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1.
J Phys Chem A ; 124(6): 1087-1092, 2020 Feb 13.
Article in English | MEDLINE | ID: mdl-31951409

ABSTRACT

Quantum chemical calculations using ab initio methods at the CCSD(T) level with large basis sets and DFT calculations using the BP86 functional have been carried out for O22+ and N2. An energy decomposition analysis of the chemical bonds suggests that the shorter bond in O22+ compared with isoelectronic N2 is due to the weaker Pauli repulsion in the dication, which overcompensates the weakening of attractive interactions that are operative in N2. At the equilibrium distance of N2, the orbital (covalent) bonding in O22+ is weaker than in N2, and the attractive Coulomb interactions in the neutral diatomic system become repulsive in the dication, but the weakening of the Pauli repulsion caused by the shrinking of the orbitals in O22+ compensates for these forces and leads to a shortening of the bond. The results also show that the bond dissociation energy is not a reliable indicator for the strength of bond, which is more faithfully given by the (local) force constant.

2.
J Comput Chem ; 41(4): 279-289, 2020 Feb 05.
Article in English | MEDLINE | ID: mdl-31713268

ABSTRACT

Density functional theory (DFT) calculations were performed to gain insight into the mechanism of the nickel-catalyzed hydrocyanation of terminal alkynes with Zn(CN)2 and water to exclusively generate the branched nitrile with excellent Markovnikov selectivity. After precatalyst activation to give the LNi(0) active species, the transformation proceeds via the following steps: (1) oxidative addition of H2 O to the LNi(0) provides the intermediate LNi(II)H(OH); (2) ligand exchange of LNi(II)H(OH) with Zn(CN)2 gives the intermediate LNi(II)H(CN); (3) alkyne insertion to the LNi(II)H(CN) forms the alkenyl nickel complex, followed by the reductive elimination step reaching the final product. This mechanism is kinetically and thermodynamically more favorable than that of the experimental proposed ones. On the basis of the experimental observations, more water molecules cannot further improve the reaction as it has also been rationalized. Furthermore, the origin of the high regioselectivity of the product, the variable effectiveness of the metal mediator as function of ligands, as well as the high yield of the alkyl-substituted alkynes substrates, is analyzed in detail. © 2019 Wiley Periodicals, Inc.

3.
Chinese Journal of School Health ; (12): 213-216, 2020.
Article in Chinese | WPRIM (Western Pacific) | ID: wpr-809740

ABSTRACT

Objective@#To explore the impact of function of mobile phone use on self-perceived stress and mobile phone addiction of high vocational students, and the mediating role of coping styles between different mobile phone functions and mobile phone addiction.@*Methods@#A total of 911 participants in two vocational colleges in Wuhan and Liaocheng were investigated by using convenient sampling method. Smartphone Usage, Simplified Coping Style Questionnaire, and Stress subscale of Depression-Anxiety-Stress Scale(short version) were administered to participants.@*Results@#Female students scored significantly higher on mobile phone social features (4.77±1.06) than males( t =2.05, P =0.04), while males scored significantly higher on MPATS and DASS-S, Negative Coping Style subscales than females( P <0.01). The social function of the mobile phone was positively related to the positive coping styles( r =0.17, P <0.01). The game features of mobile phone were positively related to negative coping styles, stress and mobile addiction( P <0.01). Negative coping style could positively predict stress and mobile phone addiction( β =0.53, 0.50, P <0.01). Negative coping styles and stress had significant chain mediation effects in nonsocial functions and mobile phone addiction(95% CI =0.06-0.24, P <0.01).@*Conclusion@#Students of vocational college who often use cellphone not for social purpose have higher self-perceived stress. The game function of mobile phones had an adverse effect on the physical and mental health of vocational students. Negative coping style is a powerful predictor of stress and mobile phone addiction.

4.
J Comput Chem ; 40(16): 1599-1608, 2019 06 15.
Article in English | MEDLINE | ID: mdl-30847957

ABSTRACT

Density functional theory calculations were performed to understand the detailed reaction mechanism of aluminum alkoxy-catalyzed conversion of glucose to 5-hydroxymethylfurfural (HMF) using Al(OMe)3 as catalyst. Potential energy surfaces were studied for aggregates formed between the organic compounds and Al(OMe)3 and effects of the medium were considered via continuum solvent models. The reaction takes place via two stages: isomerization from glucose to fructose (stage I) and transformation of fructose to HMF (stage II). Stage II includes three successive dehydrations, which begins with a 1,2-elimination to form an enolate (i.e., B), continues with the formation of the acrolein moiety (i.e., D), and ends with the formation of the furan ring (i.e., HMF). All of these steps are facilitated by aluminum alkoxy catalysis. The highest barriers for stage I and stage II are 23.9 and 31.2 kcal/mol, respectively, and the overall catalytic reaction is highly exothermic. The energetic and geometric results indicate that the catalyzed reaction path has feasible kinetics and thermodynamics and is consistent with the experimental process under high temperature (i.e., 120 °C). Remarkably, the released water molecules in stage II act as the product, reactant, proton shuttle, as well as stabilizer in the conversion of fructose to HMF. The metal-ligand functionality of the Al(OMe)3 catalyst, which combines cooperative Lewis acid and Lewis base properties and thereby enables proton shuttling, plays a crucial role in the overall catalysis and is responsible for the high reactivity. © 2019 Wiley Periodicals, Inc.


Subject(s)
Alcohols/chemistry , Aluminum/chemistry , Density Functional Theory , Furaldehyde/analogs & derivatives , Glucose/chemistry , Organometallic Compounds/chemistry , Biomass , Catalysis , Furaldehyde/chemical synthesis , Furaldehyde/chemistry , Furaldehyde/metabolism , Glucose/metabolism
5.
J Chem Inf Model ; 59(2): 832-841, 2019 02 25.
Article in English | MEDLINE | ID: mdl-30688451

ABSTRACT

Multidomain carboxylic acid reductases (CARs) can reduce a wide range of carboxylic acids to the corresponding aldehydes in the presence of ATP and NADPH. Recent X-ray structures of the individual (di)domains of Segniliparus rugosus CAR (SrCAR) shed light on the catalysis mechanism and revealed domain dynamics during the different states of the reaction. However, the details of the catalytic mechanism of each step operated by the corresponding domains are still elusive. Toward this end, several models based on the crystal structures were constructed, and molecular dynamics simulations along with density functional theory (DFT) calculations were employed to elucidate the conformational dynamics and catalytic mechanism of SrCAR concealed to static crystallography. We investigated the roles of the key residues in the substrate binding pocket involved in the adenylation and thiolation reactions and especially determined the roles played by a nonconserved Lys528 residue in the thiolation step, which were further verified by site-directed mutagenesis. The reduction mechanism of SrCAR, including the natures of the transition states for hydride and proton transfer, was also explored theoretically using the DFT method B3LYP. The information presented here is useful as a guide for the future rational design of CARs.


Subject(s)
Biocatalysis , Molecular Dynamics Simulation , Oxidoreductases/chemistry , Oxidoreductases/metabolism , Actinobacteria/enzymology , Density Functional Theory , Protein Domains
6.
J Am Chem Soc ; 141(5): 1908-1912, 2019 Feb 06.
Article in English | MEDLINE | ID: mdl-30633503

ABSTRACT

Despite the notable progress in the stabilization of main group radicals by NHCs and cAACs, no germanium radicals have been isolated so far due to synthetic challenges. Stabilization of neutral [:EIR]• (E = Si, Ge) radicals is an uphill task, as these reactive transient species are highly susceptible to dimerization. Herein, we report the synthesis of acyclic neutral germanium(I) radicals Cy-cAAC:GeN(SiMe3)Dip (1) and Me-cAAC:GeN(SiPh3)Mes (2) obtained by the reduction of [Ar(SiR3)NGeCl3] with KC8 in the presence of cAAC. Compounds 1 and 2 are well characterized by single crystal X-ray structural analysis, cyclic voltammetry, and EPR spectroscopy. Furthermore, the structure and bonding of compounds 1 and 2 have been investigated by theoretical methods.

7.
Article in Chinese | WPRIM (Western Pacific) | ID: wpr-819363

ABSTRACT

Objective@#This paper discussed possible mechanisms of mobile phone addiction on mental health of vocational college students, and to explore the role of selfcontrol and selfesteem in this association.@*Methods@#Totally 898 vocational college students from Liaocheng, Kunming and Wuhan were selected by random cluster sampling. Subjects were investigated with the Mobile Phone Addiction Index, DepressionAnxietyStress Scale (short version), SelfControl Scale, and SelfEsteem Scale.@*Results@#About 27.6% of the participants selfreported mobile phone addiction. Mobile phone addiction score (45.80±10.41)was positively correlated with mental health(36.18±9.13)(P<0.01). A significant negative correlation was found between mobile addiction tendency with selfcontrol and selfesteem (both P<0.01). Male students scored higher on depression, anxiety and stress than female students(t=3.57, P<0.01). Selfcontrol played a partial intermediary role in the association between mobile phone addiction and mental health(β=-0.36, P<0.01). The influence of mobile phone addiction tendency on depression and stress were moderated by selfesteem.@*Conclusion@#Mobile phone addiction has a direct and indirect effect on mental health through selfcontrol. With increasing level of selfesteem, effect of mobile phone addiction on mental health tends to become weaker.

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