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1.
Ti-47Al-1.2Ce合金显微组织及稀土相   总被引:8,自引:2,他引:8  
TiA1金属间化合物以其低密度 ,高比强度和比弹性模量 ,良好的抗蠕变及抗氧化能力等特点 ,已成为航天、航空、能源及汽车工业极具竞争力的高温结构材料。虽然TiAl基合金有众多优点 ,但仍存在室温塑性较低、成形性差、性能不平衡等问题 ,还需要深入研究TiAl基合金的合金化及制备工艺等方面技术 ,以此来控制并改善合金的显微组织 ,提高TiAl基合金的综合性能[1~ 4 ] 。合金化是改善TiAl基合金显微组织和性能的重要途径之一 ,通常添加的合金元素有V ,Cr ,Nb ,W ,Mo ,Si ,B等[5~ 7] 。稀土元素一般被用来细化材料…  相似文献   

2.
长期以来 ,人们对希土羰基化合物的存在一直持怀疑态度[1 ] ,尽管 Slater[2 ] 等用基质隔离法合成部分希土羰基化合物的成功消除了这种疑问 ,但由于此类化合物高度的不稳定性 ,其几何结构至今尚未确定 ,希土羰基化合物的电子结构和化学键更是困扰人们的重要课题。希土羰基化合物是具有 L n- C键的最简单希土有机金属化合物 ,其结构和性能具有一定的代表性 ,探讨其化学键合本质及其不稳定的原因对深入了解希土金属有机化合物结构和性能的关系具有十分重要的意义。一 .研究方法本文采用洪功义、黎乐民等[3 ] 改进的高精度求解密度泛函理论方…  相似文献   

3.
茂钛催化剂聚1-丁烯的合成   总被引:8,自引:0,他引:8  
茂金属催化烯烃聚合以其高活性、定向性等特点受到广泛重视.Kaminsky[1~4]等用二茂基(Cp、Ind和Flu)过渡金属(Ti、Zr和Hf)化合物/MAO催化剂催化1丁烯聚合,可得到间规(sPB)、无规(aPB)或等规(iPB)聚1丁烯.Lin[5]和Wu[6]分别用单茂基的CpTi(OPr)3/MAO和CpTi(OBz)3/MAO催化剂进行丙烯聚合,都得到无规聚丙烯(aPP),并研究了催化体系中Ti氧化态分布,认为Ti+4有利于α烯烃聚合.有关用单茂钛化合物/MAO催化体系催化1丁烯聚合的研究目前较少文献报道.本文用新型茂钛催化剂—…  相似文献   

4.
影响TiAl合金塑性的电子结构因素   总被引:2,自引:0,他引:2  
应用EHT紧束缚能带计算方法, 系统研究了Ti-48Al-2M 为模型的γ-TiAl掺杂合金的电子结构。发现能有效地改善合金塑性的元素V、Cr、Mn 主要在两方面改变了γ-TiAl合金的电子结构,即改善Ti周围成键强度的各向均衡性和改变Ti、Al参与成键的电子分布,使成键电子云的球形化成分增大。研究结果表明V、Cr、Mn 等取代Al时成键的均衡性及电子云球形化均增大,从而有利于材料变形改善塑性,而加入Fe、Co、Ni虽然改善电子云的球形化但却不利于成键强度的均衡性,因而对合金的塑性无明显改善。  相似文献   

5.
茂金属催化烯烃聚合的活性中心被认为是1 4电子结构的金属阳离子配合物 [Cp2 MR]+ (R为烷基 ) ,并且金属中心的Lewis酸性和周围茂配体的空间构型对其催化活性及聚合产物的结构有直接的影响[1,2 ] .然而 ,茂金属须大量MAO存在下才能显示高活性 ,并且其稳定性较差 ,这都一定程度上限制了茂金属催化剂的实际应用 .近几年来 ,将含非环戊二烯基配体的金属配合物应用于烯烃均相聚合的研究大量出现[3] ,其中非环戊二烯基配体有含氮化合物[4~ 9] 和含氧化合物[10~ 15] 等 ,这些非茂配合物可催化乙烯或丙烯聚合 ,但活性一般较低 .茂金…  相似文献   

6.
碳电极表面的修饰在电化学和材料科学中很重要 .最近 ,通过层与层电子间的相互作用来自组装修饰玻碳电极已引起人们的关注 [1] .运用这种方法可将一些功能团修饰到电极表面 ,赋予电极一些新的功能 [2 ] .过渡金属取代的多金属氧酸盐不仅在配位环境 ,而且在催化活性方面都类似于金属卟啉和其它大环配体金属配合物 [3] .将其修饰到玻碳电极表面已有文献报道 [4 ] .由于修饰电极的厚度可控、成分可调及具有良好的电催化活性 ,在生物传感器和电子器件等方面具有潜在的应用前景 .取代型夹心型多金属氧酸盐具有大摩尔质量和高电荷密度 ,表现出优秀…  相似文献   

7.
金属石墨层间化合物的量子化学和热力学研究   总被引:1,自引:0,他引:1  
采用量子化学密度泛函B3LYP方法,对碱金属、碱土金属和过渡金属石墨层间化合物(A-GIC,AE-GIC和T-GIC)进行计算.从原子净电荷、Mulliken重叠布居和轨道电子数等角度讨论了A-GIC和AE-GIC的电子结构与成键特性,初步阐明了结构与性能的关系.根据计算结果,结合热力学分析,讨论实验上尚未知的过渡金属石墨层间化合物合成的可能性.  相似文献   

8.
C4H42-、C5H5-(Cp-)及C6H6(Ar)等有机配体可以与过渡金属形成典型的三明治夹心化合物.作为CH的等电子体,P可以取代CH与过渡金属形成混合型三明治配合物,例如:CpNiP3,CpFeP5,[CpMPnMCp]等.2002年,Schleyer等首次成功地合成了以η5-P5-为配体的不含碳的无机三明治配合物[P5TiP5]2-;2007年,Chen等采用密度泛函方法预测了含P4四元环的[P4MP4]n-三明治结构.本文采用密度泛函和从头计算方法首次系统地研究了含η3-P3-和η3-As3-三元环配体的过渡金属三明治配合物D3d[E3ME3]2-(E=P,As;M=Ni,Pd,Pt)(图1),对该系列化合物进行了结构优化、频率分析、自然轨道分析和光谱性质预测.结果表明,三元环状P3-和As3-与五元环状P5-和As5-具有类似的芳香性,可能作为新颖配位形成一大类过渡金属夹心化合物.[E3ME3]2-满足18电子规则,交错型单重态D3d[E3ME3]2-是该七原子体系的全局极小,而重叠型单重态D3h[E3ME3]2-在能量上略高(2.0kcal/mol),其他二维和三维结构则远非稳定(24kcal/mol).作为体系的全局极小,D3d[E3ME3]2-是在实验上可能合成的最小无机三明治夹心结构.在[E3ME3]2-系列配合物中,配位中心M携带的电荷为+0.07|e|~+0.27|e|,Wiberg键级为1.84~2.22;配体E原子携带的电荷为-0.35|e|~-0.38|e|,Wiberg键级为2.93~2.98.配体原子间以单键(WBIE-E=1.03-1.07),配体E和配位中心M间的Wiberg键级为WBIM-E=0.31-0.37,体现典型的配位成键特点.显然,与实验已知的[P5TiP5]2-类似,在[E3ME3]2-体系中配位中心M向配体E3发生了部分电荷转移,E3三元环表现为电子受体.轨道分析表明,该夹心化合物体系存在典型的离域π键(图1).体系存在较大NICS(-18.1~-24.8ppm),表明其芳香性本质.引进Li+阳离子可以有效稳定[E3ME3]2-二价阴离子,形成含交错型Cs[E3ME3]Li-和C2h[E3ME3]Li2.Cs[E3ME3]Li-的第一计算电子剥离能介于2.7~2.9eV,位于355nm激发光能量(3.496eV)范围之内.  相似文献   

9.
极化中子衍射方法常用于研究含未配对电子化合物中电子自旋密度的分布.分子中电子自旋密度分布从一个独特的角度反映化合物的磁性质.本文介绍极化中子衍射方法的背景知识和基本原理.包括中子源、中子和X射线衍射、极化中子衍射,以及一些常用的实验数据处理方法.选用几个实例总结了用极化中子衍射方法得到的电子自旋密度分布在无机和有机化学中的应用.通过单分子磁体[Fe8O2(OH)12(tacn)6]^8+和氰基桥联化合物K2[Mn(H2O)2]3[Mo(CN)7]2·6H2O,说明如何用该方法研究金属原子间的磁相互作用;并通过Ru(acac)3这个只含一个未配对电子的化合物来说明如何获得化合物中金属和配体上小的自旋密度;最后介绍了该方法在nitronylnitroxide自由基研究中的应用.  相似文献   

10.
多酸是较好的受体分子,当它与有机电子给体作用时,可形成超分子化合物.90年代初这类化合物的研究才刚刚起步.作为一类新型电、磁、非线性光学材料极具开发价值[1].用氨基酸作为电子给体对生物活性研究意义重大[2],有关Keggin结构的超分子化合物已见报道[3],但标题化合物这类手性阴离子[4]与手性氨基酸所形成的杂多化合物及单晶结构尚未见文献报道.  相似文献   

11.
嵌段共聚物可发生微相分离形成丰富的介观尺度上的相结构,而共轭聚合物是一类具有特殊的力学、导电性能或光电功能的半刚性链高分子.全共轭嵌段共聚物因其兼具两者的特性而备受瞩目.本文着重介绍了近年来课题组在基于全共轭聚(3-烷基噻吩)和聚(3-烷基硒吩)嵌段共聚物体系的研究进展,通过改变体系的分子结构包括主侧链结构、侧链的烷基长度及取代基团等以及对体系在溶液状态及薄膜状态进行后处理包括改变溶剂、热处理、溶剂蒸气处理等来调控体系的微相分离行为和结晶行为,实现对材料凝聚态结构的调控.在此基础上,以有机场效应晶体管和聚合物太阳能电池器件作为最终体现聚噻吩或聚硒吩类体系凝聚态结构与性能关系的平台,将获得的调控体系凝聚态结构的有效策略用于实现其半导体材料物理性能的提升.  相似文献   

12.
马金石 《有机化学》1986,6(3):169-177
在动植物体内存在着多种线型四吡咯色素,由于它们的结构不同,生理功能也不同。本文从晶体结构、光异构化、在溶液中的构型以及与蛋白相连的结构等四个方面,对近年来胆红素、胆绿素、藻胆色素、植物光敏色素等四吡咯色素在结构化学研究方面所取得的进展作一简单综述。  相似文献   

13.
We compare the low free energy structures of ten small, polar ligands in solution to their conformations in their respective receptor active sites. The solution conformations are generated by a systematic search and the free energies of representative structures are computed with a continuum solvation model. Based on the values of torsion angles, we find little similarity between low energy solution structures of small ligands and their active site conformations. However, in nine out of ten cases, the positions of 'anchor points' (key atoms responsible for tight binding) in the lowest energy solution structures are very similar to the positions of these atoms in the active site conformations. A metric that more closely captures the essentials of binding supports the basic premise underlying pharmacophore mapping, namely that active site conformations of small flexible ligands correspond to their low energy structures in solution. This work supports the efforts of building pharmacophore models based on the information present in solution structures of small isolated ligands.  相似文献   

14.
Steric and electronic structures of diamond-like carbon systems and their boron- and nitrogen-substituted analogs were studied in terms of the density functional theory (B3LYP/6-31G*). The examined systems were found to be structurally stable, and their geometric parameters approached those typical of standard diamond-like structures. Boron-containing structures could exhibit semiconducting properties.  相似文献   

15.
The stabilization and growth of nanocrystals in "non-native" structures is explored via density functional calculations. Non-native and "native" bulk structures differ in their discrete translational symmetry. Computations suggest that the lower surface energy of the non-native structures always facilitates their stabilization in the early stages of crystal growth. In the compound semiconductors considered here, the transition pathways between non-native and native structures involve planar or near-planar depolarized layers and the growth conditions have significant effects on the stabilization and growth of non-native structures. The findings of this study help in identifying heuristics for the synthesis of non-native nanocrystals.  相似文献   

16.
Confinement of anionic oligo-alanine peptides at the surfaces of cationic membrane by ionic interaction can induce their secondary structure formation; such organized peptides reciprocally transfer their chirality to membranes with non-chiral amphiphiles and their supramolecular chiral structures can be tuned both by peptides and amphiphiles structures.  相似文献   

17.
Bionanoparticles(BNPs),consisting of virus and virus-like assemblies,have attracted much attention in the biomedical field for their applications such as imaging and targeted drug delivery,owing to their well-defined structures and well-controlled chemistries.BNPs-based core-shell structures provide a unique system for the investigation of biological interactions such as protein-protein and protein-carbohydrate interactions.However,it is still a challenge to prepare the BNPs-based core-shell structures.Here...  相似文献   

18.
硼酸盐结构十分复杂,主要针对硼酸盐晶体结构和硼酸盐水溶液结构问题,总结了水合硼酸盐晶体结构及其结晶行为,归纳了硼酸盐水溶液中硼酸盐的主要存在形式及其结构研究,并侧重介绍和评价了电导/电势滴定、红外(IR)、拉曼光谱(Raman)、11B核磁共振等方法在硼酸盐溶液结构研究方面的进展,指出了未来的发展方向.  相似文献   

19.
Various one‐, two‐ and three‐dimensional Group 14 (C, Si, Ge, Sn, and Pb) element structures at P=1 atm are studied in this work. As expected, coordination number (CN)—not an unambiguous concept for extended structures—plays an important part in the stability of structures. Carbon not only favors four‐coordination, but also is quite happy with π‐bonding, allowing three‐ and even two‐coordination to compete. Highly coordinated (CN>4) discrete carbon molecules are rare; that “saturation of valence” is reflected in the instability of C extended structures with CN>4. Si and Ge are quite similar to each other in their preferences. They are less biased in their coordination than C, allowing (as their molecular structures do) CN=5 and 6, but tending towards four‐coordination. Sn and Pb 3D structures are very flexible in their bonding, so that in these elements four‐ to twelve‐coordinate structures are close in energy. This lack of discrimination among ordered structures also points to an approach to the liquid state, consistent with the low melting point of Sn and Pb. The Group 14 liquid structures we simulate in molecular dynamics calculations show the expected, effective, first coordination number increase from 5.1 for Si to 10.4 for Pb. A special point of interest emerging from our study is the instability of potential multilayer graphene structures down Group 14. Only for C will these be stable; for all the other Group 14 elements pristine, unprotected, bi‐ and multilayer graphenes should collapse, forming “vertical” bonds as short as the in‐plane ones.  相似文献   

20.
Employing nanocrystals (NCs) as building blocks of porous aerogel network structures allows the conversion of NC materials into macroscopic solid structures while conserving their unique nanoscopic properties. Understanding the interplay of the network formation and its influence on these properties like size-dependent emission is a key to apply techniques for the fabrication of novel nanocrystal aerogels. In this work, CdSe/CdS dot/rod NCs possessing two different CdSe core sizes were synthesized and converted into porous aerogel network structures. Temperature-dependent steady-state and time-resolved photoluminescence measurements were performed to expand the understanding of the optical and electronic properties of these network structures generated from these two different building blocks and correlate their optical with the structural properties. These investigations reveal the influence of network formation and aerogel production on the network-forming nanocrystals. Based on the two investigated NC building blocks and their aerogel networks, mixed network structures with various ratios of the two building blocks were produced and likewise optically characterized. Since the different building blocks show diverse optical response, this technique presents a straightforward way to color-tune the resulting networks simply by choosing the building block ratio in connection with their quantum yield.  相似文献   

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