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首页> 外文期刊>Journal of the American Chemical Society >Bipodal Surface Organometallic Complexes with Surface N-Donor Ligands and Application to the Catalytic Cleavage of C-H and C-C Bonds in n-Butane
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Bipodal Surface Organometallic Complexes with Surface N-Donor Ligands and Application to the Catalytic Cleavage of C-H and C-C Bonds in n-Butane

机译:具有表面N-配体配体的双足表面有机金属配合物及其在正丁烷中C-H和C-C键的催化裂解中的应用

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摘要

We present a new generation of "true vicinal" functions well-distributed on the inner surface of SBA15: [(≡ Si-NH_2)(≡Si-OH)] (1) and [(≡Si-NH_2)_2] (2). From these amine-modified SBA15s, two new well-defined surface organometallic species [(≡Si-NH-)(≡Si-O-)]Zr-(CH_2tBu)_2 (3) and [(≡Si-NH-)_2]Zr(CH_2tBu)_2 (4) have been obtained by reaction with Zr(CH_2tBu)_4. The surfaces were characterized with 2D multiple-quantum ~1H-~1H NMR and infrared spectroscopies. Energy-filtered transmission electron microscopy (EFTEM), mass balance, and elemental analysis unambiguously proved that Zr(CH_2tBu)_4 reacts with these vicinal amine-modified surfaces to give mainly bipodal bis(neopentyl)zirconium complexes (3) and (4), uniformly distributed in the channels of SBA15. (3) and (4) react with hydrogen to give the homologous hydrides (5) and (6). Hydrogenolysis of n-butane catalyzed by these hydrides was carried out at low temperature (100 ℃) and low pressure (1 atm). While (6) exhibits a•bis(silylamido)zirconium bishydride, [(≡Si-NH-)_2]Zr(H)_2 (6a) (60%), and a bis(silylamido)-silyloxozirconium monohydride, [(≡Si-NH-)_2(=Si-O-)]ZrH (6b) (40%), (5) displays a new surface organometallic complex characterized by an ~1H NMR signal at 14.46 ppm. The latter is assigned to a (silylimido)(silyloxo)zirconium monohydride, [(≡Si-N≡)(≡Si-O-)]ZrH (5b) (30%), coexistent with a (silylamido)(silyloxo)zirconium bishydride, [(≡ Si-NH-)(≡Si-O-)]Zr(H)_2 (5a) (45%), and a silylamidobis(silyloxo)zirconium monohydride, [(≡Si-NH-)(≡Si-O-)_2]ZrH (5c) (25%). Surprisingly, nitrogen surface ligands possess catalytic properties already encountered with silicon oxide surfaces, but interestingly, catalyst (5) with chelating [N,O] shows better activity than (6) with chelating [N,N].
机译:我们提出了在SBA15的内表面上分布良好的新一代“真正邻近”功能:[(≡Si-NH_2)(≡Si-OH)](1)和[(≡Si-NH_2)_2](2 )。从这些胺改性的SBA15中,得到两个新的定义明确的表面有机金属物质[[≡Si-NH-)(≡Si-O-)] Zr-(CH_2tBu)_2(3)和[(≡Si-NH-)_ 2通过与Zr(CH_2tBu)_4反应获得了Zr(CH_2tBu)_2(4)。用2D多量子〜1H ~~ 1H NMR和红外光谱对表面进行表征。能量过滤透射电子显微镜(EFTEM),质量平衡和元素分析明确证明Zr(CH_2tBu)_4与这些邻位胺修饰的表面反应,主要生成双足双(双(新戊基)锆)配合物(3)和(4),均匀分布在SBA15的渠道中。 (3)和(4)与氢反应,得到同质氢化物(5)和(6)。这些氢化物催化的正丁烷的氢解反应是在低温(100℃)和低压(1 atm)下进行的。尽管(6)展示了一个•双(硅氢酰胺基)锆双氢化物,[(-Si-NH-)_ 2] Zr(H)_2(6a)(60%)和一个双(硅氢酰胺基)-甲硅烷基氧锆单氢化物,[(≡ Si-NH-)_ 2(= Si-O-)] ZrH(6b)(40%),(5)显示一种新的表面有机金属配合物,其特征在于〜1H NMR信号为14.46 ppm。后者被指定为((Silylimido)(silyloxo)锆一氢化物,[(≡Si-N≡)(≡Si-O-)] ZrH(5b)(30%),与(silylamido)(silyloxo)锆共存二氢[[(Si-NH-)(Si-O-)] Zr(H)_2(5a)(45%)和甲硅烷基双(硅氧代)锆一氢化物[(Si-NH-)(≡) Si-O-)_ 2] ZrH(5c)(25%)。令人惊奇地,氮表面配体具有氧化硅表面已经遇到的催化性能,但是有趣的是,具有螯合[N,O]的催化剂(5)显示出比具有螯合[N,N]的催化剂(5)更好的活性。

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  • 来源
    《Journal of the American Chemical Society》 |2013年第47期|17943-17951|共9页
  • 作者单位

    KAUST Catalysis Center (KCC), King Abdullah University of Science & Technology, 23955-6900 Thuwal, Saudi Arabia;

    KAUST Catalysis Center (KCC), King Abdullah University of Science & Technology, 23955-6900 Thuwal, Saudi Arabia;

    KAUST Catalysis Center (KCC), King Abdullah University of Science & Technology, 23955-6900 Thuwal, Saudi Arabia;

    KAUST Catalysis Center (KCC), King Abdullah University of Science & Technology, 23955-6900 Thuwal, Saudi Arabia;

    KAUST Catalysis Center (KCC), King Abdullah University of Science & Technology, 23955-6900 Thuwal, Saudi Arabia;

    KAUST Catalysis Center (KCC), King Abdullah University of Science & Technology, 23955-6900 Thuwal, Saudi Arabia;

    KAUST Catalysis Center (KCC), King Abdullah University of Science & Technology, 23955-6900 Thuwal, Saudi Arabia;

    KAUST Catalysis Center (KCC), King Abdullah University of Science & Technology, 23955-6900 Thuwal, Saudi Arabia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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