东 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 2010年第2期160-164,I0001,共6页
Molecular dynamics simulations were carried out to study the internal energy and microstructure of potassium dihydrogen phosphates (KDP) solution at different temperatures. The water molecule was treated as a simple... Molecular dynamics simulations were carried out to study the internal energy and microstructure of potassium dihydrogen phosphates (KDP) solution at different temperatures. The water molecule was treated as a simple-point-charge model, while a seven-site model for the dihydrogen phosphate ion was adopted. The internal energy functions and the radial distribution functions of the solution were studied in detail. An unusually large local particle number density fluctuation was observed in the system at saturation temperature. It has been found that the specific heat of oversaturated solution is higher than that of unsaturated solution, which indicates the solution experiences a crystallization process below saturation temperature. The radial distribution function between the oxygen atom of water and the hydrogen atom of the dihydrogen phosphate ion shows a very strong hydrogen bond structure. There are strong interactions between potassium cation and oxygen atom of dihydrogen phosphate ion in KDP solution, and much more ion pairs were formed in saturated solution. 展开更多
关键词 Potassium dihydrogen phosphates solution Microstructure Molecular dy-namics simulation Radial distribution function
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A universal thermodynamic model of calculating mass action concentrations for structural units or ion couples in aqueous solutions and its applications in binary and ternary aqueous solutions 被引量:1
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作者 杨学民 赵伟洁 +2 位作者 柴国明 郭汉杰 张强 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2011年第3期626-641,共16页
A universal thermodynamic model of calculating mass action concentrations for structural units or ion couples in ternary and binary strong electrolyte aqueous solution was developed based on the ion and molecule coexi... A universal thermodynamic model of calculating mass action concentrations for structural units or ion couples in ternary and binary strong electrolyte aqueous solution was developed based on the ion and molecule coexistence theory and verified in four kinds of binary aqueous solutions and two kinds of ternary aqueous solutions. The calculated mass action concentrations of structural units or ion couples in four binary aqueous solutions and two ternary solutions at 298.15 K have good agreement with the reported activity data from literatures after shifting the standard state and concentration unit. Therefore, the calculated mass action concentrations of structural units or ion couples from the developed universal thermodynamic model for ternary and binary aqueous solutions can be applied to predict reaction ability of components in ternary and binary strong electrolyte aqueous solutions. It is also proved that the assumptions applied in the developed thermodynamic model are correct and reasonable, i.e., strong electrolyte aqueous solution is composed of cations and anions as simple ions, H2O as simple molecule and other hydrous salt compounds as complex molecules. The calculated mass action concentrations of structural units or ion couples in ternary and binary strong electrolyte aqueous solutions strictly follow the mass action law. 展开更多
关键词 universal thermodynamic model mass action concentration activity ternary aqueous solution binary aqueous solution ion and molecule coexistence theory structural units ion couples components
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Orientation and Motion of Water Molecules at Air/Water Interface 被引量:2
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作者 Wei Gan Dan Wu +2 位作者 Zhen Zhang Yuan Guo Hong-fei Wang 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 北大核心 2006年第1期20-24,共5页
Here we report a quantitative study of the orientational structure and motion of water molecule at the air/water interface. Analysis of Sum Frequency Generation (SFG) vibrational peak of the free O-H stretching band... Here we report a quantitative study of the orientational structure and motion of water molecule at the air/water interface. Analysis of Sum Frequency Generation (SFG) vibrational peak of the free O-H stretching band at 3700 cm^-1 in four experimental configurations showed that orientational motion of water molecule at air/water interface is libratory within a limited angular range. The free OH bond of the interracial water molecule is tilted around 33°from the interface normal and the orientational distribution or motion width is less than 15°. This picture is significantly different from the previous conclusion that the interracial water molecule orientation varies over a broad range within the ultrafast vibrational relaxation time, the only direct experimental study concluded for ultrafast and broad orient, ational motion of a liquid interface by Wei et al. (Phys. Rev. Lett. 86, 4799, (2001)) using single SFG experimental configuration. 展开更多
关键词 Air/water interface Water molecules Orientation and motion
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Kinetics study and analysis of zeolite Y destruction 被引量:5
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作者 杜晓辉 李雪礼 +1 位作者 张海涛 高雄厚 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2016年第2期316-323,共8页
A series of zeolites,including USY zeolites without sodium,Na-USY at different Na contents,La-USY with different rare earth(RE) contents and La-Na-USY with RE and Na were prepared by an ion exchange method.They were... A series of zeolites,including USY zeolites without sodium,Na-USY at different Na contents,La-USY with different rare earth(RE) contents and La-Na-USY with RE and Na were prepared by an ion exchange method.They were investigated to understand the activation barriers for the destruction of Y zeolite structure under hydrothermal treatment and the effect of V using the solid-state kinetic model.The results showed that the pathways for Y zeolite destruction were dealumination,desiliconization and the disappearance of La-O bonds.Zeolites were destroyed by steam through acid hydrolysis,which was accelerated by V.In addition,Na and V exerted a synergistic effect on the framework destruction,and the formation of NaOH was the rate-determining step.The presence of RE elements decreased hydrolysis and stabilized the structure of the zeolites.The interaction between V and RE destroyed zeolite structure by eliminating the stabilizing La-O[RE-OH-RE]^(5+)bridges in the sodalite cages. 展开更多
关键词 Y zeolite VANADIUM SODIUM Rare earth Hydrothermal stability DESTRUCTION Apparent activation energy
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Hydrothermal Synthesis and Properties of Y-zeolite-containing Composite Material with Micro/mesoporous Structure 被引量:3
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作者 Zhou Jihong Min Enze +3 位作者 Shu Xingtian Zong Baoning Yang Haiying Luo Yibin (State Key Laboratory of Catalytic Material and Reaction Engineering,Research Institute of Petroleum Processing,SINOPEC,Beijing 100083) 《China Petroleum Processing & Petrochemical Technology》 SCIE CAS 2010年第1期1-4,共4页
A Y-zeolite-containing composite material with micro/mesoporous structure had been synthesized from kaolin by means of the in-situ crystallization method. The obtained samples were investigated by XRD and BET methods.... A Y-zeolite-containing composite material with micro/mesoporous structure had been synthesized from kaolin by means of the in-situ crystallization method. The obtained samples were investigated by XRD and BET methods. Evaluation of catalytic activity of both the commercial Y-zeolite and the novel Y-zeolite-containing composite material was carried out in the pulse micro-chromatography platform with two probe molecules of different molecular sizes: VGO feedstock and 1,3,5 tri-isopropyl benzene. It was found that the Y-zeolite-containing composite material was richer in external surface and meso-/macro-pores; the Y-zeolite-containing composite material demonstrated a smaller rate of deactivation compared to the commercial Y-zeolite. 展开更多
关键词 FAUJASITE hydrothermal synthesis Y-zeolite-containing composite material micro/mesoporous structure kaolin
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Analysis of microscopic pore structures of rocks before and after water absorption 被引量:6
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作者 Li Dejian Wang Guilian +5 位作者 Han Liqiang Liu Peiyu He Manchao Yang Guoxing Tai Qimin Chen Cheng 《Mining Science and Technology》 EI CAS 2011年第2期287-293,共7页
Hydrophilic characteristics of rocks are affected by their microscopic pore structures,which clearly change after water absorption.Water absorption tests and scanning electron microscopic(SEM) experiments on rock sa... Hydrophilic characteristics of rocks are affected by their microscopic pore structures,which clearly change after water absorption.Water absorption tests and scanning electron microscopic(SEM) experiments on rock samples,located at a site in Tibet,China,were carried out Changes of rock pore structures before and after water absorption were studied with the distribution of pore sizes and fractal characteristics of pores.The results show that surface porosities,fractal dimensions of pores and the complexity of pore structures increased because the number of new small pores produced increased or the original macropore flow channels were expanded after rocks absorbed water.There were points of inflection on their water absorption curves.After water absorption of other rocks,surface porosities and fractal dimensions of pores and complexity of pore structures decreased as the original pore flow channels became filled.Water absorption curves did not change.Surface porosity and the pore fractal dimensions of rocks have good linear relationships before and after water absorption. 展开更多
关键词 Hydrophilic characteristics Pore structures Pore size distribution Pore fractal characteristics
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Orientation and Structure of Ionic Liquid Cation at Air/[bmim][BF4] Aqueous Solution Interface 被引量:1
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作者 Gang-hua Deng Xia Li +3 位作者 You-qi Guo Shi-lin Liu Zhou Lu Yuan Guo 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 2013年第5期569-575,I0004,共8页
The watermiscible room temperature ionic liquid 1butyl3methylimidazolium tetrafluorob orate ([bmim] [BF4]) is a model system for studying the interactions between ionic liquid and water molecules. In this work the o... The watermiscible room temperature ionic liquid 1butyl3methylimidazolium tetrafluorob orate ([bmim] [BF4]) is a model system for studying the interactions between ionic liquid and water molecules. In this work the orientational structure of the low concentrated aqueous solution of [bmim] [BF4] at the air/liquid interface was investigated by sum frequency gener ation vibrational spectroscopy. It has been found that at very low concentrations, the butyl chain exhibited a significant gauche defect, indicating a disordered conformation; and the cation ring oriented with a fairly small tilting angle at the surface. When the concentration increased, the cation ring tended to lie flat at the surface, and the gauche defects of the butyl chain decreased due to the intermolecular chainchain interactions and the consequent more ordered interfacial molecular arrangement. Additionally, the antisymmetric stretching mode in the PPP and SPS spectra exhibited a peak shift, showing that there exists more than one kind of orientation or chemical environment for the butyl CH3 group. These results may shed new light on understanding the surface behavior of watermiscible ionic liquids as well as the imidazolium based surfactants. 展开更多
关键词 Sum frequency generation vibratinal spectroscopy Ionic liquid Aqueous solu-tion INTERFACE ORIENTATION
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Crystal and Molecular Structure of 1-Methyl-4-(2-( 3,4-dimethoxyphenyl) vinyl) pyridinium 4-Tolylsulfonate Dihydrate C_(16)H_(18)NO_2^+·C_7H_7SO_3^-·2H_2O
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作者 彭海静 张天柱 《Chinese Journal of Structural Chemistry》 SCIE CAS CSCD 北大核心 2001年第3期161-164,共4页
The crystal structure of the title compound C16H18NO2+·C7H7SO3-·2H2O, (C23H29NSO7, Mr=463.53) has been determined by single-crystal X-ray diffraction analysis. The crystal belongs to the monoclinic system wi... The crystal structure of the title compound C16H18NO2+·C7H7SO3-·2H2O, (C23H29NSO7, Mr=463.53) has been determined by single-crystal X-ray diffraction analysis. The crystal belongs to the monoclinic system with space group P21/n, a=8.101(1), b=8.958(2), c=33.281(5)?,β= 94.910(1)(, V=2406.3(7)?3, Z=4, Dc=1.279g/cm3, μ=0.176mm-1, F(000)=984, final R=0.0409, and Rw=0.0860 for 4401 independent reflections. The result shows that in the crystal structure of the title compound the planar cations have two configurations with equal occupation ratio and are antiparally packed through π…π interactions. Similar packing energies in A and B are probably the main factor that leads to the disorder structure. 展开更多
关键词 crystal structure stilbazonium salt engineering
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A half-century of radioisotope neutron sources in China
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作者 Cai Shanyu 《Engineering Sciences》 EI 2009年第4期22-34,共13页
Near 50 years history of the development of radioisotope neutron sources in China is briefly reviewed.The structure design,preparing technology and production status of routine neutron sources including 210Po-Be sourc... Near 50 years history of the development of radioisotope neutron sources in China is briefly reviewed.The structure design,preparing technology and production status of routine neutron sources including 210Po-Be sources,210Po mock fission sources,241Am-Be sources,238Pu-Be sources,252Cf spontaneous fission sources and other special-shape neutron sources are summarized.In addition,the prospects of development on radioisotope neutron source in China are predicted from the needs of nuclear power construction,oil well-logging,neutron moisture gauge and neutron brachytherapy. 展开更多
关键词 radioisotope neutron source α n source spontaneous fission source source core preparing source capsule sealing quality control oil well-logging neutron moisture gauge neutron brachytherapy
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Orientation Angle of Molecules at Hexadecane-Water Interface Studied with Total Internal Reflection Second Harmonic Generation
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作者 Li-bo Zhang Hui Fang +2 位作者 Shun-li Chen Xue-feng Zhu Wei Gan 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 2016年第6期650-656,I0001,共8页
The orientation angle is an important parameter that reflects the structure of molecules at interfaces. In order to obtain this parameter, second order nonlinear spectroscopic techniques including second harmonic gene... The orientation angle is an important parameter that reflects the structure of molecules at interfaces. In order to obtain this parameter, second order nonlinear spectroscopic techniques including second harmonic generation (SHG) and sum frequency generation-vibrational spec- troscopy (SFG-VS) have been successfully applied through analysis of the nonlinear signal from various polarizations. In some SHG and SFG-VS experiments, total internal reflection (TIR) configuration has been adopted to get enhanced signals. However, the reports on the detailed procedure of the polarization analysis and the calculation of the orientation angle of interracial molecules under TIR configuration are still very few. In this paper, we mea- sured the orientation angles of two molecules at the hexadecane-water interface under TIR and Non-TIR experimental configurations. The results measured from polarization analysis in TIR configuration consist with those obtained from Non-TIR configuration. This work demonstrates the feasibility and accuracy of polarization analysis in the determination of the orientation angle of molecules at the interfaces under TIR-SHG configuration. 展开更多
关键词 Second harmonic generation Total internal reflection HYPERPOLARIZABILITY Polarization Orientation angle
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电场对水及水溶液折射率影响的探究
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作者 蔡妍 苏波 +2 位作者 曹新影 何敬锁 张盛博 《广西物理》 2019年第2期7-10,共4页
选取了水和几种典型的水溶液,测量了外加电场对其折射率的影响,并在分子层面上分析了其影响的原因。
关键词 电场 溶液 折射率 水分子结构
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Molecular simulation of the CH_4/CO_2/ H_2O adsorption onto the molecular structure of coal 被引量:16
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作者 XIANG JianHua ZENG FanGui +2 位作者 LIANG HuZhen LI Bin SONG XiaoXia 《Science China Earth Sciences》 SCIE EI CAS 2014年第8期1749-1759,共11页
Clarification of the molecular mechanism underlying the interaction of coal with CH4, CO2, and H2 O molecules is the basis for an in-depth understanding of the states of fluid in coal and fluid-induced coal swelling/c... Clarification of the molecular mechanism underlying the interaction of coal with CH4, CO2, and H2 O molecules is the basis for an in-depth understanding of the states of fluid in coal and fluid-induced coal swelling/contraction. In terms of instrumental analysis, molecular simulation technology based on molecular mechanics/dynamics and quantum chemistry is a powerful tool for revealing the relationship between the structure and properties of a substance and understanding the interaction mechanisms of physical-chemical systems. In this study, the giant canonical ensemble Monte Carlo(GCMC) and molecular dynamics(MD) methods were applied to investigate the adsorption behavior of a Yanzhou coal model(C222H185N3O17S5). We explored the adsorption amounts of CH4, CO2, and H2 O onto Yanzhou coal, the adsorption conformation, and the impact of oxygen-containing functional groups. Furthermore, we revealed the different adsorption mechanisms of the three substances using isosteric heat of adsorption and energy change data.(1) The adsorption isotherms of the mono-component CH4, CO2, and H2 O were consistent with the Langmuir model, and their adsorption amounts showed an order of CH4CO2〉CH4. In addition, at higher temperatures, the isosteric heat of adsorption decreased; pressure had no significant effect on the heat of adsorption.(3) CH4 molecules displayed an aggregated distribution in the pores, whereas CO2 molecules were cross arranged in pairs. Regarding H2 O molecules, under the influence of hydrogen bonds, the O atom pointed to surrounding H2 O molecules or the H atoms of coal molecules in a regular pattern. The intermolecular distances of the three substances were 0.421, 0.553, and 0.290 nm, respectively. The radial distribution function(RDF) analysis showed that H2 O molecules were arranged in the most compact fashion, forming a tight molecular layer.(4) H2 O molecules showed a significantly stratified distribution around oxygen-containing functional groups on the coal surface, and the bonding strength showed a descending order of hydroxyl〉 carboxyl〉carbonyl. In contrast, CO2 and CH4 showed only slightly stratified distributions.(5) After the adsorption of CH4, CO2, and H2 O, the total energy, the energy of valence electrons, and the non-bonding interaction of the system in the Yanzhou coal model all decreased. The results regarding the decrease in the total energy of the system indicated an order of H2O〉CO2〉CH4 in terms of the adsorption priority of the Yanzhou coal model. The results regarding the decrease in the energy of valence electrons showed that under certain geological conditions, a pressure-induced “coal strain” could lead to a structural rearrangement during the interaction of coal with fluid to form a more stable conformation, which might be the molecular mechanism of coal swelling resulting from the interaction between fluid and coal. An analysis of the contribution of Van der Waals forces, electrostatic interactions and hydrogen bonds to the decrease in non-bonding interactions revealed the mechanism underlying the interactions between coal molecules and the three substances. The interaction between coal molecules and CH4 consisted of typical physical adsorption, whereas that between coal molecules and CO2 consisted mainly of physical adsorption combined with weak chemical adsorption. The interaction between coal molecules and H2 O is physical and chemical. 展开更多
关键词 CH4/CO2/H2O isosteric heat of adsorption adsorption isotherm radial distribution function Yanzhou coal model
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Detection of free surface composition and molecular-level structural development of styrene(S)/butadiene(B) block copolymer films during a solution-to-film process 被引量:1
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作者 YAN ZhuoHua ZHANG RongPing +5 位作者 ZHAO YuRong ZUO Biao ZHENG FanFan CHEN TianYu WANG XinPing SHEN ZhiQuan 《Science China Chemistry》 SCIE EI CAS 2012年第7期1263-1273,共11页
The surface chemical structure development in solution-cast styrene(S)/butadiene(B) block copolymer films as a function of solvent evaporation time was investigated using sum frequency generation vibrational spectrosc... The surface chemical structure development in solution-cast styrene(S)/butadiene(B) block copolymer films as a function of solvent evaporation time was investigated using sum frequency generation vibrational spectroscopy(SFG).The surface structure formation of the styrene(S)/butadien(B) block copolymer(30 wt% PS) films during the solution-to-film process was found to be controlled mainly by dynamic factors,such as the mobility of the PB block in solution.For SB diblock copolymers,a pure PB surface layer was formed only when the film was cast by dilute toluene solution.With increasing concentration of casting solution,PB and PS components were found to coexist on the film surface,and the morphology of the PB component on the film surface changed from cylindrical rods to spheres.For SBS triblock copolymers,a small amount of PS component existed on the surface even if the film was cast by 1.0 wt% toluene solution.In addition,PS components at the outermost layer of the film increased and the length of PB cylindrical rods on the surface decreased with increasing concentration of casting solution. 展开更多
关键词 styrene/butadiene block copolymer chain architecture casting solution concentration surface structure sum frequen-cy generation vibrational spectroscopy
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Cocrystallization of N-donor type compounds with 5-sulfosalicylic acid:The effect of hydrogen-bonding supramolecular architectures 被引量:8
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作者 WANG Lei XU LingYan +3 位作者 XUE RuiFeng LU XiFeng CHEN RuiXin TAO XuTang 《Science China Chemistry》 SCIE EI CAS 2012年第1期138-144,共7页
Benzotriazole,N,N'-dimethylpiperazine and N-methylpiperazine were applied to crystallize with 5-sulfosalicylic acid(5-H2SSA),affording three new binary molecular cocrystals [(C6H6N3+).(C7H5O6S-)].H2O(1),[(C6H16N22... Benzotriazole,N,N'-dimethylpiperazine and N-methylpiperazine were applied to crystallize with 5-sulfosalicylic acid(5-H2SSA),affording three new binary molecular cocrystals [(C6H6N3+).(C7H5O6S-)].H2O(1),[(C6H16N22+)1/2.(C7H5O6S-)].H2O(2) and [(C5H14N22+).(C7H5O6S-)2].3H2O(3) under general conditions.Proton-transferring occurs from acid to nitrogen of N-donor compounds in all compounds 1,2 and 3.Analysis of the hydrogen-bonding synthons and their effects on crystal packing were also presented in the context of crystal engineering and host-guest chemistry.In compound 1,1-D infinite chains are extended to a 2-D layered architecture via strong O-H...O hydrogen bonds and then to a 3-D network by N-H...O interactions.Compound 2 and 3 both have the 1-D chain which is formed by O-H...O bonds and weak C-H...O hydrogen bonds.A common intramolecular S(6) [synthon I] ring is formed by the hydroxyl with the carboxyl group in all three compounds. 展开更多
关键词 crystal engineering supramolecular synthons N-donor compounds 5-sulfosalicylic acid
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