摘要:
There are provided a fine structural body capable of manifesting an unprecedented property; a manufacturing method thereof; and a magnetic memory, a charge storage memory and an optical information recording medium employing such fine structural body. Unlike conventional bulk bodies phase-transited between nonmagnetic semiconductors and paramagnetic metals around about 460K, there can be provided a fine structural body 1 comprised of Ti 3 O 5 , but capable of manifesting an unprecedented property in which a paramagnetic metal property thereof is consistently maintained in all temperature ranges without undergoing phase transition to a nonmagnetic semiconductor.
摘要:
A titanium oxide particle that can develop non-conventional and novel physical properties, a method for manufacturing the same, and a magnetic memory, an optical information recording medium, and a charge accumulation type memory using the same are provided. A silica-coated titanium hydroxide compound particle is directly produced through a sol-gel technique and not through a reverse micelle technique, and the silica-coated titanium hydroxide compound particle is subjected to a calcination process. Hence, a titanium oxide particle 1 can be provided which can develop non-conventional and novel physical properties such that it does not perform phase transition at a room temperature and a Ti 3 O 5 particle body can always maintain the characteristic as a paramagnetic metal in all temperature ranges unlike conventional bulk bodies that perform phase transition between a non-magnetic semiconductor and a paramagnetic metal at a temperature near about 460 K.
摘要翻译:的氧化钛粒子确实可以开发非常规和新物理性质,用于制造其的方法,和磁存储器,光学信息记录介质,并提供使用该装置的电荷蓄积型存储器。 二氧化硅涂覆的钛氢氧化物粒子是通过溶胶 - 凝胶技术,而不是通过反向胶束法直接产生,并且二氧化硅涂覆的钛氢氧化物粒子进行煅烧过程。 因此,可以提供颗粒1钛氧化物可以开发研究也不会在室温下和Ti进行相变的非传统的和新物理性质3 O 5粒子本体可以始终保持特性作为顺磁性金属中 所有温度范围内与传统的块体做在温度接近约460 K.执行非磁性半导体和一个顺磁性金属之间的相变
摘要:
There are provided a fine structural body capable of manifesting an unprecedented property; a manufacturing method thereof; and a magnetic memory, a charge storage memory and an optical information recording medium employing such fine structural body. Unlike conventional bulk bodies phase-transited between nonmagnetic semiconductors and paramagnetic metals around about 460K, there can be provided a fine structural body 1 comprised of Ti 3 O 5 , but capable of manifesting an unprecedented property in which a paramagnetic metal property thereof is consistently maintained in all temperature ranges without undergoing phase transition to a nonmagnetic semiconductor.
摘要翻译:提供了能够呈现前所未有财产的精细结构体; 其制造方法; 以及磁存储器,电荷存储存储器和采用这种精细结构体的光学信息记录介质。 与在约460K之间的非磁性半导体和顺磁性金属之间相转移的常规体本体不同,可以提供由Ti 3 O 5组成的精细结构体1,但能够表现出前所未有的性质,其中顺磁性金属的性质始终保持 在所有的温度范围内都不会相转变成非磁性半导体。