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1.
Chirality ; 23 Suppl 1: E35-42, 2011.
Article in English | MEDLINE | ID: mdl-21500288

ABSTRACT

A novel, optically active, cis-transoidal poly(phenylacetylene) bearing an L-proline residue as the pendant group (poly-1) was prepared by the polymerization of the corresponding monomer using a rhodium catalyst in water, and its chiroptical property was investigated using circular dichroism spectroscopy. Poly-1 showed intense Cotton effects in the UV-visible region of the polymer backbone in water, resulting from the prevailing one-handed helical conformation induced by the covalent-bonded chiral L-proline pendants and exhibited a unique helix-sense inversion in response to external, achiral, and chiral stimuli, such as the solvent and interactions with chiral small molecules. We found that poly-1 could enantioselectively trap 1,1'-2-binaphthol within its hydrophobic helical cavity inside the polymer in aqueous media and underwent an inversion of its helical sense in the presence of one of the enantiomers. The effect of the optical purity of 1,1'-2-binaphthol on the chiroptical properties of poly-1 was also investigated.


Subject(s)
Acetylene/analogs & derivatives , Proline/chemistry , Acetylene/chemistry , Catalysis , Circular Dichroism/methods , Furans/chemistry , Hydrophobic and Hydrophilic Interactions , Molecular Conformation , Polymers/chemistry , Rhodium/chemistry , Solvents/chemistry , Spectrophotometry, Ultraviolet/methods , Stereoisomerism , Toluene/chemistry , Water/chemistry
2.
J Am Chem Soc ; 131(20): 6958-60, 2009 May 27.
Article in English | MEDLINE | ID: mdl-19453195

ABSTRACT

Polymerization reactions of phenylacetylene derivatives are promoted by rhodium complexes within the discrete space of apo-ferritin in aqueous media. The catalytic reaction provides polymers with restricted molecular weight and a narrow molecular weight distribution. These results suggest that protein nanocages have potential for use as various reaction spaces through immobilization of metal catalysts on the interior surfaces of the protein cages.


Subject(s)
Acetylene/analogs & derivatives , Apoferritins/chemistry , Organometallic Compounds/chemistry , Rhodium/chemistry , Acetylene/chemical synthesis , Acetylene/chemistry , Animals , Crystallography, X-Ray , Horses , Models, Molecular , Norbornanes/chemistry , Water/chemistry
3.
Chem Commun (Camb) ; (26): 3019-21, 2008 Jul 14.
Article in English | MEDLINE | ID: mdl-18688334

ABSTRACT

A facile method for synthesizing diverse optically active polymers with different backbone structures was developed by the polymerization of an optically active aromatic azide bearing an acetylene unit with a rhodium catalyst followed by the click reaction of the pendant azides or by the click polymerization of the monomer.

4.
Chirality ; 20(3-4): 386-92, 2008 Mar.
Article in English | MEDLINE | ID: mdl-17724655

ABSTRACT

A novel poly(phenylacetylene) derivative bearing optically active pyrene moieties as the pendant groups (poly-(R)-1) was prepared by the polymerization of the corresponding monomer (R)-1 in the presence of a rhodium catalyst, and its chiroptical property was investigated. Poly-(R)-1 exhibited an induced circular dichroism (ICD) in the polymer backbone region due to the predominantly one-handed helical conformation. The ICD pattern dramatically changed and was accompanied by inversion of the Cotton effect sign in response to a change in the temperature and solvent, indicating that poly-(R)-1 underwent a helix-helix transition in response to the external stimuli.


Subject(s)
Polyynes/chemistry , Pyrenes/chemistry , Acetylene/analogs & derivatives , Acetylene/chemical synthesis , Acetylene/chemistry , Circular Dichroism , Molecular Conformation , Polyynes/chemical synthesis , Pyrenes/chemical synthesis , Spectrometry, Fluorescence , Stereoisomerism
5.
Chem Commun (Camb) ; (23): 2351-3, 2007 Jun 21.
Article in English | MEDLINE | ID: mdl-17844743

ABSTRACT

An optically active helical poly(phenylacetylene) was synthesized by the copolymerization of phenylacetylenes bearing optically active hydroxy or ester groups obtained by the kinetic resolution of a racemic phenylacetylene with lipase; the helix-sense was inverted from one helix to another by the further chemical modification of the hydroxy groups with achiral bulky isocyanates or an acid chloride.


Subject(s)
Acetylene/analogs & derivatives , Acetylene/chemistry , Kinetics , Magnetic Resonance Spectroscopy , Stereoisomerism
6.
Chirality ; 18(9): 717-22, 2006 Sep.
Article in English | MEDLINE | ID: mdl-16856161

ABSTRACT

A stereoregular poly(phenylacetylene) bearing the aza-18-crown-6 ether pendants (poly-1) was found to form a predominantly one-handed helix upon complexation with optically active C(alpha)-methylated alpha-amino acids and their amide derivatives including typical meteoritic C(alpha)-methylated alpha-amino acids such as C(alpha)-methyl norvaline and C(alpha)-methyl valine. The complexes exhibited an induced circular dichroism (ICD) in the UV-visible region of the polymer backbone. Therefore, poly-1 can be used as a novel probe for detection of the chirality of C(alpha)-methylated alpha-amino acids. The effect of the enantiomeric excess (ee) of C(alpha)-methylated alpha-amino acids on the helicity induction in poly-1 was also investigated.


Subject(s)
Acetylene/analogs & derivatives , Amino Acids/chemistry , Crown Ethers/chemistry , Ethers, Cyclic/chemistry , Acetylene/chemistry , Circular Dichroism , Models, Molecular , Stereoisomerism
8.
Chemistry ; 10(19): 4703-7, 2004 Oct 04.
Article in English | MEDLINE | ID: mdl-15372691

ABSTRACT

Poly[(4-carboxyphenyl)acetylene] (poly-1) exhibits an intense induced circular dichroism (ICD) in the UV-visible region upon complexation with excess (R)-1-(1-naphthyl)ethylamine ((R)-2), owing to the formation of a predominantly single-handed helical conformation of the polymer backbone. In the presence of a small amount of (R)-2, poly-1 showed a very weak ICD due to the lack of a single-handed helical conformation. However, we have found that the co-addition of the excess bulky, achiral 1-naphthylmethylamine (5) with a small amount of (R)-2 caused a dramatic increase in the ICD magnitude, comparable to the full ICD induced by excess (R)-2. This indicates that an almost single-handed helix can be induced on poly-1 upon complexation with a small amount of (R)-2 assisted by achiral 5. Furthermore, the induced single-handed helical poly-1 could be successfully memorized by the replacement of (R)-2 and 5 with achiral 2-aminoethanol or n-butylamine.


Subject(s)
Acetylene/analogs & derivatives , Amines/chemistry , Acetylene/chemistry , Circular Dichroism , Molecular Conformation , Polymers/chemistry , Polyynes
9.
J Am Chem Soc ; 126(13): 4329-42, 2004 Apr 07.
Article in English | MEDLINE | ID: mdl-15053623

ABSTRACT

Cis-transoidal poly((4-carboxyphenyl)acetylene) (poly-1) is an optically inactive polymer but forms an induced one-handed helical structure upon complexation with optically active amines such as (R)-(1-(1-naphthyl)ethyl)amine ((R)-2) in DMSO. The complexes show a characteristic induced circular dichroism (ICD) in the UV-visible region of the polymer backbone. Moreover, the macromolecular helicity of poly-1 induced by (R)-2 can be "memorized" even after complete replacement of (R)-2 by various achiral amines. We now report fully detailed studies on the mechanism of the helicity induction and memory of the helical chirality of poly-1 by means of UV-visible, CD, and infrared spectroscopies. We have found that a one-handed helix is cooperatively induced on poly-1 upon the ion pair formation of the carboxy groups of poly-1 with optically active amines and that the bulkiness of the chiral amines plays a crucial role for inducing an excess of a single-handed helix. On the other hand, the free ion formation was found to be essential for the macromolecular helicity memory of poly-1 after the replacement of the chiral amine by achiral amines, since the intramolecular electrostatic repulsion between the neighboring carboxylate ions of poly-1 significantly contributes to reduce the atropisomerization process of poly-1. On the basis of the mechanism of helicity induction and the memory of the helical chirality drawn from the present studies, we succeeded in creating an almost perfect memory of the induced macromolecular helicity of poly-1 with (R)-2 by using 2-aminoethanol as an achiral chaperoning molecule to assist in maintaining the memory of helical chirality.

10.
Chemistry ; 8(22): 5112-20, 2002 Nov 15.
Article in English | MEDLINE | ID: mdl-12613029

ABSTRACT

The temperature dependence of the helical conformations for the homopolymers of phenylacetylene derivatives bearing an optically active substituent, such as the (R)-((1-phenylethyl)carbamoyl)oxy and (R)-((1-(1-naphthyl)ethyl)carbamoyl)oxy groups at the phenyl group, and their copolymers with achiral phenylacetylenes were investigated in solution using circular dichroism (CD) and absorption spectroscopies. The magnitude of the induced CD (ICD) of the optically active homopolymers increased with decreasing temperature and was accompanied by a blueshift in their absorption maxima. On the other hand, the copolymers with achiral phenylacetylenes exhibited interesting ICD changes with temperature, depending on the bulkiness of the achiral comonomers. The copolymers with a less bulky phenylacetylene had a very intense ICD at low temperatures, the ICD pattern was almost opposite to those of the chiral homopolymers, while the copolymers with the most bulky phenylacetylene bearing a tert-butyldiphenylsiloxy group at the para position showed an ICD change similar to that of the optically active homopolymers. However, the copolymers with the phenylacetylene bearing a tert-butyldimethylsiloxy group with intermediate bulkiness at the para position showed no ICD change with temperature. These results indicate that the prevailing helix-sense of the chiral-achiral random copolymers of the phenylacetylenes is determined by a delicate interaction between the chiral and achiral side chains. The thermodynamic stability parameters for the helical conformations of the homopolymers and copolymers of the phenylacetylenes were estimated from the temperature dependence of the ICDs.

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