高等学校化学学报
高等學校化學學報
고등학교화학학보
CHEMICAL JOURNAL OF CHINESE UNIVERSITIES
2001年
3期
417-420
,共4页
上官国强%MARTELL A.E%ZHANG Z.R%REIBENSPIES J
上官國彊%MARTELL A.E%ZHANG Z.R%REIBENSPIES J
상관국강%MARTELL A.E%ZHANG Z.R%REIBENSPIES J
大环配体%合成%晶体结构
大環配體%閤成%晶體結構
대배배체%합성%정체결구
用Pb(SN)2作模板, 2,6-二甲酰基对甲苯酚与二亚乙基三胺通过[2+2]缩合反应, 经NaBH4还原、 脱Pb2+、 酸化等操作, 得晶体BDBPH*6HBr*4H2O. 晶体属单斜晶系, P21/c空间群, 晶体学参数: a=1.444 1(5) nm, b=1.148 2(4) nm, c=1.209 0(6) nm, α=90°, β=96.92°, γ=90°, V=1.990 0 nm3. 大环分子采取椅式构型, 6个Br-和4个H2O分子对称分布于大环两侧. 该大环配体结构新颖, 可用于多种金属配合物的研究, 对进一步了解金属酶活性中心的结构及其催化作用机理具有重要价值.
用Pb(SN)2作模闆, 2,6-二甲酰基對甲苯酚與二亞乙基三胺通過[2+2]縮閤反應, 經NaBH4還原、 脫Pb2+、 痠化等操作, 得晶體BDBPH*6HBr*4H2O. 晶體屬單斜晶繫, P21/c空間群, 晶體學參數: a=1.444 1(5) nm, b=1.148 2(4) nm, c=1.209 0(6) nm, α=90°, β=96.92°, γ=90°, V=1.990 0 nm3. 大環分子採取椅式構型, 6箇Br-和4箇H2O分子對稱分佈于大環兩側. 該大環配體結構新穎, 可用于多種金屬配閤物的研究, 對進一步瞭解金屬酶活性中心的結構及其催化作用機理具有重要價值.
용Pb(SN)2작모판, 2,6-이갑선기대갑분분여이아을기삼알통과[2+2]축합반응, 경NaBH4환원、 탈Pb2+、 산화등조작, 득정체BDBPH*6HBr*4H2O. 정체속단사정계, P21/c공간군, 정체학삼수: a=1.444 1(5) nm, b=1.148 2(4) nm, c=1.209 0(6) nm, α=90°, β=96.92°, γ=90°, V=1.990 0 nm3. 대배분자채취의식구형, 6개Br-화4개H2O분자대칭분포우대배량측. 해대배배체결구신영, 가용우다충금속배합물적연구, 대진일보료해금속매활성중심적결구급기최화작용궤리구유중요개치.
A new dinucleating 24-membered hexaazadiphenol macrocyclic ligand, 3,6,9,17,20,23-hexaaza-29,30-dihydroxy-13,27-dimethyl tricyclo[23,3,1,111,15]triaconta-1(28),11,13,15(30),25,26-hexaene(BDBPH), was synthesized by the NaBH4 reduction of the Schiff base obtained from the [2+2] condensation between diethylenetriamine and diformyl-p-cresol. The crystal structure of the hexahydrobromide salt of BDBPH, BDBPH*6HBr*4H2O, was determined by single crystal X-ray diffractometry. It crystallized in the monoclinic system, space group P21/c, with a=1.444 1(5) nm, b=1.148 2(4) nm, c=1.209 0(6) nm, α=90°, β=96.92°, γ=90°, V=1.990 0(4) nm3 and Z=2. The macrocyclic ligand adapts a chair conformation, the crystallographic inv ersion center is located in the macrocyclic cavity, the six bromide ions and four water molecules are situated symmetrically outside the macrocyclic cavity. The new ligand with structural characteristics can be used for the study on the stabilities and catalytic properties of the corresponding metal complexes.