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51.
在避免母体结构坍塌的前提下,通过缺陷工程对金属有机骨架(MOFs)进行处理可有效提升其去除水体污染物的性能。目前,通过调整合成条件(温度、金属/配体比例等)、添加调制剂、热处理和金属节点取代等方式可制备缺陷MOFs。粉末X射线衍射(PXRD)、比表面积分析、热重-差热分析(TGA-DSC)、电子顺磁共振(EPR)、X射线光电子能谱(XPS)、高分辨率透射电子显微镜(HR-TEM)、球差校正透射电镜(AC-TEM)和X射线吸收光谱(XAS)表征技术可证实MOFs中缺陷的特征。相比原始MOFs,从光催化等高级氧化的角度来看,构造缺陷型MOFs可促进电子转移、减小带隙以提升其高级氧化降解去除污染物的性能。此外,缺陷型MOFs还可为污染物提供更多吸附位点,进一步提升吸附剂的吸附容量和吸附速率。本文系统总结缺陷MOFs的制备方法、现有常见表征技术及其在水处理领域中的应用。同时,本文还根据缺陷MOFs用于去除水中污染物的研究现状对其今后发展予以展望。  相似文献   
52.
1H,13C,14N and15N NMR measurements are reported for four mesoionic 1-oxa-2, 3, 4-triazoles containing exocyclic nitrogenous groups. The NMR signal assignments are discussed and compared with those previously published for some corresponding oxatriazoles. The results obtained support the proposed cyclic mesoionic structures for the compounds studied. The questions of possible charge delocalization and valence tautomerism are addressed. Compound with N H as a exocyclic group (Fig. 1) is found to be relatively unstable, this is attributed to proton migration in the corresponding non-cyclic form of this molecule.Published in Khimiya Geterotsikiicheskikh Soedinenii, No. 9, pp. 1260–1263, September, 1995.  相似文献   
53.
The local structure of the chemical bond in molecular ion crystals of alkaline and heavy metal azides (MN3, M = Li, Tl, Ag) is discussed in terms of Wannier functions. Various schemes of localization are considered in relation to the peculiarities of electronic structure, and hybridization effects, leading to anion-cation complexes in compounds with covalent bonds, are analyzed.  相似文献   
54.
 构造了氮-镍相互作用的5-参数Morse势,研究了氮原子在Ni(\r\n100),Ni(110)和Ni(111)平坦表面的吸附和振动,获得了氮原子\r\n在三个低指数表面的吸附位、吸附构型、结合能和本征振动等数据,计\r\n算结果与实验结果非常吻合.同时,与Ni(100)表面对比,系统研究\r\n了氮原子在Ni(510)台阶面的吸附和扩散.计算结果表明,氮原子在\r\n台阶下部形成最稳定的吸附态,台阶对下台面上扩散的氮原子形成捕获\r\n势,对上台面上扩散的氮原子形成反射势.  相似文献   
55.
The ground‐state electronic structure of peroxynitrous acid (HOONO) and its singlet biradicaloid form (HO ··· ONO) have been studied using topological analysis of the electron localization function (ELF), together with the electron localizability indicator (ELI‐D), at the DFT (B3LYP, M05, M052X, and M06), CCSD, and CASSCF levels. Three isomers of HOONO (cis‐cis, cis‐perp, and trans‐perp) have been considered. The results show that from all functionals applied, only B3LYP yields the correct geometrical structure. The ELF and ELI‐D‐topology of the O? O and central N? O bonds strongly depends on the wave function used for analysis. Calculations carried out at CAS (14,12)/aug‐cc‐pVTZ//CCSD(T)/aug‐cc‐pVTZ level reveal two bonds of the charge‐shift type: a protocovalent N? O bond with a basin population of 0.82–1.08e, and a more electron depleted O? O bond with a population of 0.66–0.71e. The most favorable dissociation channel (HOONO → HO + ONO) corresponds to breaking of the most electron‐deficient bond (O? O). In the case of cis‐ and trans‐HO ··· ONO, the ELF, ELI‐D, and electron density fields results demonstrate a closed‐shell O ··· O interaction. The α‐spin electrons are found mainly (0.64e) in the lone pairs of oxygen Vi = 1,2 (O) from the OH group. The β‐spin electrons are delocalized over the ONO group, with the largest concentration (0.34e) on the lone pair of nitrogen V(N). © 2011 Wiley Periodicals, Inc. J Comput Chem, 2011  相似文献   
56.
 针对高空速下捕获痕量毒物分子的环境净化要求, 尝试调控介孔材料孔壁结构以提高其吸附小分子环境污染物的效率. 通过调节合成体系的 pH 值、加入无机盐以及控制表面活性剂浓度等方法, 改变硅物种与模板剂胶束的组装速度或无机-有机液晶相的存在形态, 研制含有孔壁缺陷位的介孔分子筛新材料. 通过 X 射线衍射和低温氮气吸附研究了样品的结构特性, 并采用高分辨透射电镜和固体核磁技术证实了介孔材料孔壁缺陷位的形成. 以挥发性吡咯烷亚硝胺为靶标分子, 考察了所得材料的吸附性能. 结果表明, 大量缺陷空位的存在成倍地提高了介孔分子筛吸附挥发性亚硝胺的效率, 为设计研制环保新材料提供了新思路.  相似文献   
57.
The decomposition mechanisms of methanol on five different Pt surfaces, the flat surface of Pt(111), Pt‐defect, Pt‐step, Pt(110)(1 × 1), and Pt(110)(2 × 1), have been studied with the DFT‐GGA method using the repeated slab model. The adsorption energies under the most stable configuration of the possible species and the activation energy barriers of the possible elementary reactions involved are obtained in this work. Through systematic calculations for the reaction mechanism of methanol decomposition on these surfaces, we found that such a reaction shows the same reaction mechanism on these Pt‐based model catalysts, that is, the final products are all H (Hads) and CO (COads) via O? H bond breaking in methanol and C? H bond scission in methoxy. These results are in general agreement with the previous experimental observations. © 2010 Wiley Periodicals, Inc. J Comput Chem, 2010.  相似文献   
58.
Bonding analysis in β-diketiminate boron and related systems has been performed. For the optimized geometries (MP2/aug-cc-pVTZ), the post-SCF electron density function has been produced and its topological parameters have been analyzed according to Atoms in Molecules Quantum Theory approach. The B–N bond has characteristics similar to those found for TM–ligand bonding. The symmetric character of the B–N interaction found for the β-diketiminate boron results from the fully π-electron delocalized character of the β-diketiminate moiety. If the π-electron system in NCCCN sequence of bonds is localized, the asymmetric B–N bonding is enforced. Electronic supplementary material  The online version of this article (doi:) contains supplementary material, which is available to authorized users.
Marcin PalusiakEmail:
  相似文献   
59.
Artemisinin‐based combination therapy is widely used for the treatment of uncomplicated Plasmodium falciparum malaria, and piperaquine (PQ) is one of important partner drugs. The pharmacokinetics of PQ is characterized by a low clearance and a large volume of distribution; however, metabolism of PQ has not been thoroughly investigated. In this work, the metabolite profiling of PQ in human and rat was studied using liquid chromatography tandem high‐resolution LTQ‐Orbitrap mass spectrometry (HRMS). The biological samples were pretreated by solid‐phase extraction. Data processes were carried out using multiple data‐mining techniques in tandem, i.e., isotope pattern filter followed by mass defect filter. A total of six metabolites (M1–M6) were identified for PQ in human (plasma and urine) and rat (plasma, urine and bile). Three reported metabolites were also found in this study, which included N‐oxidation (M1, M2) and carboxylic products (M3). The subsequent N‐oxidation of M3 resulted in a new metabolite M4 detected in urine and bile samples. A new metabolic pathway N‐dealkylation was found for PQ in human and rat, leading to two new metabolites (M5 and M6). This study demonstrated that LC‐HRMSn in combination with multiple data‐mining techniques in tandem can be a valuable analytical strategy for rapid metabolite profiling of drugs. Copyright © 2016 John Wiley & Sons, Ltd.  相似文献   
60.
Human biomonitoring is the assessment of actual internal contamination of chemicals by measuring exposure markers, chemicals or their metabolites, in human urine, blood, serum, and other body fluids. However, the metabolism of chemicals within an organism is extremely complex. Therefore, the identification of metabolites is often difficult and laborious. Several untargeted metabolomics methods have been developed to perform objective searching/filtering of accurate-mass-based LC-MS data to facilitate metabolite identification. In this study, three metabolomics data processing approaches were used for chemical exposure marker discovery in urine with an LTQ-Orbitrap high-resolution mass spectrometry (HRMS) dataset; di-isononyl phthalate (DINP) was used as an example. The data processing techniques included the SMAIT, mass defect filtering (MDF), and XCMS Online. Sixteen, 83, and 139 probable DINP metabolite signals were obtained using the SMAIT, MDF, and XCMS procedures, respectively. Fourteen probable metabolite signals mined simultaneously by the three metabolomics approaches were confirmed as DINP metabolites by structural information provided by LC-MS/MS. Among them, 13 probable metabolite signals were validated as exposure-related markers in a rat model. Six (m/z 319.155, 361.127, 373.126, 389.157, 437.112 and 443.130) of the 13 exposure-related DINP metabolite signals have not previously been reported in the literature. Our data indicate that SMAIT provided an efficient method to discover effectively and systematically urinary exposure markers of toxicant. The DINP metabolism information can provide valuable information for further investigations of DINP toxicity, toxicokinetics, exposure assessment, and human health effects.  相似文献   
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