• Title/Summary/Keyword: metal d-orbital level($M_{d}$)

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전자론에 의한 생체용 Ti-Zr-Nb-Pd계 합금의 내식성 평가 (Evaluation of Corrosion Resistance of Ti-Zr-Nb-Pd Based Alloys for Biomedical applications by electron Theory)

  • 정종현;선금주
    • 대한치과기공학회지
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    • 제26권1호
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    • pp.35-40
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    • 2004
  • In order to understand alloying effects on the corrosion resistance of Ti-(10$\sim$20)%Zr-(2$\sim$8%)Nb-0.2%Pd alloys, Polarization curves were measured at 5%HCI solution. The results were interpreted in terms of two parameters obtained by the molecular orbital calculation ; one is the bond order($B_{\circ}$) and the other is the metal d-orbital level($M_{d}$). $B_{\circ}$ is a measure of the strength of covalent bonds between titanium and alloying elements. $M_{d}$ is correlative with the electronegativity of elements. It was found that increasing of Zr and Nb with higher $B_{\circ}$ values showed a lower critical anodic current density in the polarization curve and hence higher corrosion resistance. On the other hand, increasing of Zr and Nb with higher $M_{d}$ values showed a higher corrosion resistance.

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이소옥사졸과 그의 유도체들이 배위된 팔라듐(Ⅱ)과 백금(Ⅱ) 착물의 항암활성에 관한 이론적 연구 (Theoretical Study on Antitumor Activity of Palladium(II) and Platinum(II) Complexes with Isoxazole and Its Derivatives)

  • 김정성;송영대
    • 대한화학회지
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    • 제42권4호
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    • pp.369-377
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    • 1998
  • 이소옥사졸과 그의 유도체가 배위된 팔라듐(II) 및 백금(II)착물$([M(L)_2X_2]$, M=Pd(II), Pt(II); L=isoxazole(isox), 3,5-dimethylisoxazole(3,5-diMeisox), 3-methyl, 5-phenylisoxazole(3-Me, 5-Phisox), and 4-am-ino 3,5-dimethylisoxazole(4-ADI); X=Cl, Br)의 항암활성을 분자역학(MM2)법으로 최소에너지를 갖는 구조를 구한 후 확장분자궤도함수(EHMO)법으로 조사하였다. 중심금속의 $d_x^{2-}_y^2$ 궤도함수와 할로겐 원자의 $p_x$ 궤도함수 사이의 ${\sigma}MO$ 에너지준위$(E_{{\sigma}(Pd,Pt-X)})$가 질소원자의 $p_x$ 궤도함수 사이의 ${\sigma}MO$ 에너지준위 $(E_{\sigma}(Pd,Pt-N))$보다 예외없이 더 높아서 결합이 약함을 알 수 있었다. 아울러 같은 착물에서 cis- 보다 trans-착물에서 $(E_{\sigma}(Pd,Pt-X))$ 값이 더 높아서 결합이 약함을 알았다. 또한 평면형 리간드가 배위될 경우 cis-, trans- 이성체 모두 백금착물에서보다 팔라듐착물에서 $X^-$ 이온의 이탈이 더 용이했다. 다라서 $X^-$ 이온으로 떨어져 나가는 용이성이 항암활성과 어떤 관계가 있을 것으로 생각하고 $E_{{\sigma}(Pd,Pt-N)}-E_{{\sigma}(Pd,Pt-X)}({\Delta}E_{{\sigma}(N-X)})$과 저해활성 계수인 logIA의 값를 도시하였던바 실험치와 상관 계수가 0.96인 좋은 직선성이 성립함을 알 수 있었다.

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Ab initio Studies on d8-MCI(PH3)2(C2H2), M=Rh and Ir, Complexes

  • Kang, Sung-Kwon;Song, Jin-Soo;Moon, Jung-Hyun;Yun, Sock-Sung
    • Bulletin of the Korean Chemical Society
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    • 제18권1호
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    • pp.27-32
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    • 1997
  • The geometries and energies of the isomers in alkyne complexes MCl(PH3)2(η2-C2H2), M=Rh and Ir, are theoretically investigated using ab initio methods at the Hartree-Fock and up to MP4 level of theory and relativistic effective core potentials for Rh and Ir metals. The optimized structures of Rh complexes, 1-3 at MP2/ECP1 level are in good agreement with the related experimental data. The binding energies of C2H2 to d8-metal fragments are computed to be ∼55 kcal/mol. The vinylidene complexes for Rh and Ir metals are calculated to be much lower in energy than the alkyne complexes. The alkyne-vinylidene rearrangement is possible to proceed exothermically through the intermediate hydrido-alkynyl complexes, 2 or 9. Detailed comparison is given about the geometries and relative energies on Rh and Ir isomers at the various level ab initio calculations with orbital analysis.

MnO2의 전자상태 및 화학결합에 미치는 천이금속 첨가의 효과 (Effect of Transition Metal Dopant on Electronic State and Chemical Bonding of MnO2)

  • 이동윤;김봉서;송재성;김양수
    • 한국전기전자재료학회논문지
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    • 제17권7호
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    • pp.691-696
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    • 2004
  • The electronic state and chemical bonding of $\beta$-MnO$_2$ with transition metal dopants were theoretically investigated by DV-X$_{\alpha}$ (the discrete variational X$_{\alpha}$) method, which is a sort of the first principles molecular orbital method using the Hartree-Fock-Slater approximation. The calculations were performed with a $_Mn_{14}$ MO$_{56}$ )$^{-52}$ (M = transition metals) cluster model. The electron energy level, the density of states (DOS), the overlap population, the charge density distribution, and the net charges, were calculated. The energy level diagram of MnO$_2$ shows the different band structure and electron occupancy between the up spin states and down spin states. The dopant levels decrease between the conduction band and the valence band with the increase of the atomic number of dopants. The covalency of chemical bonding was shown to increase and ionicity decreased in increasing the atomic number of dopants. Calculated results were discussed on the basis of the interaction between transition metal 3d and oxygen 2p orbital. In conclusion it is expected that when the transition metals are added to MnO$_2$ the band gap decreases and the electronic conductivity increases with the increase of the atomic number of dopants. the atomic number of dopants.