From local adsorption stresses to chiral surfaces:: (R,R)-tartaric acid on Ni(110)

被引:180
作者
Humblot, V
Haq, S
Muryn, C
Hofer, WA
Raval, R [1 ]
机构
[1] Univ Liverpool, Leverhulme Ctr Innovat Catalysis, Liverpool L69 7ZD, Merseyside, England
[2] Univ Liverpool, Surface Sci Res Ctr, Dept Chem, Liverpool L69 7ZD, Merseyside, England
[3] UCL, Dept Phys & Astron, London WC1E 6BT, England
关键词
D O I
10.1021/ja012021e
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The chiral molecule (R,R)-tartaric acid adsorbed on nickel surfaces creates highly enantioselective heterogeneous catalysts, but the nature of chiral modification remains unknown. Here, we report on the behavior of this chiral molecule with a defined Ni(110) surface. A combination of reflection absorption infrared spectroscopy, scanning tunneling microscopy, and periodic density functional theory calculations reveals a new mode of chiral induction. At room temperatures and low coverages, (R,R)-tartaric acid is adsorbed in its bitartrate form with two-point bonding to the surface via both carboxylate groups. The molecule is preferentially located above the 4-fold hollow site with each carboxylate functionality adsorbed at the short bridge site via 0 atoms placed above adjacent Ni atoms. However, repulsive interactions between the chiral OH groups of the molecule and the metal atoms lead to severely strained adsorption on the bulk-truncation Ni(l 10) surface. As a result, the most stable adsorption structure is one in which this adsorption-induced stress is alleviated by significant relaxation of surface metal atoms so that a long distance of 7.47 A between pairs of Ni atoms can be accommodated at the surface. Interestingly, this leads the bonding Ni atoms to describe a chiral footprint at the surface for which all local mirror symmetry planes are destroyed. Calculations show only one chiral footprint to be favored by the (R,R)-tartaric acid, with the mirror adsorption site being unstable by 6 kJ mol(-1). This energy difference is sufficient to enable the same local chiral reconstruction and motif to be sustained over 90% of the system, leading to an overall highly chiral metal surface.
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页码:503 / 510
页数:8
相关论文
共 58 条
[41]   MOLECULAR ADSORBATE-INDUCED SURFACE RECONSTRUCTION - CO/PD(110) [J].
RAVAL, R ;
HAQ, S ;
HARRISON, MA ;
BLYHOLDER, G ;
KING, DA .
CHEMICAL PHYSICS LETTERS, 1990, 167 (05) :391-398
[42]   Assembling molecular guidance systems for heterogeneous enantioselective catalysis [J].
Raval, R .
CATTECH, 2001, 5 (01) :12-28
[43]  
Ravel R, 1999, STUD SURF SCI CATAL, V122, P11
[44]  
Schunack M, 2001, ANGEW CHEM INT EDIT, V40, P2623, DOI 10.1002/1521-3773(20010716)40:14<2623::AID-ANIE2623>3.0.CO
[45]  
2-X
[46]  
SHOLL DS, 2001, J PHYS CHEM B, V105, P21
[47]   ADSORBATE-INDUCED RESTRUCTURING OF SURFACES [J].
SOMORJAI, GA ;
VANHOVE, MA .
PROGRESS IN SURFACE SCIENCE, 1989, 30 (3-4) :201-231
[48]   STM investigation of the coadsorption and reaction of oxygen and hydrogen on Ni(110) [J].
Sprunger, PT ;
Okawa, Y ;
Besenbacher, F ;
Stensgaard, I ;
Tanaka, K .
SURFACE SCIENCE, 1995, 344 (1-2) :98-110
[49]   LASER RAMAN AND INFRARED-SPECTRA OF DIPOTASSIUM TARTRATE HEMI-HYDRATE [J].
SRIVASTAVA, GP ;
MOHAN, S ;
JAIN, YS .
JOURNAL OF RAMAN SPECTROSCOPY, 1982, 13 (01) :25-29
[50]   STEREOCHEMICAL INVESTIGATION ON ASYMMETRICALLY MODIFIED RANEY-NICKEL CATALYST - MODE OF INTERACTION BETWEEN MODIFYING REAGENT AND SUBSTRATE IN THE ENANTIOFACE-DIFFERENTIATING PROCESS [J].
TAI, A ;
HARADA, T ;
HIRAKI, Y ;
MURAKAMI, S .
BULLETIN OF THE CHEMICAL SOCIETY OF JAPAN, 1983, 56 (05) :1414-1419