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首页> 外文期刊>Russian Journal of Inorganic Chemistry >Modeling of self-organization processes in crystal-forming systems: Symmetry and topology code for the cluster self-assembly of crystal structures of intermetallic compounds
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Modeling of self-organization processes in crystal-forming systems: Symmetry and topology code for the cluster self-assembly of crystal structures of intermetallic compounds

机译:晶体形成系统中自组织过程的建模:金属间化合物晶体结构簇自组装的对称性和拓扑代码

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We performed the combinatorial and topological modeling of 1D, 2D, and 3D packs of symmetrically connected metal clusters in the form of tetrahedra D-4. Three types of 1D chains with tetrahedral connectivity of 4, 6, and 8 were used to model 2D layers L-1, L-2, and L-3 and 3D frameworks FR-1, FR-2, FR-3, and FR-4. The model structures of the identified suprapolyhedral precursor clusters were used in topological analysis of crystal structures of intermetallic compounds (program package TOPOS and data bases ICSD and CRYSTMET). A match was found between the topological models of tetrahedral 3D frameworks and all types of crystal structures formed in binary systems; in Au-Cu: FR-1 for Cu3Au-cP4 (Auricupride), Cu2Au2-tP2 (Tetraauricupride), CuAu3-cP4 (Bogdanovite), and Cu2-x Au2 + x -cF4; in Mg-Cd: FR-3 for Mg3Cd-hP8, Mg2Cd2-oP4, MgCd3-hP8, and Mg2-x Cd2 + x -hP2; in Li-Hg: FR-2 for Li3Hg-cF16 and Li2Hg2-cP2 and FR-3 for LiHg3-hP8; in ternary system Li-Ag-Al: FR-2 for LiAg2Al-cF16 and Li2AgAl-cF16; and in quaternary system: framework FR-2 for LiMgPdSn-cF16. Framework FR-4 was identified in ternary intermetallic compounds A(Li2Sn2)-tI20, where A = Cu, Ag, Au. The structures of precursor nanoclusters were identified for other most abundant types of crystal structures of intermetallic compounds. For this purpose, we used the algorithms for partitioning the structural graph into nonintersecting cluster substructures and constructed the basal 3D network of the crystal structure in the form of a graph whose nodes correspond to the positions of the centers of precursor clusters. The cluster self-assembly was modeled for the following intermetallic compounds: Mg2Cu4-cF24, MgSnCu4-cF24, (ZrCu)Cu-4-cF24,Mg2Zn4-hP12, (CaCu)Cu-4-hP6, Cr3Si-cP8, Lu3Co(Fe3C)-cP16, Ca2Ge2(Cr2B2)-oC8, Y2Ni2(Fe2B2)-oP8, AlB2-hP3, Ca2Ge-oP12, CaHg2-hP3, Co2Ge(Ni2In)-hP6, Cs2Hg4-oI12, Ba4Po4-cF8, Mn5Ge3-hP16, and NaZn13-cF112. The symmetry and topological code of self-assembly from precursor nanoclusters was reconstituted for all crystal structure types of intermetallic compounds as: primary chain - microlayer - microframework. An abundance frequency analysis of topological and symmetry routes for the generation and evolution of precursor clusters enabled us to elucidate the crystal-formation laws in intermetallic systems on the microscopic level.
机译:我们以Tetrahedra D-4的形式执行了1D,2D和3D和3D组对称连接的金属簇的组合和拓扑建模。具有4,6和8的四层连接的三种类型的1D链用于模拟2D层L-1,L-2和L-3和3D框架FR-1,FR-2,FR-3和FR -4。所识别的Suprapolyhe resorover簇的模型结构用于金属间化合物的晶体结构的拓扑分析(程序包拓扑和数据碱基ICSD和晶体)。在四面体3D框架的拓扑模型和二元系统中形成的所有类型的晶体结构之间存在匹配;在Au-Cu:Cu3au-cp4(金属丙丙基)的FR-1中,Cu2au2-TP2(四磺酸),Cuau3-Cp4(Bogdanovite)和Cu2-x Au2 + X -CF4;在Mg-CD:FR-3用于MG3CD-HP8,MG2CD2-OP4,MGCD3-HP8和MG2-X CD2 + X-HP2;在Li-Hg:Li3HG-CF16和Li2HG2-CP2的FR-2和LiHG3-HP8的FR-3;在三元体系中Li-Ag-Al:Liag2al-CF16和Li2Agal-CF16的FR-2;在第四纪系统中:LIMGPDSN-CF16的框架FR-2。在三元金属间化合物A(Li2SN2)-ti20中鉴定FR-4,其中A = Cu,Ag,Au。鉴定了前体纳米能器的结构,用于金属间化合物的其他最丰富的晶体结构。为此目的,我们使用该算法将结构图划分为非共用簇子结构,并以节点对应于前体簇中心的位置的图表的形式构建了晶体结构的基础3D网络。簇自组装为以下金属间化合物:Mg2Cu4-CF24,MgSNCU4-CF24,(ZrCU)Cu-4-CF24,Mg2ZN4-HP12,(CACU)Cu-4-HP6,CR3SI-CP8,Lu3CO(Fe3C )-CP16,CA2B2)-OC8,Y2NI2(FE2B2)-OC8,ALB2-HP3,CA2GE-OP12,CAHG2-HP3,CO2GE(NI2IN)-HP6,CS2HG4-OI12,BA4PO4-CF8,MN5GE3-HP16和nazn13-cf112。重构来自前体纳米团簇的自组装的对称性和拓扑代码,用于所有晶体结构类型的金属间化合物,如:初级链 - &微层 - & Microframework。拓扑和对称途径的丰富频率分析,用于前体簇的生成和演化,使我们能够在微观水平上阐明金属间系中的晶体形成规律。

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