Micellar catalysis of the Suzuki Miyaura reaction using biogenic Pd nanoparticles from <i>Desulfovibrio alaskensis</i>
作者:Yuta Era、Jonathan A. Dennis、Stephen Wallace、Louise E. Horsfall
DOI:10.1039/d1gc02392f
日期:——
biogenic palladium nanoparticles generated by the sulfate-reducing bacterium Desulfovibrio alaskensis G20 catalyse the ligand-freeSuzuki Miyaura reaction of abiotic substrates. The reaction is highly efficient (>99% yield, 0.5 mol% Pd), occurs undermildconditions (37 °C, aqueous media) and can be accelerated within biocompatible micelles at the cell membrane to yield products containing challenging
Self-Assembly of Rod−Coil Molecules into Molecular Length-Dependent Organization
作者:Ja-Hyoung Ryu、Nam-Keun Oh、Wang-Cheol Zin、Myongsoo Lee
DOI:10.1021/ja039793q
日期:2004.3.1
A series of rod-coilmolecules (n-x, where n represents the number of repeating units in a PPO coil and x the number of phenyl groups in a rod segment) with variation in the molecular length, but an identical rod to coil volume ratio was synthesized, and their self-assembling behavior was investigated by using DSC and X-ray scatterings. The molecule with a short rod-coilmolecule (16-4) shows a 3-D
Reverse hydroxamate inhibitors of matrix metalloproteinases
申请人:——
公开号:US20020007060A1
公开(公告)日:2002-01-17
Compounds having the formula
1
are matrix metalloproteinase inhibitors. Also disclosed are matrix metalloproteinase-inhibiting compositions and methods of inhibiting matrix metalloproteinase in a mammal.
Flüssig-kristalline Polymerphase mit cholesterischer Struktur, Verfahren zu ihrer Herstellung und ihre Verwendung
申请人:BASF Aktiengesellschaft
公开号:EP0007574A1
公开(公告)日:1980-02-06
Die Erfindung betrifft eine flüssig-kristalline Polymerphase mit cholesterischer Struktur, die aus einer chiralen Komponente und einem nematogenen Homo- oder Copolymer besteht, sowie ein Verfahren zu ihrer Herstellung und ihre Verwendung.
LIQUID CRYSTAL DISPLAY DEVICE AND METHOD FOR MANUFACTURING SAME
申请人:Sony Corporation
公开号:EP2385420A1
公开(公告)日:2011-11-09
A method of manufacturing a liquid crystal display device with which response characteristics are able to be easily improved without using major equipment is provided. The method of manufacturing a liquid crystal display device includes steps of forming a first alignment film 22 composed of a polymer compound having a crosslinkable functional group as a side chain on one substrate of a pair of substrates 20 and 30; forming a second alignment film 32 on the other substrate of the pair of substrates 20 and 30; arranging the pair of substrates 20 and 30 so that the first alignment film 22 and the second alignment film 32 are opposed to each other, and sealing a liquid crystal layer 40 containing a liquid crystal molecule 41 having negative dielectric constant anisotropy between the first alignment film 22 and the second alignment film 32; and bridging the polymer compound to give pretilt to the liquid crystal molecule 41 after sealing the liquid crystal layer 40.