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1. Name Takehiko WADA First Name Last Name 2. Sex M 3 ... - IS3NA

1. Name Takehiko WADA First Name Last Name 2. Sex M 3 ... - IS3NA

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117. Mechanism of photoisomerization of optically pure trans-2,3-diphenylcyclopropane-1-carboxylic acid<br />

derivatives.<br />

J.Sivaguru, T.Wada, Y.Inoue, and V.Ramamurthy, V.<br />

Photochem. Photobio. Sci., 4, 119 (2005).<br />

116. Functionalization of PNA - novel strategy for active control of DNA recognition by external factors<br />

using peptide ribonucleic acids (PRNA),<br />

T. Wada and Y. Inoue,<br />

Yuki Gosei Kagaku Kyokaishi 63, 63 (2005).<br />

115. Supramolecular asymmetric photoreactions.<br />

T.Wada and Y.Inoue,<br />

Mol.Supramol.Photochem.11,341 (2004).<br />

114. Synthesis of Peptide Ribonucleic Acid Consisting of D- and L-γ-Glutamic Acid as a Backbone Structure,<br />

T. Wada, Y. Hashimoto, H. Sato, and Y. Inoue,<br />

Nucleic Acids Res., 32, 27-28 (2004).<br />

113. Diastereoselective [2 + 2] Photocycloaddition of Stilbene to Chiral Fumarate. Direct versus<br />

Charge-Transfer Excitation,<br />

H. Saito, T. Mori, T. Wada, and Y. Inoue,<br />

J. Am. Chem. Soc., 126, 1900 (2004).<br />

11<strong>2.</strong> Enantiodifferentiating Photoaddition of Alcohols to 1,1-Diphenylpropene in Supercritical Carbon<br />

Dioxide: Sudden Jump of Optical Yield at the Critical Density,<br />

Y. Nishiyama, M. Kaneda, R. Saito, T. Mori, T. Wada, and Y. Inoue,<br />

J. Am. Chem. Soc., 126, 6568 (2004).<br />

11<strong>1.</strong> A 5’-Amino-5’-deoxyribonucleoside Containing Nucleic Acid Model for External Reversible Control of Recognition Behavior<br />

through anti-syn Orientational Switching of the Nucleobase Induced by Borate Esterification of the cis-2’,3’-Diol,<br />

T .Wada, H. Sato, N. Minamimoto, and Y. Inoue,<br />

Biopolym., 76, 15 (2004).<br />

110. Active control of DNA recognition behavior of -peptide ribonucleic acids containing basic amino acid<br />

residues by external factors,<br />

T. Wada Y. Inoue,<br />

Polym. Prep., 45, 447 (2004).<br />

109. Pressure control of enantiodifferentiating polar addition of 1,1-diphenylpropene sensitized by chiral<br />

Naphthalenecarboxylates,<br />

M. Kaneda, Y. Nishiyama, S. Asaoka, T. Mori, T. Wada, and Y. Inoue,<br />

Org. Biomol. Chem., 2, 1295 (2004).<br />

108. Residue- and sequence-selective binding of nonaromatic dipeptides by bis(β-cyclodextrin) with a<br />

functional tether,<br />

Y. Liu, Y. Yang, Y. Song, H. Zhang, T. Wada, and Y. Inoue,<br />

Chem. Bio. Chem., 5, 868 (2004).<br />

107. Enhanced Diastereoselectivity via Confinement: Diastereoselective Photoisomerization of<br />

2,3-Diphenyl-1-benzoylcyclopropane Derivatives within Zeolites,<br />

J. Sivaguru, B. Raghavan. T. Wada, Y. Origane, Y. Inoue, and V. Ramamurthy,<br />

J. Org. Chem., 69, 5528 (2004).<br />

106. Enhanced Diastereoselectivity via Confinement: Photoisomerization of<br />

2,3-Diphenylcyclopropane-1-carboxylic Acid Derivatives within Zeolites,<br />

J. Sivaguru, B. Raghavan. T. Wada, Y. Origane, Y. Inoue, and V. Ramamurthy,<br />

J. Org. Chem., 69, 6533 (2004).<br />

105. Enantioselective [4+2]-cycloaddition reaction of a photochemically generated O-quinodimethane:<br />

Mechanistic details, association studies, and pressure effects,<br />

B. Grosch, C. Orlebar, M. Kaneda, T. Wada, Y. Inoue, and T. Bach,<br />

Chem. -A Eur. J., 10, 2179 (2004).<br />

104. Active control of DNA recognition behavior of α-peptide ribonucleic acids containing basic amino acid residues by<br />

external factors,<br />

H. Sato, T. Wada, and Y. Inoue,<br />

J. Bioactive and Compatible Polym., 19, 65 (2004).

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