http://chineseinput.net/에서 pinyin(병음)방식으로 중국어를 변환할 수 있습니다.
변환된 중국어를 복사하여 사용하시면 됩니다.
Jung-Il Jin,Robert W. Lenz,S. Antoun Korean Chemical Society 1982 대한화학회지 Vol.26 No.3
새로운 혼성 폴리에스테르 4가지를 합성하여 액정성을 DSC 및 편광 현미경을 사용하여 조사, 연구하였다. 세가지 혼성 폴리에스테르는 같은 메소젠 단위를 갖고 있으나 폴리메틸렌 유연 격자중 메틸렌기 수가 기수-우수, 기수-기수 및 우수-우수의 조합으로 되어 있는점이 다르며, 또 하나의 혼성 폴리에스테르는 양단에 p-옥시벤조일기가 결합하고 있는 메틸-및 브로모히드로 퀴논 단위가 데카메틸렌 격자에 결합하고 있는 구조를 갖고 있다. 이들 폴리에스테르는 모두 녹는점 및 그 이상의 온도에서 네마틱 액정상을 형성함을 알았으며 네마틱${\to}$등방성 액체간의 상변환이 가역적으로 일어남을 DSC 및 현미경으로 관찰할 수 있었다. 액정${\to}$등방성액체의 상변환에 수반되는 열역학적 성질을 중합체의 구조와 관련시켜 고찰하였다. Four new thermotropic copolyesters were prepared and their liquid crystal properties were investigated by differential scanning calorimetry and on a hot-stage of a polarizing microscope. Three copolyesters had same mesogenic unit, triad aromatic ester structure, interconnected through a random combination of either odd-even, or odd-odd, or even-even number of methylene groups in the polymethylene flexible spacers. Another random copolyester consisted of mesogenic units of 1 : 1 mixture of central methyl-and bromohydroquinone moieties with two flanking p-oxybenzoate units connected by decamethylene spacer. All of the polyesters formed nematic liquid crystal phase upon melting. The transitions for melting and nematic ${\to}$ isotropic transformations could be reversibly observed by DSC as well as by microscopic study. The thermodynamic properties for their liquid crystal ${\to}$ isotropic phase transitions were discussed in relation to their chemical structures.
Jin, Jung-Il,Kang, Joo-Sam,Jo, Byung-Wook,Lenz, Robert W. Korean Chemical Society 1983 Bulletin of the Korean Chemical Society Vol.4 No.4
A series of new liquid crystalline compounds having two identical mesogenic terminal units, the 4-(p-nitrobenzoyloxy)phenoxy group, attached to both ends of a central polymethylene spacer of various lengths was prepared. The mesomorphic properties of the compounds were investigated by differential scanning calorimetry (DSC) and by polarizing microscopy. Almost all of the compounds formed monotropic nematic mesophases. The trimethylene spacer compound was found to be non-liquid crystalline, while the one with the hexamethylene central spacer was enantiotropic. A thermodynamic analysis was performed for the phase transitions of the compounds and the results are discussed in relation to their liquid crystal properties.