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991.
合理构筑了3个具有固态自旋交叉特性的亚铁四面体笼状化合物1~3。单晶X射线衍射分析证实了化合物是由6个咪唑席夫碱配体和4个亚铁离子组装形成的边导向封顶胶囊结构。金属中心占据四面体的顶点,而配体组成了四面体的边。这些笼状化合物的内部空腔被咪唑基团环绕,而外部则被取代苯环包围。一个阴离子客体被限域在笼状化合物空腔内,并与笼状化合物主体产生较强的相互作用。当在笼状化合物的乙腈溶液中加入卤素离子(Cl-和Br-)时,溶液的颜色和MLCT峰强度会发生明显变化,表明亚铁四面体笼状化合物的自旋状态由低自旋向髙自旋发生了转换。 相似文献
992.
分别以含氮菲咯啉、四硼酸钾和醋酸锌为碳源、活化剂和模板,制备了B、N共掺杂多孔碳(BN-PC),并探究模板质量对BN-PC结构和储电性能的影响。当醋酸锌质量为5g时,所得BN-PC5中B、N杂原子含量分别为 20.21%、18.29%。电化学测试结果表明,以6 mol·L-1 KOH为电解液,BN-PC5电极展现出高的比电容(在0.05 A·g-1电流密度下为255 F·g-1)、优异的倍率性能(在20A·g-1电流密度下为188F·g-1)和卓越的循环稳定性(在5 A·g-1的电流密度下循环10 000次比电容保持率为97%)。以3 mol·L-1 ZnSO4为电解液,在平均功率密度为56W·kg-1时,BN-PC5电容器的能量密度可达27Wh·kg-1。 相似文献
993.
Cellular prion protein, a membrane protein, is expressed in all mammals. Prion protein is also found in human blood as an anchorless protein, and this protein form is one of the many potential sources of misfolded prion protein replication during transmission. Many studies have suggested that β-amyloid1–42 oligomer causes neurotoxicity associated with Alzheimer''s disease, which is mediated by the prion protein that acts as a receptor and regulates the hippocampal potentiation. The prevention of the binding of these proteins has been proposed as a possible preventative treatment for Alzheimer''s disease; therefore, a greater understanding of the binding hot-spots between the two molecules is necessary. In this study, the epitope mapping immunoassay was employed to characterize binding epitopes within the prion protein and complementary epitopes in β-amyloid. Residues 23–39 and 93–119 in the prion protein were involved in binding to β-amyloid1–40 and 1–42, and monomers of this protein interacted with prion protein residues 93–113 and 123–166. Furthermore, β-amyloid antibodies against the C-terminus detected bound β-amyloid1–42 at residues 23–40, 104–122 and 159–175. β-Amyloid epitopes necessary for the interaction with prion protein were not determined. In conclusion, charged clusters and hydrophobic regions of the prion protein were involved in binding to β-amyloid1–40 and 1–42. The 3D structure appears to be necessary for β-amyloid to interact with prion protein. In the future, these binding sites may be utilized for 3D structure modeling, as well as for the pharmaceutical intervention of Alzheimer''s disease. 相似文献
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An. A. Kist A. G. Kist A. A. Kim A. N. Idrisova V. N. Sidorov Yu. Ya. Kit 《Journal of Radioanalytical and Nuclear Chemistry》1995,195(1):219-225
A general method for tritium labeling of organic compounds by the use of thermal activation of tritium is described. It allows obtaining uniformly tritium-labeled organic compounds with high specific activity (up to 50 Ci/mmol) which permits tracing the majority of the biodegradation products of compounds studied. More than 40 compounds were labeled using this simple, rapid and inexpensive method. Separation of the biodegradation products is performed by thin layer chromatography. Quantification is performed by direct measurement of the radioactivity by liquid scintillation counting after transfer of the layer from TLC plates into scintillation vials, or by densitometry of autoradiographs. The technique is useful for a wide range of organic compounds, including ones with unknown structure, and can be applied to various in vivo and in vitro studies. 相似文献
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999.
新型醋酸乙烯酯/二乙烯苯共聚物的研究(Ⅱ)──醇解物的制备、结构及其性能吴向东,郭贤权,何炳林(南开大学高分子化学研究所,天津,300071)关键词皂化反应,醇解物,芳香族氨基酸,孔结构参数,吸附性能氨基酸失衡是指肝性脑病患者血液中芳香族氨基酸的浓度... 相似文献
1000.
De‐Xi Yang Shu‐An Li Dong‐Feng Li Wen‐Xia Tang 《Acta Crystallographica. Section C, Structural Chemistry》2002,58(1):o11-o13
A novel binucleating 24‐membered macrocyclic ligand, 6,20‐bis(2‐hydroxyethyl)‐3,6,9,17,20,23‐hexazatricyclo[23.3.1.111,15]triaconta‐1(29),11(30),12,14,25,27‐hexaene (L), was synthesized and crystallized as the tetrahydrobromide salt, i.e. 6,20‐bis(2‐hydroxyethyl)‐6,20‐diaza‐3,9,17,23‐hexaazoniatricyclo[23.3.1.111,15]triaconta‐1(29),11(30),12,14,25,27‐hexaene tetrabromide tetrahydrate, C28H50N6O24+·4Br?·4H2O. A crystallographic inversion center is located in the macrocyclic cavity and the two hydroxyethyl pendants are on opposite sides of the macrocyclic plane. The benzene rings of the macrocycle are parallel to each other and a π–π‐stacking interaction exists between the benzene rings of adjacent macrocycles, which are separated by 3.791 (9) Å. An infinite intermolecular hydrogen‐bond network stabilizes the crystal. 相似文献