Structural and Conformational Studies of N,N-Dichloroethanamine and N,N-Dichloro-2-propanamine by Gas Electron Diffraction Combined with ab Initio Calculations

The molecular structure and conformation of N,N-dichloroethanamine (EtNCl2, NDCEA) and N,N-dichloro-2-propanamine (i-PrNCl2, NDCPA) were studied by gas electron diffraction. The optimized structures and the force constants obtained by MP2/6-31G** ab initio calculations were used in the analyses. The...

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Veröffentlicht in:The journal of physical chemistry. A, Molecules, spectroscopy, kinetics, environment, & general theory Molecules, spectroscopy, kinetics, environment, & general theory, 2000-02, Vol.104 (6), p.1311-1318
Hauptverfasser: Egawa, Toru, Ohtsubo, Masataka, Nakagawa, Hideki, Kuze, Nobuhiko, Fujiwara, Hideo, Konaka, Shigehiro
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container_title The journal of physical chemistry. A, Molecules, spectroscopy, kinetics, environment, & general theory
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Ohtsubo, Masataka
Nakagawa, Hideki
Kuze, Nobuhiko
Fujiwara, Hideo
Konaka, Shigehiro
description The molecular structure and conformation of N,N-dichloroethanamine (EtNCl2, NDCEA) and N,N-dichloro-2-propanamine (i-PrNCl2, NDCPA) were studied by gas electron diffraction. The optimized structures and the force constants obtained by MP2/6-31G** ab initio calculations were used in the analyses. The force constants were scaled to reproduce the vibrational wavenumbers of the gas-phase infrared spectra measured in the present study. At room temperature, NDCEA exists in a conformational equilibrium of C 1 and C s forms and the abundance of the C 1 conformer is 79 ± 9%. The abundance of the C 1 for NDCPA is 88 ± 12%. The structural parameters (r g and ∠α) for the C 1 conformer of NDCEA are as follows:  r(N−C) = 1.479(6) Å; r(C−C) = 1.542(7) Å; 〈r(N−Cl)〉 = 1.759(2) Å; 〈r(C−H)〉 = 1.107(8) Å; ∠N−C−C = 108.2(8)°; 〈∠C−N−Cl〉 = 108.2(3)°; ∠Cl−N−Cl = 106.9(2)°; φ C−C−N−Clg = −76(2)°. Angle brackets denote averaged values and parenthesized values are the estimated limits of error (3σ) referring to the last significant digit. Clg means the Cl atom gauche to the C−C bond. Those for the C 1 conformer of NDCPA are as follows:  r(N−C) = 1.496(11) Å; 〈r(C−C)〉 = 1.531(6) Å; 〈r(N−Cl)〉 = 1.762(2) Å; 〈r(C−H)〉 = 1.119(5) Å; 〈∠N−C−C〉 = 112.4(8)°; ∠C−C−C = 108.3(18)°; 〈∠C−N−Cl〉 = 109.1(6)°; ∠Cl−N−Cl = 106.7(4)°; φ Ct−C−N−Clg = 63(3)°. Ct means the C atom trans to the lone pair of the N atom, and Clg means the Cl atom gauche to the C−H bond of the α carbon.
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The optimized structures and the force constants obtained by MP2/6-31G** ab initio calculations were used in the analyses. The force constants were scaled to reproduce the vibrational wavenumbers of the gas-phase infrared spectra measured in the present study. At room temperature, NDCEA exists in a conformational equilibrium of C 1 and C s forms and the abundance of the C 1 conformer is 79 ± 9%. The abundance of the C 1 for NDCPA is 88 ± 12%. The structural parameters (r g and ∠α) for the C 1 conformer of NDCEA are as follows:  r(N−C) = 1.479(6) Å; r(C−C) = 1.542(7) Å; 〈r(N−Cl)〉 = 1.759(2) Å; 〈r(C−H)〉 = 1.107(8) Å; ∠N−C−C = 108.2(8)°; 〈∠C−N−Cl〉 = 108.2(3)°; ∠Cl−N−Cl = 106.9(2)°; φ C−C−N−Clg = −76(2)°. Angle brackets denote averaged values and parenthesized values are the estimated limits of error (3σ) referring to the last significant digit. Clg means the Cl atom gauche to the C−C bond. Those for the C 1 conformer of NDCPA are as follows:  r(N−C) = 1.496(11) Å; 〈r(C−C)〉 = 1.531(6) Å; 〈r(N−Cl)〉 = 1.762(2) Å; 〈r(C−H)〉 = 1.119(5) Å; 〈∠N−C−C〉 = 112.4(8)°; ∠C−C−C = 108.3(18)°; 〈∠C−N−Cl〉 = 109.1(6)°; ∠Cl−N−Cl = 106.7(4)°; φ Ct−C−N−Clg = 63(3)°. Ct means the C atom trans to the lone pair of the N atom, and Clg means the Cl atom gauche to the C−H bond of the α carbon.</description><identifier>ISSN: 1089-5639</identifier><identifier>EISSN: 1520-5215</identifier><identifier>DOI: 10.1021/jp993053f</identifier><language>eng</language><publisher>American Chemical Society</publisher><ispartof>The journal of physical chemistry. 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A, Molecules, spectroscopy, kinetics, environment, &amp; general theory</title><addtitle>J. Phys. Chem. A</addtitle><description>The molecular structure and conformation of N,N-dichloroethanamine (EtNCl2, NDCEA) and N,N-dichloro-2-propanamine (i-PrNCl2, NDCPA) were studied by gas electron diffraction. The optimized structures and the force constants obtained by MP2/6-31G** ab initio calculations were used in the analyses. The force constants were scaled to reproduce the vibrational wavenumbers of the gas-phase infrared spectra measured in the present study. At room temperature, NDCEA exists in a conformational equilibrium of C 1 and C s forms and the abundance of the C 1 conformer is 79 ± 9%. The abundance of the C 1 for NDCPA is 88 ± 12%. The structural parameters (r g and ∠α) for the C 1 conformer of NDCEA are as follows:  r(N−C) = 1.479(6) Å; r(C−C) = 1.542(7) Å; 〈r(N−Cl)〉 = 1.759(2) Å; 〈r(C−H)〉 = 1.107(8) Å; ∠N−C−C = 108.2(8)°; 〈∠C−N−Cl〉 = 108.2(3)°; ∠Cl−N−Cl = 106.9(2)°; φ C−C−N−Clg = −76(2)°. Angle brackets denote averaged values and parenthesized values are the estimated limits of error (3σ) referring to the last significant digit. Clg means the Cl atom gauche to the C−C bond. Those for the C 1 conformer of NDCPA are as follows:  r(N−C) = 1.496(11) Å; 〈r(C−C)〉 = 1.531(6) Å; 〈r(N−Cl)〉 = 1.762(2) Å; 〈r(C−H)〉 = 1.119(5) Å; 〈∠N−C−C〉 = 112.4(8)°; ∠C−C−C = 108.3(18)°; 〈∠C−N−Cl〉 = 109.1(6)°; ∠Cl−N−Cl = 106.7(4)°; φ Ct−C−N−Clg = 63(3)°. 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A, Molecules, spectroscopy, kinetics, environment, &amp; general theory</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>Egawa, Toru</au><au>Ohtsubo, Masataka</au><au>Nakagawa, Hideki</au><au>Kuze, Nobuhiko</au><au>Fujiwara, Hideo</au><au>Konaka, Shigehiro</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Structural and Conformational Studies of N,N-Dichloroethanamine and N,N-Dichloro-2-propanamine by Gas Electron Diffraction Combined with ab Initio Calculations</atitle><jtitle>The journal of physical chemistry. A, Molecules, spectroscopy, kinetics, environment, &amp; general theory</jtitle><addtitle>J. Phys. Chem. A</addtitle><date>2000-02-17</date><risdate>2000</risdate><volume>104</volume><issue>6</issue><spage>1311</spage><epage>1318</epage><pages>1311-1318</pages><issn>1089-5639</issn><eissn>1520-5215</eissn><abstract>The molecular structure and conformation of N,N-dichloroethanamine (EtNCl2, NDCEA) and N,N-dichloro-2-propanamine (i-PrNCl2, NDCPA) were studied by gas electron diffraction. The optimized structures and the force constants obtained by MP2/6-31G** ab initio calculations were used in the analyses. The force constants were scaled to reproduce the vibrational wavenumbers of the gas-phase infrared spectra measured in the present study. At room temperature, NDCEA exists in a conformational equilibrium of C 1 and C s forms and the abundance of the C 1 conformer is 79 ± 9%. The abundance of the C 1 for NDCPA is 88 ± 12%. The structural parameters (r g and ∠α) for the C 1 conformer of NDCEA are as follows:  r(N−C) = 1.479(6) Å; r(C−C) = 1.542(7) Å; 〈r(N−Cl)〉 = 1.759(2) Å; 〈r(C−H)〉 = 1.107(8) Å; ∠N−C−C = 108.2(8)°; 〈∠C−N−Cl〉 = 108.2(3)°; ∠Cl−N−Cl = 106.9(2)°; φ C−C−N−Clg = −76(2)°. Angle brackets denote averaged values and parenthesized values are the estimated limits of error (3σ) referring to the last significant digit. Clg means the Cl atom gauche to the C−C bond. Those for the C 1 conformer of NDCPA are as follows:  r(N−C) = 1.496(11) Å; 〈r(C−C)〉 = 1.531(6) Å; 〈r(N−Cl)〉 = 1.762(2) Å; 〈r(C−H)〉 = 1.119(5) Å; 〈∠N−C−C〉 = 112.4(8)°; ∠C−C−C = 108.3(18)°; 〈∠C−N−Cl〉 = 109.1(6)°; ∠Cl−N−Cl = 106.7(4)°; φ Ct−C−N−Clg = 63(3)°. Ct means the C atom trans to the lone pair of the N atom, and Clg means the Cl atom gauche to the C−H bond of the α carbon.</abstract><pub>American Chemical Society</pub><doi>10.1021/jp993053f</doi><tpages>8</tpages></addata></record>
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