Automated Author Profile

Kawakami, Takashi

Current S-Index

1.0

Sum of Dataset Indices for all datasets

Average Dataset Index per Dataset

0.3

Average Dataset Index per dataset

Total Datasets

3

Total datasets for this author

Average FAIR Score

73.1%

Average FAIR Score per dataset

Total Citations

0

Total citations to the author's datasets

Total Mentions

0

Total mentions of the author's datasets

S-Index Interpretation

S-Index Over Time

Cumulative Citations Over Time

Cumulative Mentions Over Time

Datasets

CCDC 985025: Experimental Crystal Structure Determination

An entry from the Cambridge Structural Database, the world’s repository for small molecule crystal structures. The entry contains experimental data from a crystal diffraction study. The deposited dataset for this entry is freely available from the CCDC and typically includes 3D coordinates, cell parameters, space group, experimental conditions and quality measures.

Authors

  • Yamaguchi, Hironori ;
  • Miyagai, Hirotsugu ;
  • Shimokawa, Tokuro ;
  • Iwase, Kenji ;
  • Ono, Toshio ;
  • Kono, Yohei ;
  • Kase, Naoki ;
  • Araki, Koji ;
  • Kittaka, Shunichiro ;
  • Sakakibara, Toshiro ;
  • Kawakami, Takashi ;
  • Okunishi, Kouichi ;
  • Hosokoshi, Yuko
0 Citations0 Mentions50% FAIR0.3 Dataset Index
10.5517/ccdc.csd.cc1220052018

UNO DMRG CASCI calculations of effective exchange integrals for <i>m</i>-phenylene-bis-methylene spin clusters

Theoretical examinations of the ferromagnetic coupling in the m-phenylene-bis-methylene molecule and its oligomer were carried out. These systems are good candidates for exchange-coupled systems to investigate strong electronic correlations. We studied effective exchange integrals (J), which indicated magnetic coupling between interacting spins in these species. First, theoretical calculations based on a broken-symmetry single-reference procedure, i.e. the UHF, UMP2, UMP4, UCCSD(T) and UB3LYP methods, were carried out with a GAUSSIAN program code under an SR wave function. From these results, the J value by the UHF method was largely positive because of the strong ferromagnetic spin polarisation effect. The J value by the UCCSD(T) and UB3LYP methods improved an overestimation problem by correcting the dynamical electronic correlation. Next, magnetic coupling among these spins was studied using the CAS-based method of the symmetry-adapted multireference methods procedure. Thus, the UNO DMRG CASCI (UNO, unrestricted natural orbital; DMRG, density matrix renormalised group; CASCI, complete active space configuration interaction) method was mainly employed with a combination of ORCA and BLOCK program codes. DMRG CASCI calculations in valence electron counting, which included all orbitals to full valence CI, provided the most reliable result, and support the UB3LYP method for extended systems.

Authors

  • Kawakami, Takashi ;
  • Sano, Shinsuke ;
  • Saito, Toru ;
  • Sharma, Sandeep ;
  • Shoji, Mitsuo ;
  • Yamada, Satoru ;
  • Takano, Yu ;
  • Shusuke Yamanaka ;
  • Mitsutaka Okumura ;
  • Nakajima, Takahito ;
  • Kizashi Yamaguchi
0 Citations0 Mentions85% FAIR0.3 Dataset Index
10.6084/m9.figshare.47660202017

UNO DMRG CASCI calculations of effective exchange integrals for <i>m</i>-phenylene-bis-methylene spin clusters

Theoretical examinations of the ferromagnetic coupling in the m-phenylene-bis-methylene molecule and its oligomer were carried out. These systems are good candidates for exchange-coupled systems to investigate strong electronic correlations. We studied effective exchange integrals (J), which indicated magnetic coupling between interacting spins in these species. First, theoretical calculations based on a broken-symmetry single-reference procedure, i.e. the UHF, UMP2, UMP4, UCCSD(T) and UB3LYP methods, were carried out with a GAUSSIAN program code under an SR wave function. From these results, the J value by the UHF method was largely positive because of the strong ferromagnetic spin polarisation effect. The J value by the UCCSD(T) and UB3LYP methods improved an overestimation problem by correcting the dynamical electronic correlation. Next, magnetic coupling among these spins was studied using the CAS-based method of the symmetry-adapted multireference methods procedure. Thus, the UNO DMRG CASCI (UNO, unrestricted natural orbital; DMRG, density matrix renormalised group; CASCI, complete active space configuration interaction) method was mainly employed with a combination of ORCA and BLOCK program codes. DMRG CASCI calculations in valence electron counting, which included all orbitals to full valence CI, provided the most reliable result, and support the UB3LYP method for extended systems.

Authors

  • Kawakami, Takashi ;
  • Sano, Shinsuke ;
  • Saito, Toru ;
  • Sharma, Sandeep ;
  • Shoji, Mitsuo ;
  • Yamada, Satoru ;
  • Takano, Yu ;
  • Shusuke Yamanaka ;
  • Mitsutaka Okumura ;
  • Nakajima, Takahito ;
  • Kizashi Yamaguchi
0 Citations0 Mentions85% FAIR0.3 Dataset Index
10.6084/m9.figshare.4766020.v12017