Showing posts with label Takumi Konno. Show all posts
Showing posts with label Takumi Konno. Show all posts

Tuesday, December 13, 2016

SpectroscopyNOW- Copper clusters: Terahertz tunes in


  • Copper clusters: Terahertz tunes in


  • Author: David Bradley

http://www.spectroscopynow.com/details/ezine/153744d42ee/Copper-clusters-Terahertz-tunes-in.html?tzcheck=1

Cluster headache cured


Details about the structure and properties of a
copper-rich metal cluster complex can be extracted using terahertz absorption spectroscopy according to scientists in Japan.
Writing in the journal Inorganic Chemistry, Hal Suzuki and Chiko Otani of the RIKEN research centre in Sendai, and Nobuto Yoshinari and Takumi Konno of Osaka University, explain how metal cluster complexes are important molecules in nature and industry alike. They are the cogs with which photosynthesis turns, nutrients are transported and are the catalytic workhorses of industry. However, to understand their structure and properties in detail there is a need for detailed and easily accessible ways to image these complexes at close to the atomic scale. "Most structural studies of these substances have used X-ray diffraction, but this technique has a weakness - the target material must be a crystal," says Suzuki, who works in the RIKEN Center for Advanced Photonics. "Since terahertz spectroscopy does not require crystals, it is expected to become a powerful analytical tool."
Terahertz spectroscopy uses radiation of shorter wavelength than infrared but extracts information from a molecule in a similar way, picking up the characteristic vibrations of the compound. However, whereas infrared spectroscopy detects the high-frequency bond vibrations, terahertz spectroscopy listens for the low-frequency "soft" vibrations, aggregates of atoms, such as those of a metal cluster.

Polymorphic proof

In order to show proof of principle, the team investigated a recently discovered copper cluster complex containing 14 metal ions. This cluster is large and porous and its voids soak up water molecules like a sub-microscopic, organometallic sponge. The team prepared the complex, D-penicillaminato (D-pen) CuI8CuII6, in three polymorphic forms: 1D helical, 2D hexagonal sheet and discrete cubic, forms that would be relatively easy to investigate with X-ray crystallography too for comparison purposes, although the strength of terahertz spectroscopy once proven would indeed be in studying non-crystalline materials too.
"By slightly tweaking its synthesis conditions, this cluster complex can be aggregated into different crystal structures," Suzuki explains. "It can thus be used as a model substance to reveal the general rules behind aggregation of cluster complexes."

Boiling complex

The team heated the clusters to 100 degrees Celsius to boil off the adsorbed water molecules and used terahertz spectroscopy to monitor the change sin structure as each aggregate lost its water molecules. The team explains that in this way they could show how disorder arises as evaporation proceeds. The helical cluster collapsed as water was lost, although the clusters in the other two polymorphic forms retained their structure.
"There is still more that terahertz spectroscopy, in combination with other techniques, can tell us about these complexes," Suzuki adds. "The next step is to reveal the role of water molecules in building up the cluster complexes as well as the crystalline forms." More specifically, he told SpectroscopyNOW, "I would like to reveal the role of loosely bound molecules in buliding up complicated structres."

Related Links

Inorg Chem 2016, 3, 274-278: "A terahertz absorption spectroscopy study of structural changes in D-penicillaminato CuI8CuII6 clusters induced by water desorption"

Tuesday, December 8, 2015

Abstract-Terahertz absorption spectroscopy study of structural changes in D-penicillaminato CuI8CuII6 clusters induced by water desorption


Inorg. Chem. Front., 2015, Accepted Manuscript

DOI: 10.1039/C5QI00207A
Received 20 Oct 2015, Accepted 03 Dec 2015
First published online 07 Dec 2015

Hal Suzuki, Chiko Otani, Nobuto Yoshinari and Takumi Konno


Structural changes induced by water desorption from D-penicillaminato (D-pen) CuI8CuII6 clusters aggregated into three polymorphic crystal structures ((1) 1D helical, (2) 2D hexagonal sheet, and (3) discrete cubic) were investigated by terahertz (THz) absorption spectroscopy and X-ray diffractometry (XRD), which provided information on the skeletal and crystal structures of the clusters, respectively. The water molecules incorporated in the crystals were removed by evacuation and by heating to 100 °C. In the case of crystal 1, the helical structure collapsed upon water evacuation, whereas the skeletal structure of the D-pen CuI8CuII6 clusters did not change. However, the skeletal structures were distorted by the heating process. For crystals 2 and 3, water evacuation did not affect either the skeletal or the sheet and cubic crystal structures of the clusters, which, however, collapsed upon heating. The mechanisms driving these structural changes were discussed in relation to the type and amount of water molecules removed in each process.