• 제목/요약/키워드: diphosphines

검색결과 5건 처리시간 0.018초

디포스핀류 배위자를 함유한 백금(II) 착체의 합성과 항암효과 (Synthesis of pt(II) Complexes Containing Diphosphines and Evaluation of Antitumor Activity)

  • 노영수;노지 마사히데
    • Journal of Pharmaceutical Investigation
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    • 제20권4호
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    • pp.217-222
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    • 1990
  • New antitumor-active pt(II) complexes of trans-l-diamine cyclohexane containing diphosphines as a leaving group were synthesized. The structures of the pt(II) complexes were determined by analyzing the infrared and $^{31}P-nuclear$ magnetic resonance spectra. Antitumor activities of the pt(II) complexes were tested against murine leukemia $L_{l210}$ according to the protocol of the National Cancer Institute. All the pt(II) complexes Synthesized were antitumor-active. In particular, water-soluble $[pt(trans-l-dach) (DPPP)](NO_3)_2$ exhibited excellent antitumor activity, giving T/C % values of 341 and 356 respectively, each with four cured mice out of six at a dose of 25 mg/kg. These pt(II) complexes are considered to be worthy of further development.

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몇가지 $d^8$ 전이금속-디포스핀 착물 ($MCl_2PP$)의 합성과 촉매적 응용 (M = $Ni^{2+}$, $Pd^{2+}$, $Pt^{2+}$, $Au^{3+}$ ; PP = diphosphines) (Synthesis Catalytic Application of Several$d^8Transition Metal Diphosphine Complexes, (MCl_2PP) (M = Ni^{2+}, Pd^{2+}, Pt^{2+}, Au^{3+} ; PP = diphosphines)$)

  • 박유철;김경채;조영제
    • 대한화학회지
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    • 제36권5호
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    • pp.685-691
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    • 1992
  • 디포스핀을 포함한 몇가지 $d^8$ 전이금속착물$(MCl_2PP)$은 출발물질 $K_nMCl_m$을 사용하여 합성하였다. 중심금속(M)은 Ni(II), Pd(II), Pt(II), Au(III)이며, 디포스핀(PP)은 bis(diphenylphosphino)methane(dppm), bis(diphenylphosphino)ethane(dppe), bis(diphenylphosphino)propane (dppp) 및 bis(diphenylphosphino)ethylene(dppety)이었다. 착물의 조성이나 특성은 원소분석과 $^1H-NMR$, $^{31}P-NMR$ 및 UV-Visible 스펙트럼을 이용하여 확인하였다. 이들 착물의 촉매적 활성은 3(2H)-furanone 및 cyclic carbonate 생성반응에 대하여 각각 조사하였다. 2-methyl-3-butyn-2-ol로부터 생성물 3(2H)-furanone을 얻은 반응 (1)에서 Ni(II)-, Pd(II)-diphosphine 착물은 좋은 촉매적 효과를 나타내었다. 그러나 이들 diphosphine 착물들은 cyclic carbonate 생성반응 (2)에 대해 촉매제로서의 활성을 거의 나타내지 않았다.

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Hydrogenation of trans-Cinnamaldehyde with Hydrido-Carbonyl Osmium(II) Complexes of Chelating Phosphine Ligands

  • 정민교;허성;이원용;전무진
    • Bulletin of the Korean Chemical Society
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    • 제18권8호
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    • pp.806-810
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    • 1997
  • A series of new hydridocarbonyl osmium(Ⅱ) complexes, OsHCl(CO)(PPh3)(L-L)[L-L=Ph2P(CH2)nPPh2 (n=1 (1), 2 (2), 3 (3), cis-Ph2PCH=CHPPh2 (4), and Fe(η5-C5H4PPh2)2 (5)] has been synthesized from OsHCl(CO)(PPh3)3 and chelating diphosphines. These complexes have been characterized by IR, 1H NMR and elemental analysis. The catalytic activities of these complexes both for the transfer hydrogenation of trans-cinnamaldehyde with 2-propanol as the hydrogen donor, and for the selective hydrogenation of trans-cinnamaldehyde with H2, have been examined. Complexes (1)-(5) were shown to have higher selectivities for the transfer hydrogenation of the C=O bond of aldehyde than for the transfer hydrogenation of the C=C bond of aldehyde. The selectivities for the transfer hydrogenation with 2-propanol as well as for the hydrogenation with H2 have been found to decrease in the order 3 > 5 > 2 > 4 > 1. Complex (3) has shown to possess almost 90% of the selectivity to cinnamyl alcohol for transfer hydrogenation. It is also found that there is a correlation between the ν(CO) of each complex and the hydrogenation, of the C=O bond of trans-cinnamaldehyde. Overall, the selectivities with the complexes (1)-(5) are greater for the transfer hydrogenation with 2-propanol than for the hydrogenation with H2.

발광 재료용 다이포스핀-다이골드 착물의 합성과 특성 연구 (Synthesis and Characteristics of Diphosphine-digold complexes as Light-Emitting Materials)

  • 김준호;손병청;하윤경
    • 한국응용과학기술학회지
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    • 제19권2호
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    • pp.103-107
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    • 2002
  • Diphosphine dinuclear gold(I) complexes were synthesized from the reaction of bridged diphosphines and gold ions. As a bridged diphosphine, 1,2-bis(diphenylphosphino)metbane (dppm) or 1,1'-Bis(diphenylphosphino) ferrocene (dppf) was introduced. As anionic ligands, CI was first coordinated to Au, resulting in (diphosphine)$(AuCl)_{2}$. Then, the ligand, SPh, was substituted for Cl in the chloride complex to give (diphosphine)$(AuSPh)_{2}$. As a result, three digold complexes, (dppm)$(AuCl)_{2}$. (I), (dppf)$(AuCl)_{2}$. (II), and (dppf)$(AuSPh_{2}$. (III) were prepared in this study. The thermal properties were investigated at first hand to confirm that the gold complexes were in fact formed. The digold complexes were decomposed above $200^{\circ}C$ while the ligand, dppm or dppf, melts under $180^{\circ}C$ The photoluminescence (PL) spectra of the spin-coated thin films showed the maximum peak at 590, 595, and 540nm for the complex, I, II, and III, respectively. These complexes were found to give the orange color phosphorescence. Therefore, these digold complexes can be candidates for orange-red phosphorescent materials in organic electroluminescent devices (OELD). Further studies on application of the complexes as a dopant in an emitting layer are in progress in our laboratory.