Chem. J. Chinese Universities ›› 2014, Vol. 35 ›› Issue (6): 1336.doi: 10.7503/cjcu20131246
• Polymer Chemistry • Previous Articles Next Articles
LIU Heng1,2, LIU Li1,3, WANG Feng1,2, JIA Xiangyu1,2, BAI Chenxi1, ZHANG Chunyu1,*(), ZHANG Xuequan1,*(
)
Received:
2013-12-18
Online:
2014-06-10
Published:
2014-01-23
Contact:
ZHANG Chunyu,ZHANG Xuequan
E-mail:cyzhang@ciac.ac.cn;xqzhang@ciac.ac.cn
Supported by:
CLC Number:
TrendMD:
LIU Heng, LIU Li, WANG Feng, JIA Xiangyu, BAI Chenxi, ZHANG Chunyu, ZHANG Xuequan. Synthesis,Characterization of Bis(arylcarboximidoylchloride)pyridine Ni(Ⅱ) Complexes and Their Catalytic Behavior for the Synthesis of Liquid Polybutadiene†[J]. Chem. J. Chinese Universities, 2014, 35(6): 1336.
Complex | 1a | 1b·CH2Cl2 | 1c·CH2Cl2 |
---|---|---|---|
Fomula | C23H21Br2Cl2N3Ni | C26H27Br2Cl4N3Ni | C24H21Br2Cl6N3Ni |
Molecular weight | 628.86 | 741.84 | 782.67 |
Crystal system | Monoclinic | Monoclinic | Monoclinic |
Space group | P21/c | P21/n | P21/n |
a/nm | 1.2328(2) | 0.84209(9) | 0.82406(5) |
b/nm | 1.8917(3) | 2.2750(2) | 2.28681(13) |
c/nm | 1.2291(1) | 1.63727(16) | 1.62322(9) |
α/(°) | 90.0 | 90.0 | 90.0 |
β/(°) | 117.610(1) | 102.488(2) | 101.624(1) |
γ/(°) | 90.0 | 90.0 | 90.0 |
V/nm3 | 2.5400(6) | 3.0624(5) | 2.9962(3) |
Z | 4 | 4 | 4 |
T/K | 188 | 293 | 188 |
Dc/(g·cm3) | 1.645 | 1.609 | 1.735 |
μ(Mo Kα)/mm-1 | 4.14 | 3.61 | 3.87 |
F(000) | 1248 | 1480 | 1544 |
θrange/(°) | 2.2—23.4 | 2.2—23.1 | 2.2—25.6 |
Number of reflections collected | 14280(Rint=0.069) | 17609(Rint=0.032) | 19049(Rint=0.035) |
Number of independent reflections | 4517 | 5399 | 5878 |
Number of data/restraints/parameters | 4517/0/284 | 5399/0/331 | 5878/0/329 |
Goodness of fit | 1.002 | 1.040 | 1.053 |
R1[I>2σ(I)] | 0.068 | 0.065 | 0.058 |
wR2 | 0.185 | 0.223 | 0.189 |
Table 1 Crystal data and collection parameters of complexes 1a—1c
Complex | 1a | 1b·CH2Cl2 | 1c·CH2Cl2 |
---|---|---|---|
Fomula | C23H21Br2Cl2N3Ni | C26H27Br2Cl4N3Ni | C24H21Br2Cl6N3Ni |
Molecular weight | 628.86 | 741.84 | 782.67 |
Crystal system | Monoclinic | Monoclinic | Monoclinic |
Space group | P21/c | P21/n | P21/n |
a/nm | 1.2328(2) | 0.84209(9) | 0.82406(5) |
b/nm | 1.8917(3) | 2.2750(2) | 2.28681(13) |
c/nm | 1.2291(1) | 1.63727(16) | 1.62322(9) |
α/(°) | 90.0 | 90.0 | 90.0 |
β/(°) | 117.610(1) | 102.488(2) | 101.624(1) |
γ/(°) | 90.0 | 90.0 | 90.0 |
V/nm3 | 2.5400(6) | 3.0624(5) | 2.9962(3) |
Z | 4 | 4 | 4 |
T/K | 188 | 293 | 188 |
Dc/(g·cm3) | 1.645 | 1.609 | 1.735 |
μ(Mo Kα)/mm-1 | 4.14 | 3.61 | 3.87 |
F(000) | 1248 | 1480 | 1544 |
θrange/(°) | 2.2—23.4 | 2.2—23.1 | 2.2—25.6 |
Number of reflections collected | 14280(Rint=0.069) | 17609(Rint=0.032) | 19049(Rint=0.035) |
Number of independent reflections | 4517 | 5399 | 5878 |
Number of data/restraints/parameters | 4517/0/284 | 5399/0/331 | 5878/0/329 |
Goodness of fit | 1.002 | 1.040 | 1.053 |
R1[I>2σ(I)] | 0.068 | 0.065 | 0.058 |
wR2 | 0.185 | 0.223 | 0.189 |
Bond | 1a | 1b·CH2Cl2 | 1c·CH2Cl2 |
---|---|---|---|
Ni1—N1 | 0.2191(6) | 0.2232(5) | 0.2216(5) |
Ni1—N2 | 0.1995(6) | 0.1982(5) | 0.1981(5) |
Ni1—N3 | 0.2182(6) | 0.2257(5) | 0.2236(5) |
Ni1—Br1 | 0.24233(16) | 0.23226(12) | 0.23843(10) |
Ni1—Br2 | 0.23487(14) | 0.23845(12) | 0.23343(10) |
N1—C1 | 0.1252(11) | 0.1252(8) | 0.1253(8) |
N1—C14 | 0.1445(9) | 0.1447(9) | 0.1439(8) |
N2—C6 | 0.1319(10) | 0.1315(9) | 0.1333(8) |
N2—C2 | 0.1332(10) | 0.1350(8) | 0.1341(7) |
N3—C7 | 0.1274(10) | 0.1249(9) | 0.1261(8) |
N3—C8 | 0.1458(10) | 0.1455(8) | 0.1440(8) |
N1—Ni1—N2 | 76.70(2) | 77.40(2) | 77.58(19) |
N1—Ni1—Br1 | 96.45(19) | 99.78(14) | 94.37(13) |
N1—Ni1—Br2 | 99.16(17) | 94.49(14) | 99.38(13) |
N2—Ni1—N3 | 77.10(2) | 75.90(2) | 76.40(2) |
N2—Ni1—Br1 | 155.00(2) | 141.87(16) | 144.06(15) |
N2—Ni1—Br2 | 90.60(19) | 98.29(16) | 97.07(14) |
N3—Ni1—Br1 | 96.74(19) | 97.39(15) | 94.25(14) |
N3—Ni1—Br2 | 99.05(17) | 95.34(15) | 98.33(14) |
N1—Ni1—N3 | 150.6(2) | 152.6(2) | 153.43(19) |
Ni1—N1—C14 | 127.7(5) | 128.2(4) | 127.7(4) |
Ni1—N3—C8 | 127.1(5) | 127.9(4) | 127.3(4) |
C1—N1—C14 | 120.9(7) | 121.4(6) | 127.7(4) |
C7—N3—C8 | 120.8(6) | 122.1(6) | 127.3(4) |
Table 2 Selected bond distances(nm) and bond angles(°) of complexes 1a—1c
Bond | 1a | 1b·CH2Cl2 | 1c·CH2Cl2 |
---|---|---|---|
Ni1—N1 | 0.2191(6) | 0.2232(5) | 0.2216(5) |
Ni1—N2 | 0.1995(6) | 0.1982(5) | 0.1981(5) |
Ni1—N3 | 0.2182(6) | 0.2257(5) | 0.2236(5) |
Ni1—Br1 | 0.24233(16) | 0.23226(12) | 0.23843(10) |
Ni1—Br2 | 0.23487(14) | 0.23845(12) | 0.23343(10) |
N1—C1 | 0.1252(11) | 0.1252(8) | 0.1253(8) |
N1—C14 | 0.1445(9) | 0.1447(9) | 0.1439(8) |
N2—C6 | 0.1319(10) | 0.1315(9) | 0.1333(8) |
N2—C2 | 0.1332(10) | 0.1350(8) | 0.1341(7) |
N3—C7 | 0.1274(10) | 0.1249(9) | 0.1261(8) |
N3—C8 | 0.1458(10) | 0.1455(8) | 0.1440(8) |
N1—Ni1—N2 | 76.70(2) | 77.40(2) | 77.58(19) |
N1—Ni1—Br1 | 96.45(19) | 99.78(14) | 94.37(13) |
N1—Ni1—Br2 | 99.16(17) | 94.49(14) | 99.38(13) |
N2—Ni1—N3 | 77.10(2) | 75.90(2) | 76.40(2) |
N2—Ni1—Br1 | 155.00(2) | 141.87(16) | 144.06(15) |
N2—Ni1—Br2 | 90.60(19) | 98.29(16) | 97.07(14) |
N3—Ni1—Br1 | 96.74(19) | 97.39(15) | 94.25(14) |
N3—Ni1—Br2 | 99.05(17) | 95.34(15) | 98.33(14) |
N1—Ni1—N3 | 150.6(2) | 152.6(2) | 153.43(19) |
Ni1—N1—C14 | 127.7(5) | 128.2(4) | 127.7(4) |
Ni1—N3—C8 | 127.1(5) | 127.9(4) | 127.3(4) |
C1—N1—C14 | 120.9(7) | 121.4(6) | 127.7(4) |
C7—N3—C8 | 120.8(6) | 122.1(6) | 127.3(4) |
Entry | Cat. | Al agentb | T/℃ | Yield(%) | 10-3 | Mw/ | Microstructure fractiond(%) | ||
---|---|---|---|---|---|---|---|---|---|
Cis-1,4-PB | 1,2-PB | Trans-1,4-PB | |||||||
1 | 1a | EASC | 20 | 94.2 | 5.1 | 3.2 | 77.2 | 0.9 | 21.9 |
2 | 1b | EASC | 20 | 94.0 | 4.7 | 3.0 | 74.8 | 1.1 | 24.1 |
3 | 1c | EASC | 20 | 92.7 | 5.0 | 3.0 | 75.8 | 1.1 | 23.2 |
4 | 2a | EASC | 20 | 97.8 | 5.2 | 3.1 | 77.2 | 1.0 | 21.8 |
5 | 2b | EASC | 20 | 96.0 | 4.8 | 3.1 | 75.4 | 1.0 | 23.7 |
6 | 2c | EASC | 20 | 96.5 | 5.2 | 3.0 | 76.0 | 1.2 | 22.8 |
7 | 1b | EASC | -5 | 23.3 | 18.6 | 2.2 | 89.2 | 3.3 | 7.5 |
8 | 1b | EASC | 50 | 61.0 | 4.5 | 4.0 | 69.5 | 1.5 | 29.0 |
9 | 1b | TEA | 20 | 1.8 | |||||
10 | 1b | TIBA | 20 |
Table 3 Butadiene polymerizatioin results using complexes 1a—1d, 2b—2d as catalystsa
Entry | Cat. | Al agentb | T/℃ | Yield(%) | 10-3 | Mw/ | Microstructure fractiond(%) | ||
---|---|---|---|---|---|---|---|---|---|
Cis-1,4-PB | 1,2-PB | Trans-1,4-PB | |||||||
1 | 1a | EASC | 20 | 94.2 | 5.1 | 3.2 | 77.2 | 0.9 | 21.9 |
2 | 1b | EASC | 20 | 94.0 | 4.7 | 3.0 | 74.8 | 1.1 | 24.1 |
3 | 1c | EASC | 20 | 92.7 | 5.0 | 3.0 | 75.8 | 1.1 | 23.2 |
4 | 2a | EASC | 20 | 97.8 | 5.2 | 3.1 | 77.2 | 1.0 | 21.8 |
5 | 2b | EASC | 20 | 96.0 | 4.8 | 3.1 | 75.4 | 1.0 | 23.7 |
6 | 2c | EASC | 20 | 96.5 | 5.2 | 3.0 | 76.0 | 1.2 | 22.8 |
7 | 1b | EASC | -5 | 23.3 | 18.6 | 2.2 | 89.2 | 3.3 | 7.5 |
8 | 1b | EASC | 50 | 61.0 | 4.5 | 4.0 | 69.5 | 1.5 | 29.0 |
9 | 1b | TEA | 20 | 1.8 | |||||
10 | 1b | TIBA | 20 |
[1] | Ittel S. D., Johnson L. K., Brookhart M., Chem. Rev., 2000, 100(4), 1169—1204 |
[2] | Johnson L. K., Killian C. M., Brookhart M., J. Am. Chem. Soc., 1995, 117(23), 6414—6415 |
[3] | Guan Z., Popeney C. S., Top. Organomet. Chem., 2009, 26, 179—220 |
[4] | Gibson V. C., Solan G. A., Top. Organomet. Chem., 2009, 26, 107—158 |
[5] | Fan R. Q., Zhu D. S., Mu Y., Li G. H., Feng S. H., Chem. J. Chinese Universities, 2005, 26(7), 1215—1219 |
(范瑞清, 朱东升, 母瀛, 李光华, 冯守华.高等学校化学学报, 2005,26(7), 1215—1219) | |
[6] | Gong D. R., Wang B. L., Cai H. G., Zhang X. Q., Jiang L. S., J. Organomet. Chem., 2011, 696(8), 1584—1590 |
[7] | Gong D. R., Wang B. L., Bai C. X., Bi J. F., Wang F., Dong W. M., Zhang X. Q., Jiang L. S., Polymer, 2009, 50(26), 6259—6264 |
[8] | Gong D. R., Jia X. Y., Wang B. L., Zhang X. Q., Jiang L. S., J. Organomet. Chem., 2012, 702, 10—18 |
[9] | Jia X. Y., Liu H., Hu Y. M., Dai Q. Q., Bi J. F., Bai C. X., Zhang X. Q., Chin. J. Catal., 2013, 34(8), 1560—1569 |
(贾翔宇, 刘恒, 胡雁鸣, 代全权, 毕吉福, 白晨曦, 张学全, 催化学报, 2013, 34(8), 1560—1569) | |
[10] | Hao X. F., Zhang C. Y., Cai H. G., Jiang L. S., Na L. H., Bi J. F., Yu Q. Z., Dai Q. Q., Zhang M. L., Zhang X. Q., Chem. J. Chinese Universities, 2009, 30(10), 2082—2085 |
(郝秀峰, 张春雨, 蔡洪光, 姜连升, 那丽华, 毕吉福, 于琦周, 代全权, 张鸣雷, 张学全.高等学校化学学报, 2009,30(10), 2082—2085) | |
[11] | Liu H., Jia X. Y, Wang F., Dai Q. Q., Wang B. L., Bi J. F., Zhang C. Y., Zhao L. P., Bai C. X., Hu Y. M., Zhang X. Q., Dalton Trans., 2013, 42(37), 13723—13732 |
[12] | Smit T. M., Tomov A. K., Gibson V. C., White A. J. P., Williams D. J., Inorg. Chem., 2004, 43(21), 6511—6512 |
[13] | Shen Z. Q., Jiang L. S., Li X. Y., Zhong C. Q., Ouyang J., Polym. Commun., 1965, 7(5), 322—334 |
(沈之荃, 姜连升, 李兴亚, 仲崇祺, 欧阳均.高分子通讯, 1965,7(5), 322—334) | |
[14] | Shan C.J., Sun T., Pang S. F., Ji X. Z., Yang J. H.,Acta Polym. Sin., 1989, (6), 709—713 |
(单成基, 孙涛, 逄束芬, 稽显忠, 杨继华. 高分子学报, 1989, (6), 709—713) |
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