Department of Chemistry, National Cheng Kung University, No. 1 Ta-Hsueh Rd., 70101 Tainan, Taiwan.
Chemistry. 2011 Feb 7;17(6):1930-5. doi: 10.1002/chem.201002905. Epub 2011 Jan 5.
The reaction of 1-ethynyl-8-halonaphthalenes 1 with nitriles in the presence of the catalytic system [NiBr(2)(dppe)]/Zn (dppe=1,2-bis(diphenylphosphino)ethane) is found to produce unusual pyrroloarenes 2. The carbon-nitrogen triple bond in nitrile is activated twice, and five new bonds are formed in a one-pot transformation, which causes a pyrrole and two six-membered rings to be generated simultaneously. The scope and limitations of this reaction are examined. Similarly, alkyl-bridged diynes also furnish the corresponding polycycles. Diaryl-substituted cycloadducts 2 (R(1)=Ar) are fluxional, because of the restriction in rotation of the aryl groups. The rotational barrier is studied by performing (1)H NMR experiments at various temperatures. The structures of several compounds are determined by X-ray crystallographic analysis. The photophysical and electrochemical properties of the pyrroloarenes are also investigated.
1-乙炔基-8-卤代萘 1 与腈在催化体系[NiBr2(dppe)]/Zn(dppe=1,2-双(二苯基膦)乙烷)存在下的反应被发现会生成不寻常的吡咯并芳烃 2。腈中的碳氮三键被双重活化,在一锅转化中形成了五个新键,导致同时生成一个吡咯和两个六元环。该反应的范围和限制进行了考察。同样,烷基桥联二炔也提供了相应的多环化合物。由于芳基基团旋转的限制,二芳基取代的环加成产物 2(R1=Ar)是易变的。通过在不同温度下进行(1)H NMR 实验来研究旋转势垒。通过 X 射线晶体学分析确定了几个化合物的结构。还研究了吡咯并芳烃的光物理和电化学性质。