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金属配位聚合物 metallic coordinated polymer英语短句 例句大全

时间:2024-04-10 23:41:40

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金属配位聚合物 metallic coordinated polymer英语短句 例句大全

金属配位聚合物,metallic coordinated polymer

1)metallic coordinated polymer金属配位聚合物

1.The bands ofmetallic coordinated polymers[{HgX 2(bipy)} n]with layer skeleton (X=Cl,Br;bipy=4,4′ bipyridyl)have been calculated by the EHT crystal orbital method.用紧束缚 (EHT)晶体轨道方法对层状金属配位聚合物 [{HgX2 (bipy) }n](X =Cl,Br ;bipy =4 ,4′ bipyridyl)进行了能带结构计算 ,并利用键向量方法对这一系列聚合物能带特征和成键性质进行了讨论。

英文短句/例句

1.Syntheses and Structures of Coordination Polymers of Thiosemicarbazide Ligands;氨基硫脲金属配位聚合物的合成和结构研究

2.Studies on the Coordination Polymers of 4, 4 -bipyridine-2, 2 , 6, 6 -tetracarboxylate;4,4’-联吡啶-2,2’,6,6’-四甲酸金属配位聚合物的研究

3.Crystal Engineering of Lanthanide-Transition-Metal Coordination Polymers;稀土—过渡金属配位聚合物的晶体工程研究

4.Synthesis、Structures and Characters of Transition Metal Coordination Polymers of Bis-(Imidazole-1-yl)butane Flexible Ligand;二(咪唑)柔性配体过渡金属配位聚合物的合成、结构及表征

5.Design, Synthesis, Structure and Properties of Metal Coordination Polymers with Polycarboxylate Ligands多羧酸配体金属配位聚合物的设计、合成、结构及性质的研究

6.Assembly and Characterization of Metal-Organic Coordination Polymers金属—有机配位聚合物的组装与表征

7.Synthesis and Propertiies of Mental-Organic Framework;金属—有机配位聚合物的合成与性质研究

8.Synthesis and Characterization of Metal Imidazolate Polymer with Zeolitic Structures;沸石型金属咪唑配位聚合物的合成与表征

9.Synthesis and Characterization of Novel Carboxylate Bridged Metal-organic Coordination Polymers;羧基桥联金属—有机配位聚合物的合成与表征

10.Hydrothermal Synthesis of Metal-Organic Coordination Polymer;水热条件下金属—有机配位聚合物的合成

11.Metal-Organic Coordination Polymers Synthesis, Crystal Structures and Properties Studying;金属-bpdc有机配位聚合物的合成、结构及性能研究

12.Syntheses, Crystal Structures and Properties of Metal-Organic Coordination Polymers;金属有机配位聚合物的合成、结构与性能研究

13.Synthesis and Characterization of Novel Transition Metal-Dicarboxylate Coordination Polymers;新型过渡金属—二羧酸配位聚合物的合成与表征

14.Synthesis and Characterization of Transition-Metal Organic Coordination Polymers;过渡金属—有机配位聚合物的合成与表征

15.Research Advances on Controlled-synthesis of Metal Porous-Organic Coordinated Polymers;金属有机多孔配位聚合物的控制合成研究进展

16.Synthesis and Luminescent Properties of Polymeric Metal Complexes Coordinated with Carbazole Derivatives;咔唑衍生物配位的聚合金属配合物的合成及其光性质研究

17.Studies on Metal Coordination Polymers Constructed from Oxalate Acid and Malonic Acid;草酸、丙二酸与金属离子配位聚合物的研究

18.Transition Metal Superamolecular Coordinate Polymer Construction and Structural Research;过渡金属超分子配位聚合物的构建与结构研究

相关短句/例句

Chitosan metal complexes (CMC)壳聚糖金属配位聚合物

3)Metalcomplexing template polymer金属配位模板聚合物

4)metal-organic coordination polymers金属有机配位聚合物

1.In recent years, much interest has been focused on the design and synthesis ofmetal-organic coordination polymers, for their various intersting architectures and potential application.金属有机配位聚合物由于其多样性的结构和潜在的应用性而受到了人们的广泛关注。

2.However, the research onmetal-organic coordination polymers constructed from thiophene-based organic ligands is rather limited and needs more efforts and concentrations.近年来,金属有机配位聚合物得到了大家广泛的关注和较为深入的研究。

5)metal-organic frameworks金属-有机配位聚合物

1.In this thesis, four kinds ofmetal-organic frameworks with novel structures were hydrothermally synthesized.金属-有机配位聚合物是一类由金属中心离子与有机配体自组装而成的具有广阔应用前景的新型固体材料。

6)metal-organic coordination polymers金属-有机配位聚合物

1.Porousmetal-organic coordination polymers(MOCPs) are a novel type of functional materials with particular structures and properties dependent on their cavity sizes,shapes,and surface characteristics,which are controllable by selecting and assembling their building block molecules,i.多孔金属-有机配位聚合物(Metal-Organic Coordination Polymers-MOCPs)是一种新型功能材料,可通过其构件分子(金属离子和有机配体分子)的组合对孔穴大小、形状和表面特性进行调控,从而赋于它独特的结构和特性,在催化性能、分子识别、气体吸附、光学、磁性材料等方面具有诱人的发展前景。

2.In this thesis, elevenmetal-organic coordination polymers with novel structures were hydrothermally synthesized.金属-有机配位聚合物是由金属中心离子与有机配体自组装而形成的。

延伸阅读

异配位体配位化合物分子式:CAS号:性质:又称异配位体配位化合物。中心离子同时与两种以上不同配体共存于配位内界所组成的单核或多核配位化合物。例如,三氯·氨合铂(II)酸钾和(2)铜(II)-吡啶(py)-水杨酸(sal)配位化合物。在溶液中混配配位化合物的形成是普遍现象。与单一型配位化合物比较,它加强了中心体的化学个性(如易满足高配位数、增强不稳价态稳定性、光学性质改变等),也加强了配体的反应活性和协同萃取效应。在湿法冶金、电化学、分析化学、药物化学、环境化学、生物无机化学和材料化学等方面有着重要作用。

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