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Solid State Physics View of Liquid State Chemistry Ⅲ. Electrical Conductance of Pure and Impure Water
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作者 揭斌斌 薩支唐 《Journal of Semiconductors》 EI CAS CSCD 2014年第4期1-20,共20页
The 'abnormally' high electrical conductivity ofpure water was recently studied by us using our protonic bond, trap and energy band model, with five host particles: the positive and negative protons, and the amphot... The 'abnormally' high electrical conductivity ofpure water was recently studied by us using our protonic bond, trap and energy band model, with five host particles: the positive and negative protons, and the amphoteric protonic trap in three charge states, positive, neutral and negative. Our second report described the electrical charge storage capacitance of pure and impure water. This third report presents the theory of particle density and electrical conductance of pure and impure water, including the impuritons, which consist of an impurity ion bonded to a proton, proton-hole or proton trap and which significantly affect impure waters' properties. 展开更多
关键词 solid state and soft matter physics liquid state chemistry pure and impure water positive proton negative proton-hole or protole and amphoteric proton traps impuritons affinitons atomic or oxygenphonons hydrogen or protonic phonons and molecular phonons
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Ion Product of Pure Water Characterized by Physics-Based Water Model
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作者 揭斌斌 蕯支唐 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 2016年第2期167-170,I0001,共5页
Pure water has been characterized for nearly a century, by its dissociation into hydronium (H3O)1+ and hydroxide (HO)1- ions. As a chemical equilibrium reaction, the equilibrium constant, known as the ion product... Pure water has been characterized for nearly a century, by its dissociation into hydronium (H3O)1+ and hydroxide (HO)1- ions. As a chemical equilibrium reaction, the equilibrium constant, known as the ion product or the product of the equilibrium concentration of the two ion species, has been extensively measured by chemists over the liquid water temperature and pressure range. The experimental data have been nonlinear least-squares fitted to chemical thermodynamic-based equilibrium equations, which have been accepted as the industrial standard for 35 years. In this study, a new and statistical-physics-based water ion product equation is presented, in which, the ions are the positively charged protons and the negatively charged proton-holes or prohols. Nonlinear least squares fits of our equation to the experimental data in the 0-100℃ pure liquid water range, give a factor of two better precision than the 35-year industrial standard. 展开更多
关键词 Solid state physics Liquid state chemistry Pure water Ion product Positiveproton Negative proton-hole or prohol
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