Please wait a minute...
《材料导报》期刊社  2018, Vol. 32 Issue (8): 1252-1257    https://doi.org/10.11896/j.issn.1005-023X.2018.08.009
  材料研究 |
新型异金属三羰基铼配合物的合成及光学性质研究
张睿1, 顾晓龙1, 庞欢2
1 扬州市职业大学生物与化工工程学院,扬州 225009;
2 扬州大学化学化工学院,扬州 225002
Synthesis and Optical Properties of a Novel Rhenium(Ⅰ) Complex Containing Three Carbonyl Groups and Hetero-metal Element
ZHANG Rui1, GU Xiaolong1, PANG Huan2
1 School of Biological and Chemical Engineering, Yangzhou Polytechnic College, Yangzhou 225009;
2 College of Chemistry and Chemical Engineering, Yangzhou University, Yangzhou 225002
下载:  全 文 ( PDF ) ( 1706KB ) 
输出:  BibTeX | EndNote (RIS)      
摘要 将双吡啶基多硫桥式配体(Ⅲ)依次与Ni(dbbpy)Cl2(dbbpy=4,4′-二叔丁基-2,2′-联吡啶)、Re(CO)5Cl反应,合成了一个新型的双核卤化三羰基一价铼异金属配合物(2)及其前体配合物(1)。采用1H NMR、IR、MS和元素分析表征1和2的结构,并解析了二者的晶体结构,初步测定了其光学性质。结果表明,配合物1和2的CH2Cl2溶液在250~305 nm附近有很强的吸收带,摩尔消光系数级数为104,但未观测到二者发射荧光。最后在密度泛函(DFT)水平上研究了配合物1和2的基态轨道能量。
服务
把本文推荐给朋友
加入引用管理器
E-mail Alert
RSS
作者相关文章
张睿
顾晓龙
庞欢
关键词:  异金属三羰基铼配合物  双吡啶基多硫桥式配体  光学性质  密度泛函(DFT)    
Abstract: In this paper, a novel rhenium (Ⅰ) complex (2) containing three carbonyl groups and another metal element,along with its precursor complex (1), were synthesized by the sequential reactions of bipyridyl polysulfide ligand (Ⅲ) with Ni(dbbpy)Cl2 (dbbpy=4,4′-di-tert-butyl-2,2′-bipyridine) and Re(CO)5Cl.1H NMR, IR, MS and elemental analysis were employed to characte-rize the molecular structures of 1 and 2, and moreover, their crystallographic structures and optical properties were also investigated. Both 1 and 2 in CH2Cl2exhibit significant responses in the wavelength range of 250—305 nm with the molar extinction coefficients at 104 level, but no fluorescence was observed. Finally we discussed the ground orbital energy of 1 and 2 via the density functional theory (DFT).
Key words:  rhenium complex containing three carbonyl groups and another metal element    bipyridyl polysulfide ligand    optical property    density functional theory (DFT)
出版日期:  2018-04-25      发布日期:  2018-05-11
ZTFLH:  O61  
基金资助: 国家自然科学基金(21671170)
通讯作者:  庞欢:通信作者,男,1985年生,博士,教授,主要从事无机纳米化学研究 E-mail:panghuan@yzu.edu.cn   
作者简介:  张睿:女,1979年生,硕士,主要从事无机化学研究 E-mail:z.tulip@163.com
引用本文:    
张睿, 顾晓龙, 庞欢. 新型异金属三羰基铼配合物的合成及光学性质研究[J]. 《材料导报》期刊社, 2018, 32(8): 1252-1257.
ZHANG Rui, GU Xiaolong, PANG Huan. Synthesis and Optical Properties of a Novel Rhenium(Ⅰ) Complex Containing Three Carbonyl Groups and Hetero-metal Element. Materials Reports, 2018, 32(8): 1252-1257.
链接本文:  
https://www.mater-rep.com/CN/10.11896/j.issn.1005-023X.2018.08.009  或          https://www.mater-rep.com/CN/Y2018/V32/I8/1252
1 Wei J, Zhang T T, Jia J, et al. Effect of COOH group on the performance of rhenium (Ⅰ) tricarbonyl complexes with tetrathiafulvalene-fused phenanthroline ligands as dyes in DSSC: DFT/TD-DFT theoretical investigations[J].Structural Chemistry,2015,26(2):421.
2 Lo K K W, Tsang K H K, Zhu N. Luminescent tricarbonylrhenium(Ⅰ) polypyridine estradiol conjugates: Synthesis, crystal structure, and photophysical, electrochemical, and protein-binding properties[J].Organometallics,2006,25:3220.
3 Tsubaki H, Sekine A, Ohashi Y, et al. Control of photochemical, photophysical, electrochemical, and photocatalytic properties of rhenium(Ⅰ) complexes using intramolecular weak interactions between ligands[J].Journal of the American Chemical Society,2005,127:15544.
4 Coe B J, Curati N R M, Fitzgerald E C, et al. Syntheses and properties of bimetallic chromophore-quencher assemblies containing ruthenium(Ⅱ) and rhenium(Ⅰ) centers[J].Organometallics,2007,26:2318.
5 Wei Q H, Yin G Q, Zhang L Y, et al. Luminescent hepta- and tetradecanuclear complexes of 5,5′-diethynyl-2,2′-bipyridine capped with tria ngular trinuclear Cu3/Ag3 cluster units[J].Inorganic Che-mistry,2006,45(25):10371.
6 Azócar M I, Mikelsons L, Ferraudi G, et al. Intramolecular redox processes induced in biquinoline-centered and metal to ligand charge transfer excited states of Ru(Ⅱ)-(4,4′-bipyridine)-Re(Ⅰ)- and Ru(Ⅱ)-(pyrazine)-Re(Ⅰ)-containing dyads[J].Organometallics,2006,23(25):5967.
7 Kennedy F, Shavaleev N M, Koullourou T, et al. Sensitised near-infrared luminescence from lanthanide(Ⅲ) centres using Re(Ⅰ) and Pt(Ⅱ) diimine complexes as energy donors in d-f dinuclear complexes based on 2,3-bis(2-pyridyl)pyrazine[J].Dalton Transactions,2007,15(15):1492.8 Baudron S A, Hosseini M W. Sequential generation of one-dimensional networks based on a differentiated bischelate-type ligand bea-ring both 4,5-diazafluorene and dithiolene units[J].Inorganic Che-mistry,2006,45(14):5260.
9 Ji Y, Zhang R, Li Y J, et al. Syntheses, structures, and electrochemical properties of platinum(Ⅱ) complexes containing di-tert-butylbipyridine and crown ether annelated dithiolate ligands[J].Inorganic Chemistry,2007,46(3):866.
10 Akiko Kobayashi, Hisashi Tanaka, Mieko Kumasaki. Origin of the high electrical conductivity of neutral [Ni(ptdt)2] (ptdt2-=propylenedithiotetrathiafulvalenedithiolate): A route to neutral molecular metal[J].Journal of the American Chemical Society,2014,121(46):10763.
11 Li G N, Jin T, Sun L, et al. Dinuclear rhenium(Ⅰ) carbonyl complexes based on π-conjugated polypyridyl ligands with tetrathiafulvalenes: Syntheses, crystal structures, properties and DFT calculations[J].Journal of Organometallic Chemistry,2011,696(19):3076.
12 Pap J S, Benedito F L, Bothe E, et al. Dimerization processes of square planar [PtII(tbpy)(dithiolato·)]+ Radicals[J].Inorganic Chemistry,2007,46(10):4187.
13 Giacomazzi L, Massobrio C, Pasquarello A, et al. Vibrational pro-perties of vitreous GeSe2 with the Becke-Lee-Yang-Parr density functional[J].Journal of Physics: Condensed Matter,2011,23(29):295401.
14 Lam S C F, Yam V W W, Wong K M C, et al. Synthesis and cha-racterization of luminescent rhenium(Ⅰ)-platinum(Ⅱ) polypyridine bichromophoric alkynyl-Bridged molecular rods[J].Organometallics,2005,24:4298.
[1] 苗瑞霞, 张德栋, 谢妙春, 王业飞, 杨小峰. 本征缺陷对δ-InSe光电性质的影响[J]. 材料导报, 2024, 38(23): 23080234-7.
[2] 刘晨曦, 庞国旺, 潘多桥, 史蕾倩, 张丽丽, 雷博程, 赵旭才, 黄以能. S和Al掺杂单层g-C3N4电子结构与光学性质的第一性原理研究[J]. 材料导报, 2023, 37(9): 21100044-6.
[3] 才文文, 贺勇, 张敏, 史俊杰. AZrX3(A=Ba, Ca;X=S, Se,Te)钙钛矿结构及光电特性的第一性原理研究[J]. 材料导报, 2023, 37(2): 21070076-6.
[4] 孟帅, 李坤, 秦振兴, 张宇飞, 马柯榕, 宫长伟, 杨雯. 铝酸钇晶体光学性质和热力学性质的第一性原理研究[J]. 材料导报, 2023, 37(10): 22060251-5.
[5] 徐良玉, 黄福祥, 龙敏, 邓鸿元, 陈剑. 过渡金属元素(X=Cr, Mn, Co, Ni, Zn, Zr, Nb, Ta)掺杂立方BaTiO3的电子结构及光学性质的第一性原理研究[J]. 材料导报, 2022, 36(Z1): 21090275-5.
[6] 张文博, 石建丽, 马建中, 卫林峰, 范倩倩. 荧光碳量子点及其在防伪中的应用[J]. 材料导报, 2022, 36(7): 20110186-11.
[7] 关玉琴, 侯清玉, 谷玉兰. 不同价态的Mn和点空位对ZnO体系光学性能的影响[J]. 材料导报, 2022, 36(2): 20110265-7.
[8] 沈潇, 魏钦华, 张伟杰, 唐高, 陈振华, 秦来顺, 史宏声. 蓝宝石表面原位玻璃化处理及性能研究[J]. 材料导报, 2021, 35(22): 22022-22026.
[9] 刘俊男, 宋述鹏, 胡冬冬, 周和荣, 吴润. 单层WxMo1-xS2合金电子和光学性质的第一性原理研究[J]. 材料导报, 2021, 35(14): 14040-14044.
[10] 方文玉, 张鹏程, 赵军. 羟基修饰单层砷烯及锑烯的电子结构与光学性质[J]. 材料导报, 2021, 35(10): 10017-10022.
[11] 赵宇鹏, 贺勇, 张敏, 史俊杰. 非金属掺杂二维ZnS的磁性和光学性质的第一性原理研究[J]. 材料导报, 2020, 34(10): 10013-10017.
[12] 王骏齐, 张衍敏, 陈天弟, 王恒, 田遴博, 冯超, 夏金宝, 张飒飒. 不同浓度Ag掺杂ZnS的电子结构及光学性质的第一性原理研究[J]. 材料导报, 2019, 33(z1): 33-36.
[13] 王慧德, 范涛健, 谢中建, 张晗. 二维黑磷的制备及光电器件研究进展*[J]. CLDB, 2017, 31(9): 45-49.
[1] Lanyan LIU,Jun SONG,Bowen CHENG,Wenchi XUE,Yunbo ZHENG. Research Progress in Preparation of Lignin-based Carbon Fiber[J]. Materials Reports, 2018, 32(3): 405 -411 .
[2] Haoqi HU,Cheng XU,Lijing YANG,Henghua ZHANG,Zhenlun SONG. Recent Advances in the Research of High-strength and High-conductivity CuCrZr Alloy[J]. Materials Reports, 2018, 32(3): 453 -460 .
[3] Yanchun ZHAO,Congyu XU,Xiaopeng YUAN,Jing HE,Shengzhong KOU,Chunyan LI,Zizhou YUAN. Research Status of Plasticity and Toughness of Bulk Metallic Glass[J]. Materials Reports, 2018, 32(3): 467 -472 .
[4] Xinxing ZHOU,Shaopeng WU,Xiao ZHANG,Quantao LIU,Song XU,Shuai WANG. Molecular-scale Design of Asphalt Materials[J]. Materials Reports, 2018, 32(3): 483 -495 .
[5] Yongtao TAN, Lingbin KONG, Long KANG, Fen RAN. Construction of Nano-Au@PANI Yolk-shell Hollow Structure Electrode Material and Its Electrochemical Performance[J]. Materials Reports, 2018, 32(1): 47 -50 .
[6] Ping ZHU,Guanghui DENG,Xudong SHAO. Review on Dispersion Methods of Carbon Nanotubes in Cement-based Composites[J]. Materials Reports, 2018, 32(1): 149 -158 .
[7] Fangyuan DONG,Shansuo ZHENG,Mingchen SONG,Yixin ZHANG,Jie ZHENG,Qing QIN. Research Progress of High Performance ConcreteⅠ:Raw Materials and Mix Proportion Design Method[J]. Materials Reports, 2018, 32(1): 159 -166 .
[8] Guiqin HOU,Yunkai LI,Xiaoyan WANG. Research Progress of Zinc Ferrite as Photocatalyst[J]. Materials Reports, 2018, 32(1): 51 -57 .
[9] Jianxiang DING,Zhengming SUN,Peigen ZHANG,Wubian TIAN,Yamei ZHANG. Current Research Status and Outlook of Ag-based Contact Materials[J]. Materials Reports, 2018, 32(1): 58 -66 .
[10] Jing WANG,Hongke LIU,Pingsheng LIU,Li LI. Advances in Hydrogel Nanocomposites with High Mechanical Strength[J]. Materials Reports, 2018, 32(1): 67 -75 .
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed