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Scaling for Experimental Inner-Sphere Reorganization Energy of Hydrated Ions via Accurate Potential Function
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作者 BU Yu-xiang (Department oj Chemistry,Qufu Normal University,Qufu,273165)DENG Cong-hao (Department of Chemistry,Shandong University,Jinan,250100) 《Chemical Research in Chinese Universities》 SCIE CAS CSCD 1995年第2期137-144,共8页
Reported here are several new calculation methods for the inner-sphere reorganization energy of hydrated metal ions involved in electron transfer processes.It is based on the self-exchange model of reorganization and ... Reported here are several new calculation methods for the inner-sphere reorganization energy of hydrated metal ions involved in electron transfer processes.It is based on the self-exchange model of reorganization and utilizes the more exact potential functions between central metal ion and the inner-sphere ligands.The parameters involved are determined via the spectroscopic and thermodynamic data.The predictions of the inner-sphere reorganization energies from those models agree well with the photoemission experimental results. 展开更多
关键词 hydrated metal ion Inner-sphere reorganization energy self-exchange reaction Accurate potential function
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Adsorption of sodium ions and hydrated sodium ions on a hydrophobic graphite surface via cation-π interactions
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作者 石国升 王志刚 +2 位作者 赵纪军 胡钧 方海平 《Chinese Physics B》 SCIE EI CAS CSCD 2011年第6期474-479,共6页
Using density functional theory computation, we show that sodium ions and hydrated sodium ions can be strongly adsorbed onto a hydrophobic graphite surface via cation-π interactions. The key to this eation-π interac... Using density functional theory computation, we show that sodium ions and hydrated sodium ions can be strongly adsorbed onto a hydrophobic graphite surface via cation-π interactions. The key to this eation-π interaction is the coupling of the delocalized π states of graphite and the empty orbitals of sodium ions. This finding implies that the property of the graphite surface is extremely dependent on the existence of the ions on the surface, suggesting that the hydrophobic property of the graphite surface may be affected by the existence of the sodium ions. 展开更多
关键词 GRAPHITE sodium ion and hydrated sodium ion cation-π interaction density functional theory
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A Study of Metal Ions Packing Hydrated Layer of Inclusion Crystals
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作者 Wen Sheng GUO Department of Chemistry,Liaoning Normal University,Dalain,116022Yang LU Shu Chun WANG Qi Tai ZHENG Institute of Material Medica,Chinese Acamedy of Medical Sciences,Beijing.100050Tie Jin LI Department of Chemistry,Jilin University,Changchun,130023 《Chinese Chemical Letters》 SCIE CAS CSCD 1993年第2期153-156,共4页
The inclusion crystal formed by the hexamethylenamine with p-nitrophenol has a layer type structure,and is divided or- ganic layer and inorganic layer,the latter has a width of 1.0136nm.Metal ions can enter hydrated ... The inclusion crystal formed by the hexamethylenamine with p-nitrophenol has a layer type structure,and is divided or- ganic layer and inorganic layer,the latter has a width of 1.0136nm.Metal ions can enter hydrated layer of the crystal,the con- tents of the cations and water in the crystal are determined.The XRD analysis of the layer type structure of the crystal is also giv- en. 展开更多
关键词 A Study of Metal ions Packing hydrated Layer of Inclusion Crystals XRD
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A 3-D Supramolecular Network with 1-D Cation Metal-organic Coordination Polymers and Diverse Motifs from Hydrogen-bonded [M(H_2O)_4]-Carboxylates
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作者 黄坤林 左彦秋 +4 位作者 孙杰 陈新 苗红菊 刘玺 许红 《Chinese Journal of Structural Chemistry》 SCIE CAS CSCD 北大核心 2008年第11期1393-1397,共5页
One-pot solvothermal reaction of Iransition metal Znn salt with 4,4-bipyddyl (bpy) and 1,4-benzenediacrylic add (H2L) in the presence of Et3N generates a three-dimensional (3-D) supramolecular network with 1-D c... One-pot solvothermal reaction of Iransition metal Znn salt with 4,4-bipyddyl (bpy) and 1,4-benzenediacrylic add (H2L) in the presence of Et3N generates a three-dimensional (3-D) supramolecular network with 1-D cation metal-organic coordination polymer, [Zn(H20)a(bpy)]-L 1, and structurally characterized by single-crystal X-ray diffraction, elemental analyses, IR spectroscopy, and photoluminescent property. The complex crystallizes in triclinic, space group P1 with a = 7.1291(2), b = 7.3784(3), c = 10.5042(3)A, α = 95.049(2), β = 102.162(2), 7 = 97.027(3)0, V= 532.38(3)A3, C22H24N2O8Zn, Mr = 509.82, De= 1.590 g/cm3, p(MoKa)= 1.207 ram-l, F(000) = 264, Z = 1,the finalR=O.0438and wR=O.lOll for 1589 observed reflections (I 〉 2σ(I)). In the crystal structure, the second building unit composed of [Zn(H2O)4].L constructs two distinct 2-D supramolecular sheets and a neutral 3-D architecture. The title compound 1 shows strong photoluminescence with emission maximum at 2 = 455 nm upon λex.max = 355 nm. 展开更多
关键词 supramolecular structure coordination polymer hydrated ion PHOTOLUMINESCENCE ZINC
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Hydration of iodine adsorbed on the Au(111) surface
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作者 Yuanqi Ding Lei Xie +2 位作者 Xinyi Yao Chi Zhang Wei Xu 《Fundamental Research》 CAS 2022年第4期546-549,共4页
The hydration of halogens has been widely researched because of its close relation with the water desalination and biochemical reactions.In this work,by a combination of scanning tunneling microscopy and X-ray photoel... The hydration of halogens has been widely researched because of its close relation with the water desalination and biochemical reactions.In this work,by a combination of scanning tunneling microscopy and X-ray photoelectron spectroscopy,we have explored the hydration process of iodine via the Eley-Rideal process on the Au(111)surface.Moreover,the hydration process of iodine with the presence of the NiPc self-assembled network as a template has also been investigated,where the stepwise hydration of iodine at room temperature can be visualized on Au(111). 展开更多
关键词 Room temperature On-surface ion hydration Eley-Rideal process Scanning tunneling microscopy X-ray photoelectron spectroscopy
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