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91.
Koichi Hasebe Akio Fujiwara Takashi Nozaki Koichi Miyamoto 《Macromolecular Symposia》2007,260(1):161-164
In this study, ultrahigh molecular weight polyethene homopolymer and copolymer were successfully produced with the metallocene and the Ziegler catalyst system. In case with the metallocene catalyst system, viscosity average molecular weight of the homopolymer was controlled from 2 million to 10 million. Also, the molecular weight of the copolymer was reached up to 6 million. In case with the Ziegler catalyst system, the molecular weight of the copolymer was reached up to 4 million. The transparency of the copolymer by the Ziegler catalyst, with which the copolymer with better uniformity was produced, could be comparable with that by the metallocene catalyst. 相似文献
92.
Tamejiro Hiyama Hiroyuki Saimoto Koji Nishio Masaki Shinoda Hajime Yamamoto Hitosi Nozaki 《Tetrahedron letters》1979,20(22):2043-2046
A new method is reported for constructing α-methylene-γ-butyrolactone moiety under neutral, anhydrous conditions. Olefin-dibromocarbene adducts are transformed to methyl 1-(N,N-dimethylaminomethyl)cyclopropanecarboxylates which in turn are treated with trimethylsilyl iodide and the crude products distilled to give the title compounds with high regio- and stereoselectivity. 相似文献
93.
Hiroji Oda Yoshitomi Morizawa Koichiro Oshima Hitosi Nozaki 《Tetrahedron letters》1984,25(30):3221-3224
Whereas iododegermylation of (Z)-1-triethylgermyl-1-dodecene gives (Z)-1-iodo-1-dodecene, bromodegermylation proves to give (E)-1-bromo-1-dodecene. Two general procedures for the preparation of vinylgermanes are also described. 相似文献
94.
The reaction of cycloalkanones with silicon tetraisothiocyanate in the presence of (Me3SiO)2SO2?nBu3SnF or Zn(NCS)2 provides 1-cycloalkenyl isothiocyanates in good yields under mild conditions. 相似文献
95.
96.
M Hori T Iwamura T Morita E Imai H Oji T Kataoka H Shimizu M Ban M Nozaki M Niwa 《Chemical & pharmaceutical bulletin》1989,37(8):2222-2224
Synthesis of 3-cyclopropylmethyl-, 3-cyclobutylmethyl-, and 3-methyl-8-benzoylthio-2,6-methano-3-benzazocines (1j-l) was performed by regio-selective chlorosulfonation of non-narcotic 8-deoxy derivatives (1a-c) followed by reduction and benzoylation. 3-Benzoylthiomorphinans (2h-j) were also obtained by the same method. Compounds having small-ring substituents (1k, 1l, 2i, 2j) were found to be weak but pure mu- and delta-opioid antagonists. The analgetic activity of 1k was almost equal to that of pentazocine. 相似文献
97.
M Hori T Iwamura E Imai H Shimizu T Kataoka M Nozaki M Niwa H Fujimura 《Chemical & pharmaceutical bulletin》1989,37(5):1245-1248
3-Acylthiomorphinans, 3-carbamoylthio-3-deoxydihydromorphine and 3-benzoylthio-9-aza-17-carbamorphinan were synthesized by Newman-Kwart rearrangement of the corresponding O-thiocarbamates. The analgetic activities were lower than that of pentazocine, and the opioid receptor binding affinities were very weak. These acylthiomorphinans showed low antinociceptive activity compared with corresponding sulfur-containing benzomorphans. 3-Carbamoylthio-deoxydihydromorphine had no significant analgetic activity. 相似文献
98.
T Kojima K Niigata T Fujikura S Tachikawa Y Nozaki S Kagami K Takahashi 《Chemical & pharmaceutical bulletin》1985,33(9):3766-3774
99.
Estradiol extracted with an ODS minicolumn from serum (500 μl) is derivatized with 5-dimethylamino-1-naphthalenesulfonyl (dansyl) chloride at room temperature for 80 min, purified on the ODS minicolumn, separated on silica gel columns (150 × 1.9 mm i.d. and 100 × 1.9 mm i.d.) with n-hexane/chloroform/ethanol (70:30:0.1) as eluent at 3 ml min?1 and detected by the chemiluminescence emission produced in a post-column reaction with bis-(2,4,6-trichlorophenyl) oxalate (8 mM in chloroform containing 100 mM triethylamine) and hydrogen peroxide (600 mM in methanol containing 6% (v/v) sodium acetate buffer at pH 4.0). The overall recovery of estradiol from serum is ca. 90% and the detection limit is ca. 50 pg. 相似文献
100.
Di(2-pyridyl)ketone dimethylplatinum(ii), (dpk)PtII(CH3)2, reacts with CD3OD at 25 °C to undergo complete deuteration of Pt–CH3 fragments in ∼5 h without loss of methane to form (dpk)PtII(CD3)2 in virtually quantitative yield. The deuteration can be reversed by dissolution in CH3OH or CD3OH. Kinetic analysis and isotope effects, together with support from density functional theory calculations indicate a metal–ligand cooperative mechanism wherein DPK enables Pt–CH3 deuteration by allowing non-rate-limiting protonation of PtII by CD3OD. In contrast, other model di(2-pyridyl) ligands enable rate-limiting protonation of PtII, resulting in non-rate-limiting C–H(D) reductive coupling. Owing to its electron-poor nature, following complete deuteration, DPK can be dissociated from the PtII-centre, furnishing [(CD3)2PtII(μ-SMe2)]2 as the perdeutero analogue of [(CH3)2PtII(μ-SMe2)]2, a commonly used PtII-precursor.Di(2-pyridyl)ketone dimethylplatinum(ii), (dpk)PtII(CH3)2, reacts with CD3OD at 25 °C to undergo complete deuteration of Pt–CH3 fragments in ∼5 h without loss of methane to form (dpk)PtII(CD3)2 in virtually quantitative yield. 相似文献