TADDOLs, their derivatives, and TADDOL analogues: Versatile chiral auxiliaries

9Citations
Citations of this article
119Readers
Mendeley users who have this article in their library.
Get full text

Abstract

TADDOLs, which contain two adjacent diarylhydroxymethyl groups in a trans relationship on a 1,3-dioxolane ring, can be prepared from acetals or ketals of tartrate esters by reaction of the latter with aromatic Grignard reagents. They are extraordinarily versatile chiral auxiliaries. Here, a historical review of the subject is followed by discussion of the preparation of TADDOLs and analogous systems, including TADDOLs with N-, P-, O-, and S-heteroatom ligands appropriate for metals. Crystal structure analysis reveals that the heteroatoms on the diarylmethyl groups are almost always in close proximity to each other, joined together by H-bonds, and predisposed to form chelate complexes in which the metallic centers reside in propeller-like chiral environments. Applications of TADDOL derivatives in enantioselective synthesis extend from utilization as stoichiometric chiral reagents or in Lewis acid mediated reactions, to roles in catalytic hydrogenation and stereo-regular metathesis polymerization. Derivatives and complexes based on the following metals have so far been investigated: Li, B, Mg, Al, Si, Cu, Zn, Ce, Ti, Zr, Mo, Rh, Ir, Pd, Pt. The number of stereoselective reactions already accomplished with TADDOLs is correspondingly large. It is also easy to prepare TADDOL derivatives that are readily polymerizable and graftable, and to transform them into immobilized solid-phase catalysts. The result is catalysts, simply or dendritically immobilized in polystyrene or on silica gel and characterized by unexpected stability even after multiple use in titanium TADDOLate mediated reactions. TADDOLs show further unusual characteristics that make them useful for applications in material science and supramolecular chemistry: they are the most effective doping agents known for phase transformations of achiral (nematic) into chiral (cholesteric) liquid crystals. The TADDOL OH group that is not involved in intramolecular H-bonding shows a strong tendency to associate intermolecularly with H-bond acceptors. In the process of crystallization this leads, enantioselectively, to the formation of inclusion compounds that lend themselves to the separation of racemic mixtures not otherwise suited to the classical method of crystallization through diastereomeric salts. The high melting points of TADDOLs even make possible the resolution of racemates by distillation! Host-guest compounds formed between TADDOLs and achiral partners can serve as platforms for enantioselective photoreactions. It seems safe to predict that many more applications will be discovered for the TADDOLs and their derivatives.

References Powered by Scopus

Methods of Reactivity Umpolung

1288Citations
N/AReaders
Get full text

Tertiary Phosphane/Tetrachloromethane, a Versatile Reagent for Chlorination, Dehydration, and PN Linkage

1018Citations
N/AReaders
Get full text

Chelation or Non‐Chelation Control in Addition Reactions of Chiral α‐ and β‐ Alkoxy Carbonyl Compounds [New Synthetic Methods (44)]

817Citations
N/AReaders
Get full text

Cited by Powered by Scopus

Synthesis of a new chiral N,N,N-tridentate pyridinebisimidazoline ligand library and its application in Ru-catalyzed asymmetric epoxidation

134Citations
N/AReaders
Get full text

Recent Advances in Asymmetric C-C and C-Heteroatom Bond Forming Reactions using Polymer-Bound Catalysts

120Citations
N/AReaders
Get full text

Synthesis of a novel class of chiral N,N,N-tridentate pyridinebisimidazoline ligands and their application in Ru-catalyzed asymmetric epoxidations

54Citations
N/AReaders
Get full text

Register to see more suggestions

Mendeley helps you to discover research relevant for your work.

Already have an account?

Cite

CITATION STYLE

APA

Seebach, D., Beck, A. K., & Heckel, A. (2001, January 8). TADDOLs, their derivatives, and TADDOL analogues: Versatile chiral auxiliaries. Angewandte Chemie - International Edition. https://doi.org/10.1002/1521-3773(20010105)40:1<92::AID-ANIE92>3.3.CO;2-B

Readers over time

‘10‘11‘12‘13‘14‘15‘16‘17‘18‘19‘20‘21‘22‘23‘2405101520

Readers' Seniority

Tooltip

PhD / Post grad / Masters / Doc 49

54%

Professor / Associate Prof. 20

22%

Researcher 20

22%

Lecturer / Post doc 1

1%

Readers' Discipline

Tooltip

Chemistry 95

95%

Materials Science 2

2%

Agricultural and Biological Sciences 2

2%

Physics and Astronomy 1

1%

Article Metrics

Tooltip
Mentions
References: 4

Save time finding and organizing research with Mendeley

Sign up for free
0