摘要:
It is an object to provide a crystal-orientation controlled complex as a nanocrystal material having improved properties as the nanocrystal material (for example, excellent catalytic activity) as well as excellent handleability as an industrial component. A crystal-orientation controlled complex comprising a connected assembly having a thin film shape, in which a plurality of crystal pieces are connected with each other, the crystal pieces having a flake shape and having a main surface and an end surface, wherein the main surface has a crystal orientation relative to a specific crystal plane, and the thin film shaped connected assembly has a polarization singularity.
摘要:
A heat storage material composition, at least containing at least one organic compound selected from ethanol, ethylene glycol, propylene glycol, and acetic acid, sodium acetate, and water, wherein a content of the water is 72.4 to 100 parts by mass, relative to 100 parts by mass of the sodium acetate; an auxiliary heat source arid a heat supply method, using the heat storage material composition.
摘要:
The nanocrystal composite (1) according to the present invention comprises a connected aggregate (20) including a plurality of nanocrystal fragments (21) connected to one another, each nanocrystal fragment having a main surface (22) and an end surface (23), and nanoparticles (30) supported on the connected aggregate (20). The plurality of nanocrystal fragments (21) each have a flaky shape; the plurality of nanocrystal fragments (21) have gaps G between the main surfaces (22); and the gaps G are arranged so as to open to the outside of the connected aggregate (20). The nanoparticles (30) have a metallic element different from that of the plurality of nanocrystal fragments (21); and a proportion of a visual field area of the nanoparticles (30) with respect to a visual field area of the plurality of nanocrystal fragments (21) is 2% or more and 50% or less.
摘要:
An optical module equipped with at least one optical component, a package for housing the one optical component, and a joining portion. The joining portion is formed within the package by Sn-Ag solder containing 2.0 to 5.0 wt% Ag and 2.0 to 20.0 wt% Au, or Sn-Zn solder containing 6.0 to 10.0 wt% Zn and 2.0 to 20.0 wt% Au.