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21.
Hard carbon is the leading candidate anode for commercialization of Na‐ion batteries. Hard carbon has a unique local atomic structure, which is composed of nanodomains of layered rumpled sheets that have short‐range local order resembling graphene within each layer, but complete disorder along the c‐axis between layers. A primary challenge holding back the development of Na‐ion batteries is that a complete understanding of the structure–capacity correlations of Na‐ion storage in hard carbon has remained elusive. This article presents two key discoveries: first, the characteristics of hard carbons structure can be modified systematically by heteroatom doping, and second, that these structural changes greatly affect Na‐ion storage properties, which reveals the mechanisms for Na storage in hard carbon. Specifically, via P or S doping, the interlayer spacing is dilated, which extends the low‐voltage plateau capacity, while increasing the defect concentrations with P or B doping leads to higher sloping sodiation capacity. The combined experimental studies and first principles calculations reveal that it is the Na‐ion‐defect binding that corresponds to the sloping capacity, while the Na intercalation between graphenic layers causes the low‐potential plateau capacity. The understanding suggests a new design principle of hard carbon anode: more reversibly binding defects and dilated turbostratic domains, given that the specific surface area is maintained low.  相似文献   
22.
A new bidentate chelating pyrazolylpyrimidine ligand bearing a strong electron-donating substituent, i.e. 4-(3,5-diphenyl-1H-pyrazol-1-yl)-6-(piperidin-1-yl)pyrimidine (L) (Scheme 1), has been synthesized and used to obtain the copper(II) complexes by reaction with CuCl2. The molar ratio Cu:L = 1:2 leads to isolation of a complex having CuL2Cl2 empirical formula, while the molar ratio Cu:L = 1:1 gives a complex with CuLCl2 empirical formula. The crystal structure of L as well as the structures of both complexes were studied by single crystal X-ray diffraction. The crystal structure of CuL2Cl2 compound is formed by trans-[CuL2Cl2] mononuclear molecules. Surprisingly, in contrast to the previous compound having molecular structure, the crystal structure of CuLCl2 consists of mononuclear [CuL2Cl]+ complex cations and dinuclear [Cu2Cl6]2− anions. Thus, formula of CuLCl2 complex can be represented as [CuL2Cl]2[Cu2Cl6]. In both complexes molecules of L adopt bidentate chelating coordination mode through N2 atom of pyrazole and N3 atom of pyrimidine rings forming five-membered CuN3C metallocycles. Owing to C-H···N interactions and π-π-stacking L molecules form 2D network. In the structure of trans-[CuL2Cl2] there exist double lone pair(N(piperidine))-π(pyrimidine) interactions and C-H···Cl contacts resulting in the formation of 1D chains. Layered 2D structure of [CuL2Cl]2[Cu2Cl6] results from C-H···Cl, C-H···π and double lone pair(Cl([CuL2Cl]+ complex cation)-π(pyrimidine) interactions.  相似文献   
23.
Silver(I) halides react with tri(p-tolyl)phosphine (tptp, C21H21P) in MeOH/MeCN solutions in 1:1 or 1:3 molar ratios to give complexes of formulae {[AgCl(tptp)]4} (1) or [AgX(tptp)3] (X = Cl (2), Br (3), I (4)), respectively. The complexes were characterized by elemental analyses, and FT-IR far-IR, FT-Raman, TG and 1H, 13C, 31P NMR spectroscopic techniques. Crystal structures of complexes 2-4 were determined by X-ray diffraction at room temperature (rt). The crystal structure of 1 and 4 was also determined at 100(1) and 140(2) K (lt), respectively. In complex 1 four μ3-Cl ions are bonded with four Ag(I) ions forming a cubane while the coordination sphere of silver(I) ions is completed by one P atom from a terminal tri(p-tolyl)phosphine ligand. In complexes 2-3 one terminal halogen and three P atoms from phosphine ligands form a tetrahedral arrangement around the metal ion. Complexes 1-4 were tested for in vitro cytostatic activity against sarcoma cancer cells (mesenchymal tissue) from the Wistar rat, polycyclic aromatic hydrocarbons (PAH, benzo[a]pyrene) carcinogenesis and against murine leukemia (L1210) and human T-lymphocyte (Molt4/C8 and CEM) cells. The silver(I) complexes 1-4 show strong activity.  相似文献   
24.
We have previously observed that stepwise replacement of amino acid residues in the nascent base-pair binding pocket of RB69 DNA polymerase (RB69pol) with Ala or Gly expanded the space in this pocket, resulting in a progressive increase in misincorporation. However, in vivo results with similar RB69pol nascent base-pair binding pocket mutants showed that mutation rates, as determined by the T4 phage rI forward assay and rII reversion assay, were significantly lower for the RB69pol S565G/Y567A double mutant than for the Y567A single mutant, the opposite of what we would have predicted. To investigate the reasons for this unexpected result, we have determined the pre-steady-state kinetic parameters and crystal structures of relevant ternary complexes. We found that the S565G/Y567A mutant generally had greater base selectivity than the Y567A mutant and that the kinetic parameters for dNMP insertion, excision of the 3′-terminal nucleotide residue, and primer extension beyond a mispair differed not only between these two mutants but also between the two highly mutable sequences in the T4 rI complementary strand. Comparison of the crystal structures of these two mutants with correct and incorrect incoming dNTPs provides insight into the unexpected increase in the fidelity of the S565G/Y567A double mutant. Taken together, the kinetic and structural results provide a basis for integrating and interpreting in vivo and in vitro observations.  相似文献   
25.
The complex [Ru(SB12H11)(NH3)5]·2H2O has been prepared by the reaction of Cs2B12H11SH with [RuCl(NH3)5]Cl2 in aqueous solution. The complex represents the first reported example of the borocaptate anion acting as a ligand. The structure of the complex has been determined by single crystal X-ray diffraction analysis. The crystal parameters are monoclinic, space group P21/c, A = 8.056(1), B = 14.240(2), C = 15.172(2) Å, β=98.48° and Z = 4. The ruthenium atom has a distorted octahedral coordination. The distortion is probably due to the high (3) charge and the large bulk of the borocaptate ligand. These features can also be observed in the spectroscopic properties of the complex.  相似文献   
26.
目的:探讨不同内固定方法对肱骨近端骨折的预后影响。方法:选取90例因肱骨骨折入院治疗的患者的临床资料进行回顾性分析,按照内固定方法的不同将所有患者分为A组和B组。其中A组为44例,均采用锁定加压钢板治疗;B组为46例,均采用解剖型钢板治疗。比较两组患者术后并发症的发生情况,并且采用Neer评分系统评定肱骨近端骨折治疗后的肩关节功能等级。结果:获得有效随访资料共79份,占87.8%。其中锁定加压钢板组获得有效随访的数量为39,占43.3%;解剖型钢板组获得有效随访的数量为40,占44.4%。根据Neer评定标准,A组患者的肩关节功能Neer评定优良率为92%,显著高于B组87.5%,两组之间差异无统计学意义(x~2=0.131,P0.05)。结论:锁定加压钢板内固定法对肱骨近端骨折预后明显优于解剖型钢板,更有利于患者早期功能锻炼的进行和肩关节功能恢复。  相似文献   
27.
Model equations for the kinetics of the synthesis and decay of molecular aggregates are used to show the high sensitivity of equilibrium concentrations of high-molecular aggregates to external radiation. This phenomenon is used to explain the effects of low-intensity microwave fields on the functioning of biological systems. The experimental results on the influence of SHF-radiation on ferricyanide reduction by erythrocytes are interpreted in detail.  相似文献   
28.
目的:归纳肝外胆管解剖变异和先天发育异常的MRCP(magnetic resonance cholangiopancreatography,MRCP)表现。方法:回顾分析2010年1月到2015年6月间PACS存储的6817例图像资料,首先判定图像质量,然后记录肝门区胆管分支汇入方式、胆囊管插入位置、胆管先天发育异常及其表现。结果:1590例存在肝外胆管解剖变异和先天发育异常。其中胆囊管汇入位置异常发生率14.72%(787/5347),肝门区胆管分支汇入状态异常发生率17.97%(961/5347)。包括肝门区胆管分支汇入状态正常,胆囊管汇入位置异常575例,发生率10.75%(575/5347)。胆囊管汇入位置正常,肝门区胆管分支汇入状态异常749例,发生率14.01%(749/5347)。胆囊管汇入位置和肝门区胆管分支汇入状态异常并存212例,发生率3.96%(212/5347)。先天性发育异常即先天胆管扩张症54例,发生率1.01%(54/5347)。结论:肝外胆管解剖变异和先天发育异常复杂多样,MRCP能够准确显示大部分解剖变异种类及其毗邻关系,但是受图像质量及所罹患病种制约。  相似文献   
29.
扁圆封印木(相似种)茎干的解剖特征   总被引:1,自引:1,他引:1  
贵州省水城矿区晚二叠世煤核中扁圆封印木(相似种Sigillaria cf.brardiiBrongn.)茎干的主要解剖特征如下:管状中柱,具多边形薄壁细胞组成的髓。初生木质部成环带状,外缘呈规则的齿槽状,向心式发育。次生木质部显束状特征,横切面管胞为方圆至长方形,纵切面为梯状壁增厚,并具流苏纹。射线1—2列细胞宽,数个至十余个细胞高。叶迹起源于初生木质部外缘的槽中,中始式,但以向心发育为主。  相似文献   
30.
In this work, a freestanding NiS2/FeS holey film (HF) is prepared after electrochemical anodic and chemical vapor deposition treatments. With the combination of good electrical conductivity and holey structure, the NiS2/FeS HF presents superior electrochemical performance, due to the following reasons: (i) Porous structure of HF provides a large surface area and more active sites/channels/pathways to enhance the ion/mass diffusion. Moreover, the porous structure can reduce the damage from the volumetric expansion. (ii) The as‐prepared electrode combines the current collector (residual NiFe alloy) and active materials (sulfides) together, thus reducing the resistance of the electrode. Additionally, the good conductivity of HF can improve electron transport. (iii) Sulfides are more stable as active materials than sulfur, showing only a small capacity decay while retaining high cyclability performance. This work provides a promising way to develop high energy and stable electrode for Li‐S battery.  相似文献   
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