units has been employed to mimic the His2–Tyr2 (His: histidine, Tyr: tyrosine) ligand sphere within the activesite of the galactoseoxidase (GO). The calixarene backbone forces the corresponding copper(II) complex into a see‐saw‐type structure, which is hitherto unprecedented in GO modellingchemistry. It undergoes a one‐electron oxidation that is centered at the phenolate donor leading to a copper‐coordinated
Low-Temperature Atomic Layer Deposition of Copper Metal Thin Films: Self-Limiting Surface Reaction of Copper Dimethylamino-2-propoxide with Diethylzinc
作者:Byoung H. Lee、Jae K. Hwang、Jae W. Nam、Song U. Lee、Jun T. Kim、Sang-M. Koo、A. Baunemann、Roland A. Fischer、Myung M. Sung
DOI:10.1002/anie.200900414
日期:2009.6.8
A uniform, conformal, pure copper metalthinfilm was grown at very low substrate temperatures (100–120 °C) on Si(100) substrates by atomic layerdeposition involving the ligand exchange of [Cu(OCHMeCH2NMe2)2] with Et2Zn (see scheme). Patterned copper thinfilms of Cu nanotubes (diameter 150 nm, length 12 μm) were fabricated.
[EN] AN INORGANIC APPROACH TO RENDERING METAL-ORGANIC FRAMEWORKS ELECTRICALLY CONDUCTIVE<br/>[FR] APPROCHE INORGANIQUE POUR RENDRE ÉLECTRIQUEMENT CONDUCTRICE DES STRUCTURES ORGANOMÉTALLIQUES
申请人:UNIV NORTHWESTERN
公开号:WO2020018767A1
公开(公告)日:2020-01-23
Electrically conductive, metal-organic framework (MOF) materials, methods of making the materials, and chemical sensors incorporating the materials are provided. The electrically conductive MOF materials are formed from mesoporous MOF crystals having continuous strands of electrically conductive inorganic oxides within their porous structures. The inorganic strands are formed by the condensed-phase grafting of molecular metal species onto MOF nodes.