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Theoretical Study on Electronic Gain-and-loss Properties of TEMPO and Its Derivates in Charge/Discharge Processes 被引量:1
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作者 Shu-cai Mao Jin-qing Qu Kang-cheng Zheng 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 2012年第2期161-168,I0003,共9页
Theoretical study on the electronic structures and related properties of 2,2,6,6-tetramethyl- l-piperidinyloxy (TEMPO) and its cationic lipid derivates in the charge/discharge processes has been carried out using th... Theoretical study on the electronic structures and related properties of 2,2,6,6-tetramethyl- l-piperidinyloxy (TEMPO) and its cationic lipid derivates in the charge/discharge processes has been carried out using the density functional theory (DFT) at the (U)B3LYP/6-31G(d,p) or 6-31+G(d,p) level. The changes and regularities of geometric and electronic properties of these compounds in the charge/discharge processes were revealed in detail. The compu- tational results show that the substitute group plays a very important role in the electronic structures and related properties of TEMPOs during the charge/discharge processes. It is very interesting to find that after getting an electron, TEMPO is more stable in singlet state but the lipid is more stable in triplet state. For TEMPO, both the charge and the discharge processes greatly influence the electronic properties of N and O atoms of the radical part. For the cationic lipid, the discharge process mainly influences the pyridinium head and the charge process mainly influences the free radical head. Moreover, the solvent effect plays an important role in some bond lengths and the charge population of the free radical head. In addition, the UV-Vis absorption spectra simulated using TDDFT at the 6-31G(d,p) with the experimental ones. of TEMPO and the lipid were calculated and or 6-31+G(d,p) level, in satisfying agreement 展开更多
关键词 2 2 6 6-tetramethyl-l-piperidinyloxy Charge/discharge process electronicstructure Density functional theory calculation
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Bonding Character and Formation Energy of Point Defects of He and Vacancy on (001) Surface of bcc Iron by First Principle Calculations 被引量:1
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作者 Jun CAI Daogang LU 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2013年第1期25-32,共8页
The structure and energy of He impurities and vacancy on (001) surface of bcc iron are investigated by an ab initio method. Three cases for stabilities of a He atom at the surface are found: some of He atoms at sur... The structure and energy of He impurities and vacancy on (001) surface of bcc iron are investigated by an ab initio method. Three cases for stabilities of a He atom at the surface are found: some of He atoms at surface atomic layers (SAL) relax into vacuum gap; some of surface He atoms at octahedral interstitial site relax into more stable tetrahedral interstitial site; some of surface He atoms still stay at tetrahedral interstitial site. The un-stability of the He atom at the surface system can be explained by deformation mechanism of charge densities and electronic densities of states. It is found that formation energy of the point defects from the topmost SAL to bulk-like atomic layer increase gradually, for example, the formation energies of a monovacancy at the first five topmost SALs are equal to 0.33, 1.56, 2.04, 2.02 and 2.11 eV, respectively. The magnetic moments of Fe atoms in the surface atomic layers are also calculated. 展开更多
关键词 ab initio calculations Single point defects bcc Fe (001) surface electronicstructure
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ELECTRONIC STRUCTURE AND PHYSICAL PROPERTIES OF FeAl
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作者 Y.J.Gao and X.P.Zhong Departmentof physics, Guangxi University , Nanning 530004 ,China 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 1999年第4期488-491,共4页
Theelectronicstructureof FeAlisdetermined byone cell state method andthepotentialenergy curve,lattice constant, cohesive energy, bulk elastic module, and the variation of linear thermalexpansion coefficient with t... Theelectronicstructureof FeAlisdetermined byone cell state method andthepotentialenergy curve,lattice constant, cohesive energy, bulk elastic module, and the variation of linear thermalexpansion coefficient with temteraturearecalculated. 展开更多
关键词 FEAL valentbond theory electronicstructure PHYSICALPROPERTIES
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Catalytic activity of noble metal nanoparticles toward hydrodechlorination: influence of catalyst electronic structure and nature of adsorption
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作者 Man ZHANG Feng HE Dongye ZHAO 《Frontiers of Environmental Science & Engineering》 SCIE EI CAS CSCD 2015年第5期888-896,共9页
In this study, stabilized Pd, Pt and Au nanoparticles were successfully prepared in aqueous phase using sodium carboxymethyl cellulose (CMC) as a capping agent. These metal nanoparticles were then tested for catalyt... In this study, stabilized Pd, Pt and Au nanoparticles were successfully prepared in aqueous phase using sodium carboxymethyl cellulose (CMC) as a capping agent. These metal nanoparticles were then tested for catalytic hydrodechlorination toward two classes of organochlorinated compounds (vinyl polychlorides includ- ing trichloroethylene (TCE), tetrachloroethylene (PCE), and alkyl polychlorides including 1,1,1-trichloroethane (1,1,1-TCA), and 1,1,1,2-tetrachloroethane (1,1,1,2- TeCA)) to determine the rate-limiting steps and to explore the reaction mechanisms. The surface area normalized reaction rate constant, ksA, showed a systematic depen- dence on the electronic structure (the density of states at the Fermi level) of the metals, suggesting that adsorption of organochlorinated reactants on the metal catalyst surfaces is the rate-limiting step for catalytic hydrodechlorination. Hydrodechlorination rates of 1,1,1-TCA and 1,1,1,2-TeCA agreed with the bond strength of the first (weakest) dissociated C-C1 bond, suggesting that C-C1 bond cleavage, which is the first step for dissociative adsorption of the alkyl polychlorides, controlled the catalytic hydro- dechlorination rate. However, hydrodechlorination rates of TCE and PCE correlated with the adsorption energies of their molecular (non-dissociative) adsorption on the noble metals rather than with the first C-C1 bond strength, suggesting that molecular adsorption governs the reaction rate for hydrodechlorination of the vinyl polychlorides. 展开更多
关键词 catalytic hydrodechlorination electronicstructure metal nanoparticles reaction mechanisms
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