Structures by: Vittal J. J.

Total: 374

C47H36CdF3N3O5

C47H36CdF3N3O5

Medishetty, RaghavenderTandiana, RikaVittal, Jagadese J.

Crystal Growth & Design (2014) 14, 7 3186

a=29.311(3)Å   b=5.9604(5)Å   c=21.7006(19)Å

α=90.00°   β=94.511(2)°   γ=90.00°

C37H33CdN5O10

C37H33CdN5O10

Medishetty, RaghavenderTandiana, RikaVittal, Jagadese J.

Crystal Growth & Design (2014) 14, 7 3186

a=11.7447(11)Å   b=21.5208(19)Å   c=28.109(3)Å

α=90.00°   β=90.00°   γ=90.00°

C62H60Cd3F2N6O16

C62H60Cd3F2N6O16

Medishetty, RaghavenderTandiana, RikaVittal, Jagadese J.

Crystal Growth & Design (2014) 14, 7 3186

a=41.702(5)Å   b=9.8988(13)Å   c=18.444(2)Å

α=90.00°   β=103.422(3)°   γ=90.00°

C116H100N4O16Zn4

C116H100N4O16Zn4

Medishetty, RaghavenderBai, ZhaozhiYang, HuiWong, Ming WahVittal, Jagadese J.

Crystal Growth & Design (2015) 15, 8 4055

a=25.482(7)Å   b=12.452(4)Å   c=16.030(5)Å

α=90°   β=103.144(6)°   γ=90°

C58H48F2N2O8Zn2

C58H48F2N2O8Zn2

Medishetty, RaghavenderBai, ZhaozhiYang, HuiWong, Ming WahVittal, Jagadese J.

Crystal Growth & Design (2015) 15, 8 4055

a=25.635(7)Å   b=12.264(3)Å   c=16.391(4)Å

α=90°   β=104.731(4)°   γ=90°

C58H50N2O8Zn2

C58H50N2O8Zn2

Medishetty, RaghavenderBai, ZhaozhiYang, HuiWong, Ming WahVittal, Jagadese J.

Crystal Growth & Design (2015) 15, 8 4055

a=25.435(7)Å   b=12.468(4)Å   c=16.225(5)Å

α=90°   β=102.559(7)°   γ=90°

C116H96F4N4O16Zn4

C116H96F4N4O16Zn4

Medishetty, RaghavenderBai, ZhaozhiYang, HuiWong, Ming WahVittal, Jagadese J.

Crystal Growth & Design (2015) 15, 8 4055

a=25.8026(13)Å   b=12.3472(5)Å   c=15.9123(7)Å

α=90°   β=105.476(2)°   γ=90°

C58H48F2N2O8Zn2

C58H48F2N2O8Zn2

Medishetty, RaghavenderBai, ZhaozhiYang, HuiWong, Ming WahVittal, Jagadese J.

Crystal Growth & Design (2015) 15, 8 4055

a=25.8026(13)Å   b=12.3472(5)Å   c=15.9123(7)Å

α=90°   β=105.476(2)°   γ=90°

C8H14Na2O12

C8H14Na2O12

Chanthapally, AnjanaQuah, Hong ShengVittal, Jagadese J.

Crystal Growth & Design (2014) 14, 5 2605

a=6.1285(4)Å   b=7.7676(5)Å   c=8.0964(6)Å

α=115.7000(10)°   β=101.3160(10)°   γ=103.0080(10)°

C8H14Na2O12

C8H14Na2O12

Chanthapally, AnjanaQuah, Hong ShengVittal, Jagadese J.

Crystal Growth & Design (2014) 14, 5 2605

a=6.1351(6)Å   b=6.3115(6)Å   c=9.1906(9)Å

α=95.537(2)°   β=96.302(2)°   γ=116.231(2)°

C8H16Ba2O14

C8H16Ba2O14

Chanthapally, AnjanaQuah, Hong ShengVittal, Jagadese J.

Crystal Growth & Design (2014) 14, 5 2605

a=6.4190(5)Å   b=7.9361(6)Å   c=8.9110(7)Å

α=103.7570(10)°   β=104.1370(10)°   γ=106.9450(10)°

C8H10K2O10

C8H10K2O10

Chanthapally, AnjanaQuah, Hong ShengVittal, Jagadese J.

Crystal Growth & Design (2014) 14, 5 2605

a=6.2679(5)Å   b=15.3935(11)Å   c=6.3897(5)Å

α=90.00°   β=105.5000(10)°   γ=90.00°

C16H19Na3O19

C16H19Na3O19

Chanthapally, AnjanaQuah, Hong ShengVittal, Jagadese J.

Crystal Growth & Design (2014) 14, 5 2605

a=18.1275(12)Å   b=13.5852(9)Å   c=9.9982(7)Å

α=90.00°   β=120.5260(10)°   γ=90.00°

C54H48Co2N4O13

C54H48Co2N4O13

Park, In-HyeokMedishetty, RaghavenderLee, Hyeong-HwanHerng, Tun SengDing, JunLee, Shim SungVittal, Jagadese J.

Crystal Growth & Design (2015) 15, 8 4156

a=13.7327(4)Å   b=24.6637(8)Å   c=16.1810(5)Å

α=90°   β=113.1930(10)°   γ=90°

C68H48Co2N4O10

C68H48Co2N4O10

Park, In-HyeokMedishetty, RaghavenderLee, Hyeong-HwanHerng, Tun SengDing, JunLee, Shim SungVittal, Jagadese J.

Crystal Growth & Design (2015) 15, 8 4156

a=17.9388(13)Å   b=9.2136(6)Å   c=26.536(2)Å

α=90°   β=108.127(4)°   γ=90°

C19H24O9

C19H24O9

Venkataramanan, BalasubramaniamJames, Wong Ling GuanVittal, Jagadese J.Suresh, Valiyaveettil

Crystal Growth & Design (2004) 4, 3 553

a=8.3808(7)Å   b=10.8134(9)Å   c=11.1500(9)Å

α=75.083(2)°   β=88.217(2)°   γ=87.818(2)°

C19H16O3

C19H16O3

Venkataramanan, BalasubramaniamJames, Wong Ling GuanVittal, Jagadese J.Suresh, Valiyaveettil

Crystal Growth & Design (2004) 4, 3 553

a=5.1773(7)Å   b=15.729(2)Å   c=9.0925(12)Å

α=90.00°   β=101.548(3)°   γ=90.00°

C32H44N3O6PS

C32H44N3O6PS

N. Satish KumarPraveen KommanaJ. J. VittalK. C. Kumara Swamy

Journal of Organic Chemistry (2002) 67, 6653-6658

a=19.2601(10)Å   b=9.9781(5)Å   c=19.7255(10)Å

α=90.00°   β=114.0670(10)°   γ=90.00°

C31H44N5O6P

C31H44N5O6P

N. Satish KumarPraveen KommanaJ. J. VittalK. C. Kumara Swamy

Journal of Organic Chemistry (2002) 67, 6653-6658

a=18.0374(10)Å   b=9.7348(5)Å   c=19.0824(11)Å

α=90.00°   β=94.6740(10)°   γ=90.00°

C32H48N3O6P

C32H48N3O6P

N. Satish KumarPraveen KommanaJ. J. VittalK. C. Kumara Swamy

Journal of Organic Chemistry (2002) 67, 6653-6658

a=16.2599(8)Å   b=18.4942(9)Å   c=11.2391(5)Å

α=90.00°   β=101.5380(10)°   γ=90.00°

C37H49N2O6P

C37H49N2O6P

N. Satish KumarPraveen KommanaJ. J. VittalK. C. Kumara Swamy

Journal of Organic Chemistry (2002) 67, 6653-6658

a=12.0296(6)Å   b=16.3575(8)Å   c=19.1558(10)Å

α=90.00°   β=106.5720(10)°   γ=90.00°

C32H48N3O6PS

C32H48N3O6PS

N. Satish KumarK. Praveen KumarK. V. P. Pavan KumarPraveen KommanaJagadese J. VittalK. C. Kumara Swamy

Journal of Organic Chemistry (2004) 69, 1880-1889

a=10.681(9)Å   b=10.761(3)Å   c=17.409(4)Å

α=74.34(7)°   β=72.41(5)°   γ=71.50(11)°

C22H45ClF3N5O5P2

C22H45ClF3N5O5P2

N. Satish KumarK. Praveen KumarK. V. P. Pavan KumarPraveen KommanaJagadese J. VittalK. C. Kumara Swamy

Journal of Organic Chemistry (2004) 69, 1880-1889

a=18.2506(18)Å   b=9.7929(16)Å   c=18.982(2)Å

α=90.00°   β=109.54(4)°   γ=90.00°

C62H88N6O12P2

C62H88N6O12P2

N. Satish KumarK. Praveen KumarK. V. P. Pavan KumarPraveen KommanaJagadese J. VittalK. C. Kumara Swamy

Journal of Organic Chemistry (2004) 69, 1880-1889

a=17.050(2)Å   b=10.0336(12)Å   c=19.816(2)Å

α=90.00°   β=92.216(2)°   γ=90.00°

C36H47N2O7PS

C36H47N2O7PS

N. Satish KumarK. Praveen KumarK. V. P. Pavan KumarPraveen KommanaJagadese J. VittalK. C. Kumara Swamy

Journal of Organic Chemistry (2004) 69, 1880-1889

a=20.7843(12)Å   b=10.6218(6)Å   c=16.7361(10)Å

α=90.00°   β=99.0500(10)°   γ=90.00°

C62.5H70N3O9P

C62.5H70N3O9P

N. Satish KumarK. Praveen KumarK. V. P. Pavan KumarPraveen KommanaJagadese J. VittalK. C. Kumara Swamy

Journal of Organic Chemistry (2004) 69, 1880-1889

a=12.4123(7)Å   b=16.2723(10)Å   c=17.5862(10)Å

α=63.7960(10)°   β=70.9040(10)°   γ=79.2730(10)°

C20H42ClN5O4P2

C20H42ClN5O4P2

N. Satish KumarK. Praveen KumarK. V. P. Pavan KumarPraveen KommanaJagadese J. VittalK. C. Kumara Swamy

Journal of Organic Chemistry (2004) 69, 1880-1889

a=11.439(2)Å   b=14.028(3)Å   c=19.909(2)Å

α=76.23(4)°   β=75.65(4)°   γ=80.66(2)°

C31H42Cl2N3O7P

C31H42Cl2N3O7P

N. Satish KumarK. Praveen KumarK. V. P. Pavan KumarPraveen KommanaJagadese J. VittalK. C. Kumara Swamy

Journal of Organic Chemistry (2004) 69, 1880-1889

a=15.1196(18)Å   b=17.9591(16)Å   c=25.632(2)Å

α=90.00(4)°   β=90.00(4)°   γ=90.00(2)°

C97H124N6O18P2

C97H124N6O18P2

N. Satish KumarK. Praveen KumarK. V. P. Pavan KumarPraveen KommanaJagadese J. VittalK. C. Kumara Swamy

Journal of Organic Chemistry (2004) 69, 1880-1889

a=9.6724(8)Å   b=11.9518(10)Å   c=22.0645(19)Å

α=80.273(2)°   β=86.782(2)°   γ=73.459(2)°

C37H27F6N3O5

C37H27F6N3O5

Jeyaraman SankarHarapriya RathViswanathan PrabhuRajaTavarekere K. ChandrashekarJagadese J. Vittal

Journal of Organic Chemistry (2004) 69, 5135-5138

a=11.0495(10)Å   b=17.7082(16)Å   c=34.093(3)Å

α=90.00°   β=94.478(2)°   γ=90.00°

C8H8ClNO6

C8H8ClNO6

Goutam Kumar KoleGeok Kheng TanJagadese J. Vittal

Journal of Organic Chemistry (2011) 76, 7860-7865

a=5.0430(3)Å   b=8.4238(6)Å   c=12.5243(9)Å

α=105.6250(10)°   β=100.4850(10)°   γ=95.5600(10)°

C16H14N2O4

C16H14N2O4

Goutam Kumar KoleGeok Kheng TanJagadese J. Vittal

Journal of Organic Chemistry (2011) 76, 7860-7865

a=14.723(2)Å   b=9.6367(14)Å   c=10.5485(16)Å

α=90.00°   β=118.305(3)°   γ=90.00°

C8H10ClNO3

C8H10ClNO3

Goutam Kumar KoleGeok Kheng TanJagadese J. Vittal

Journal of Organic Chemistry (2011) 76, 7860-7865

a=6.8763(4)Å   b=8.0599(5)Å   c=9.6919(5)Å

α=69.9810(10)°   β=73.3820(10)°   γ=68.9960(10)°

C16H15F6N2O4P

C16H15F6N2O4P

Goutam Kumar KoleGeok Kheng TanJagadese J. Vittal

Journal of Organic Chemistry (2011) 76, 7860-7865

a=5.0962(3)Å   b=15.5577(10)Å   c=11.4752(8)Å

α=90.00°   β=95.9440(10)°   γ=90.00°

C31H52F12NiOP2Ru2S6

C31H52F12NiOP2Ru2S6

Shin, Richard Y. C.Teo, Ming ErnTan, Geok KhengKoh, Lip LinVittal, Jagadese J.Goh, Lai YoongMurray, Keith S.Moubaraki, BoujemaaZhou, X.-Y.

Organometallics (2005) 24, 17 4265-4273

a=40.8312(14)Å   b=12.0357(4)Å   c=18.0096(6)Å

α=90.00°   β=92.0050(10)°   γ=90.00°

C28.25H48CuF12O0.5P2Ru2S6

C28.25H48CuF12O0.5P2Ru2S6

Shin, Richard Y. C.Teo, Ming ErnTan, Geok KhengKoh, Lip LinVittal, Jagadese J.Goh, Lai YoongMurray, Keith S.Moubaraki, BoujemaaZhou, X.-Y.

Organometallics (2005) 24, 17 4265-4273

a=12.2374(5)Å   b=17.5939(7)Å   c=22.0809(9)Å

α=71.7830(10)°   β=74.9610(10)°   γ=72.2410(10)°

C38H64F12NiO2P2Ru2S6

C38H64F12NiO2P2Ru2S6

Shin, Richard Y. C.Teo, Ming ErnTan, Geok KhengKoh, Lip LinVittal, Jagadese J.Goh, Lai YoongMurray, Keith S.Moubaraki, BoujemaaZhou, X.-Y.

Organometallics (2005) 24, 17 4265-4273

a=10.1593(18)Å   b=10.5154(19)Å   c=12.654(2)Å

α=81.386(4)°   β=70.138(4)°   γ=76.824(4)°

C18H29CuF12N2P2RuS3

C18H29CuF12N2P2RuS3

Shin, Richard Y. C.Teo, Ming ErnTan, Geok KhengKoh, Lip LinVittal, Jagadese J.Goh, Lai YoongMurray, Keith S.Moubaraki, BoujemaaZhou, X.-Y.

Organometallics (2005) 24, 17 4265-4273

a=12.019(3)Å   b=12.320(3)Å   c=12.471(3)Å

α=62.461(4)°   β=63.603(5)°   γ=77.387(5)°

C36H62CuF12NOP2Ru2S6

C36H62CuF12NOP2Ru2S6

Shin, Richard Y. C.Teo, Ming ErnTan, Geok KhengKoh, Lip LinVittal, Jagadese J.Goh, Lai YoongMurray, Keith S.Moubaraki, BoujemaaZhou, X.-Y.

Organometallics (2005) 24, 17 4265-4273

a=12.5958(8)Å   b=14.3941(9)Å   c=16.0703(10)Å

α=64.5150(10)°   β=70.1110(10)°   γ=86.3170(10)°

C22H17Cr2O6PS

C22H17Cr2O6PS

Weng, ZhiqiangLeong, Weng Kee Vittal, Jagadese J.Goh, Lai Yoong

Organometallics (2003) 22, 8 1645-1656

a=19.6999(17)Å   b=9.6164(9)Å   c=11.5827(10)Å

α=90.00°   β=90.00°   γ=90.00°

C22H17Cr2O6PS

C22H17Cr2O6PS

Weng, ZhiqiangLeong, Weng Kee Vittal, Jagadese J.Goh, Lai Yoong

Organometallics (2003) 22, 8 1645-1656

a=19.6999(17)Å   b=9.6164(9)Å   c=11.5827(10)Å

α=90.00°   β=90.00°   γ=90.00°

C26H24Cr2O4P2

C26H24Cr2O4P2

Weng, ZhiqiangLeong, Weng Kee Vittal, Jagadese J.Goh, Lai Yoong

Organometallics (2003)

a=13.618(2)Å   b=9.4510(15)Å   c=19.492(3)Å

α=90.00°   β=98.305(4)°   γ=90.00°

C28.75H29Cr4OPS3

C28.75H29Cr4OPS3

Weng, ZhiqiangLeong, Weng Kee Vittal, Jagadese J.Goh, Lai Yoong

Organometallics (2003)

a=43.214(6)Å   b=9.7364(13)Å   c=14.971(2)Å

α=90.00°   β=110.106(3)°   γ=90.00°

C34H34Cr4O2P2S2

C34H34Cr4O2P2S2

Weng, ZhiqiangLeong, Weng Kee Vittal, Jagadese J.Goh, Lai Yoong

Organometallics (2003)

a=10.7471(13)Å   b=16.1172(18)Å   c=18.290(2)Å

α=90.00°   β=90.00°   γ=90.00°

C30H28Cl2OP2Pt

C30H28Cl2OP2Pt

Yeo, Wee-ChuanVittal, Jagadese J.Koh, Lip LinTan, Geok KhengLeung, Pak-Hing

Organometallics (2006) 25, 5 1259-1269

a=11.6176(5)Å   b=8.5768(4)Å   c=13.8038(6)Å

α=90.00°   β=103.8310(10)°   γ=90.00°

C44H44BF4NO2P2Pt

C44H44BF4NO2P2Pt

Yeo, Wee-ChuanVittal, Jagadese J.Koh, Lip LinTan, Geok KhengLeung, Pak-Hing

Organometallics (2006) 25, 5 1259-1269

a=11.6519(6)Å   b=15.9927(7)Å   c=21.0891(10)Å

α=90.00°   β=90.00°   γ=90.00°

C44H44BF4NOP2Pt

C44H44BF4NOP2Pt

Yeo, Wee-ChuanVittal, Jagadese J.Koh, Lip LinTan, Geok KhengLeung, Pak-Hing

Organometallics (2006) 25, 5 1259-1269

a=11.6288(6)Å   b=15.7867(8)Å   c=21.0580(11)Å

α=90.00°   β=90.00°   γ=90.00°

C44H44BF4NO3P2Pt

C44H44BF4NO3P2Pt

Yeo, Wee-ChuanVittal, Jagadese J.Koh, Lip LinTan, Geok KhengLeung, Pak-Hing

Organometallics (2006) 25, 5 1259-1269

a=11.6888(7)Å   b=15.9987(10)Å   c=21.0154(13)Å

α=90.00°   β=90.00°   γ=90.00°

C44H45BF4N2O2P2Pt

C44H45BF4N2O2P2Pt

Yeo, Wee-ChuanVittal, Jagadese J.Koh, Lip LinTan, Geok KhengLeung, Pak-Hing

Organometallics (2006) 25, 5 1259-1269

a=10.4452(6)Å   b=18.4475(12)Å   c=42.096(2)Å

α=90.00°   β=90.00°   γ=90.00°

C50H47BClF4NOP2PtSe

C50H47BClF4NOP2PtSe

Yeo, Wee-ChuanVittal, Jagadese J.Koh, Lip LinTan, Geok KhengLeung, Pak-Hing

Organometallics (2006) 25, 5 1259-1269

a=21.6188(5)Å   b=21.6188(5)Å   c=54.139(3)Å

α=90.00°   β=90.00°   γ=120.00°

C88H80Au4F12N4O10P4

C88H80Au4F12N4O10P4

Michael J. IrwinJagadese J. VittalGlenn P. A. YapRichard J. Puddephatt

Journal of the American Chemical Society (1996) 118, 13101-13102

a=21.474(3)Å   b=14.163(2)Å   c=17.112(2)Å

α=90.00°   β=98.320(10)°   γ=90.00°

C44H38Au2F6N2O4P2

C44H38Au2F6N2O4P2

Michael J. IrwinJagadese J. VittalGlenn P. A. YapRichard J. Puddephatt

Journal of the American Chemical Society (1996) 118, 13101-13102

a=8.8985(9)Å   b=9.590(1)Å   c=13.771(1)Å

α=104.474(1)°   β=106.781(2)°   γ=100.067(2)°

2.Et2O

C42H38Au2Br2OP2

Ke ZhangJanardhana PrabhavathyJohn H. K. YipLip Lin KohGeok Kheng TanJagadese J. Vittal

Journal of the American Chemical Society (2003) 125, 8452-8453

a=13.7116(8)Å   b=17.2149(10)Å   c=17.5732(10)Å

α=90.00°   β=104.4680(10)°   γ=90.00°

3.2CH2Cl2

C78H60AgAu4Cl8F6P4Sb

Ke ZhangJanardhana PrabhavathyJohn H. K. YipLip Lin KohGeok Kheng TanJagadese J. Vittal

Journal of the American Chemical Society (2003) 125, 8452-8453

a=17.952(3)Å   b=17.952(3)Å   c=25.388Å

α=90.00°   β=90.00°   γ=90.00°

4.2CH2Cl2

C78H60AgAu4Br4Cl4F6P4Sb

Ke ZhangJanardhana PrabhavathyJohn H. K. YipLip Lin KohGeok Kheng TanJagadese J. Vittal

Journal of the American Chemical Society (2003) 125, 8452-8453

a=18.0180(5)Å   b=18.0180(5)Å   c=25.7020(13)Å

α=90.00°   β=90.00°   γ=90.00°

1.0.5Et2O

C40H33Au2Cl2O0.5P2

Ke ZhangJanardhana PrabhavathyJohn H. K. YipLip Lin KohGeok Kheng TanJagadese J. Vittal

Journal of the American Chemical Society (2003) 125, 8452-8453

a=13.6932(1)Å   b=17.2175(3)Å   c=17.4876(4)Å

α=90.00°   β=104.717(1)°   γ=90.00°

C60H88O20P4Sn6

C60H88O20P4Sn6

Vadapalli ChandrasekharViswanathan BaskarJagadese J. Vittal

Journal of the American Chemical Society (2003) 125, 2392-2393

a=16.9713(7)Å   b=15.6743(6)Å   c=14.2523(6)Å

α=90.00°   β=105.5550(10)°   γ=90.00°

C28H20CoN2O4,C3H7NO

C28H20CoN2O4,C3H7NO

Elsaidi, Sameh K.Mohamed, Mona H.Wojtas, LukaszChanthapally, AnjanaPham, TonySpace, BrianVittal, Jagadese J.Zaworotko, Michael J.

Journal of the American Chemical Society (2014) 136, 13 5072-5077

a=13.3374(10)Å   b=24.979(2)Å   c=8.5046(7)Å

α=90.00°   β=99.119(4)°   γ=90.00°

C16H12CoN2O4

C16H12CoN2O4

Elsaidi, Sameh K.Mohamed, Mona H.Wojtas, LukaszChanthapally, AnjanaPham, TonySpace, BrianVittal, Jagadese J.Zaworotko, Michael J.

Journal of the American Chemical Society (2014) 136, 13 5072-5077

a=12.4892(15)Å   b=13.6324(15)Å   c=12.1687(15)Å

α=90.00°   β=90.00°   γ=90.00°

C48H36Co3N6O12

C48H36Co3N6O12

Elsaidi, Sameh K.Mohamed, Mona H.Wojtas, LukaszChanthapally, AnjanaPham, TonySpace, BrianVittal, Jagadese J.Zaworotko, Michael J.

Journal of the American Chemical Society (2014) 136, 13 5072-5077

a=17.4848(8)Å   b=17.4848(8)Å   c=20.2126(9)Å

α=90.00°   β=90.00°   γ=90.00°

C16H12CoN2O4

C16H12CoN2O4

Elsaidi, Sameh K.Mohamed, Mona H.Wojtas, LukaszChanthapally, AnjanaPham, TonySpace, BrianVittal, Jagadese J.Zaworotko, Michael J.

Journal of the American Chemical Society (2014) 136, 13 5072-5077

a=11.6910(4)Å   b=21.0101(6)Å   c=8.5286(2)Å

α=90.00°   β=130.693(2)°   γ=90.00°

C24H16CoN2O4

C24H16CoN2O4

Elsaidi, Sameh K.Mohamed, Mona H.Wojtas, LukaszChanthapally, AnjanaPham, TonySpace, BrianVittal, Jagadese J.Zaworotko, Michael J.

Journal of the American Chemical Society (2014) 136, 13 5072-5077

a=22.6250(7)Å   b=22.6250(7)Å   c=12.7634(5)Å

α=90.00°   β=90.00°   γ=90.00°

C28H20CoN2O4

C28H20CoN2O4

Elsaidi, Sameh K.Mohamed, Mona H.Wojtas, LukaszChanthapally, AnjanaPham, TonySpace, BrianVittal, Jagadese J.Zaworotko, Michael J.

Journal of the American Chemical Society (2014) 136, 13 5072-5077

a=13.1543(8)Å   b=21.7445(11)Å   c=8.6774(6)Å

α=90.00°   β=90.00°   γ=90.00°

C31H27N3O5Zn

C31H27N3O5Zn

Elsaidi, Sameh K.Mohamed, Mona H.Wojtas, LukaszChanthapally, AnjanaPham, TonySpace, BrianVittal, Jagadese J.Zaworotko, Michael J.

Journal of the American Chemical Society (2014) 136, 13 5072-5077

a=13.4836(11)Å   b=24.964(2)Å   c=8.3985(7)Å

α=90.00°   β=98.878(3)°   γ=90.00°

C57H66Cl7Co2EuN12O13P2S2

C57H66Cl7Co2EuN12O13P2S2

Vadapalli ChandrasekharBalasubramanian Murugesa PandianJagadese J. VittalRodolphe Clérac

Inorganic Chemistry (2009) 48, 1148-1157

a=11.9198(10)Å   b=16.3470(13)Å   c=19.0057(15)Å

α=69.8330(10)°   β=88.4610(10)°   γ=89.6400(10)°

C56H66Cl6Co2N13O17P2S2Tb

C56H66Cl6Co2N13O17P2S2Tb

Vadapalli ChandrasekharBalasubramanian Murugesa PandianJagadese J. VittalRodolphe Clérac

Inorganic Chemistry (2009) 48, 1148-1157

a=11.5880(19)Å   b=11.7744(19)Å   c=15.855(3)Å

α=71.553(3)°   β=86.256(3)°   γ=61.042(2)°

C56H66Cl6Co2DyN13O17P2S2

C56H66Cl6Co2DyN13O17P2S2

Vadapalli ChandrasekharBalasubramanian Murugesa PandianJagadese J. VittalRodolphe Clérac

Inorganic Chemistry (2009) 48, 1148-1157

a=11.4217(18)Å   b=12.1315(19)Å   c=15.649(2)Å

α=84.513(3)°   β=72.507(3)°   γ=62.187(3)°

C56H62Cl6Co2HoN13O15P2S2

C56H62Cl6Co2HoN13O15P2S2

Vadapalli ChandrasekharBalasubramanian Murugesa PandianJagadese J. VittalRodolphe Clérac

Inorganic Chemistry (2009) 48, 1148-1157

a=11.4991(14)Å   b=12.230(2)Å   c=15.7517(19)Å

α=84.047(3)°   β=72.129(2)°   γ=61.980(2)°

C18H24CoN2O10

C18H24CoN2O10

Mohammad Hedayetullah MirSusumu KitagawaJagadese J. Vittal

Inorganic Chemistry (2008) 47, 7728-7733

a=37.552(3)Å   b=13.1257(9)Å   c=9.4044(6)Å

α=90.00°   β=103.218(2)°   γ=90.00°

C82.5H67ClCu4O5P3S4

C82.5H67ClCu4O5P3S4

Theivanayagam C. DeivarajGhee Xiong LaiJagadese J. Vittal

Inorganic Chemistry (2000) 39, 1028-1034

a=12.4413(1)Å   b=15.5443(1)Å   c=20.4637(3)Å

α=94.974(1)°   β=95.976(1)°   γ=100.450(1)°

C43H35CuOP2S

C43H35CuOP2S

Theivanayagam C. DeivarajGhee Xiong LaiJagadese J. Vittal

Inorganic Chemistry (2000) 39, 1028-1034

a=10.2524(3)Å   b=12.9826(4)Å   c=14.5340(4)Å

α=87.723(1)°   β=75.322(1)°   γ=75.978(1)°

C76H66Cu2O2P4S2

C76H66Cu2O2P4S2

Theivanayagam C. DeivarajGhee Xiong LaiJagadese J. Vittal

Inorganic Chemistry (2000) 39, 1028-1034

a=15.2746(2)Å   b=23.2947(2)Å   c=19.0518(3)Å

α=90.00°   β=96.713(1)°   γ=90.00°

C40H36Cu2O2P2S2

C40H36Cu2O2P2S2

Theivanayagam C. DeivarajGhee Xiong LaiJagadese J. Vittal

Inorganic Chemistry (2000) 39, 1028-1034

a=11.5844(3)Å   b=13.2459(3)Å   c=14.3433(3)Å

α=64.019(1)°   β=79.297(1)°   γ=69.426(1)°

C56H62Cl6Co2GdN13O15P2S2

C56H62Cl6Co2GdN13O15P2S2

Vadapalli ChandrasekharBalasubramanian Murugesa PandianRamachandran AzhakarJagadese J. VittalRodolphe Clérac

Inorganic Chemistry (2007) 46, 5140-5142

a=11.493(3)Å   b=12.151(4)Å   c=15.795(4)Å

α=83.390(6)°   β=72.027(5)°   γ=61.945(4)°

C56H70CeCl7N12Ni2O20P2S2

C56H70CeCl7N12Ni2O20P2S2

Vadapalli ChandrasekharBalasubramanian Murugesa PandianRamamoorthy BoomishankarAlexander SteinerJagadese J. VittalAhmad HouriRodolphe Clérac

Inorganic Chemistry (2008) 47, 4918-4929

a=20.841(2)Å   b=11.7806(11)Å   c=18.1005(17)Å

α=90.00°   β=121.333(2)°   γ=90.00°

C56H70Cl7LaN12Ni2O20P2S2

C56H70Cl7LaN12Ni2O20P2S2

Vadapalli ChandrasekharBalasubramanian Murugesa PandianRamamoorthy BoomishankarAlexander SteinerJagadese J. VittalAhmad HouriRodolphe Clérac

Inorganic Chemistry (2008) 47, 4918-4929

a=20.891(2)Å   b=11.7396(12)Å   c=17.9669(18)Å

α=90.00°   β=120.281(2)°   γ=90.00°

C56H70Cl7N12NdNi2O20P2S2

C56H70Cl7N12NdNi2O20P2S2

Vadapalli ChandrasekharBalasubramanian Murugesa PandianRamamoorthy BoomishankarAlexander SteinerJagadese J. VittalAhmad HouriRodolphe Clérac

Inorganic Chemistry (2008) 47, 4918-4929

a=20.9618(18)Å   b=11.7588(11)Å   c=17.9361(16)Å

α=90.00°   β=120.633(2)°   γ=90.00°

C56H70Cl7N12Ni2O20P2S2Sm

C56H70Cl7N12Ni2O20P2S2Sm

Vadapalli ChandrasekharBalasubramanian Murugesa PandianRamamoorthy BoomishankarAlexander SteinerJagadese J. VittalAhmad HouriRodolphe Clérac

Inorganic Chemistry (2008) 47, 4918-4929

a=21.224(2)Å   b=11.8162(12)Å   c=17.9516(18)Å

α=90.00°   β=120.854(2)°   γ=90.00°

C56H70Cl7EuN12Ni2O20P2S2

C56H70Cl7EuN12Ni2O20P2S2

Vadapalli ChandrasekharBalasubramanian Murugesa PandianRamamoorthy BoomishankarAlexander SteinerJagadese J. VittalAhmad HouriRodolphe Clérac

Inorganic Chemistry (2008) 47, 4918-4929

a=20.993(2)Å   b=11.7696(12)Å   c=17.8973(18)Å

α=90.00°   β=120.896(2)°   γ=90.00°

C56H74Cl7N12Ni2O22P2S2Tb

C56H74Cl7N12Ni2O22P2S2Tb

Vadapalli ChandrasekharBalasubramanian Murugesa PandianRamamoorthy BoomishankarAlexander SteinerJagadese J. VittalAhmad HouriRodolphe Clérac

Inorganic Chemistry (2008) 47, 4918-4929

a=20.8515(13)Å   b=11.7155(6)Å   c=17.8249(12)Å

α=90.00°   β=120.809(2)°   γ=90.00°

C56H70Cl7HoN12Ni2O20P2S2

C56H70Cl7HoN12Ni2O20P2S2

Vadapalli ChandrasekharBalasubramanian Murugesa PandianRamamoorthy BoomishankarAlexander SteinerJagadese J. VittalAhmad HouriRodolphe Clérac

Inorganic Chemistry (2008) 47, 4918-4929

a=21.055(3)Å   b=11.7993(13)Å   c=17.816(2)Å

α=90.00°   β=121.178(3)°   γ=90.00°

C56H72Cl7ErN12Ni2O21P2S2

C56H72Cl7ErN12Ni2O21P2S2

Vadapalli ChandrasekharBalasubramanian Murugesa PandianRamamoorthy BoomishankarAlexander SteinerJagadese J. VittalAhmad HouriRodolphe Clérac

Inorganic Chemistry (2008) 47, 4918-4929

a=20.8840(18)Å   b=11.7482(8)Å   c=17.7621(16)Å

α=90.00°   β=121.083(2)°   γ=90.00°

C36H43Cl3Cu3N12O20

C36H43Cl3Cu3N12O20

Jagadese J. VittalXiaobai WangJohn D. Ranford

Inorganic Chemistry (2003) 42, 3390-3392

a=11.46970(10)Å   b=16.25210(10)Å   c=28.09550(10)Å

α=90.00°   β=90.00°   γ=90.00°

C12H16Cl2CuN4O11

C12H16Cl2CuN4O11

Jagadese J. VittalXiaobai WangJohn D. Ranford

Inorganic Chemistry (2003) 42, 3390-3392

a=9.2741(3)Å   b=11.6970(3)Å   c=17.8322(4)Å

α=90.00°   β=90.00°   γ=90.00°

C82H69F6FeHgP5Pt2S2

C82H69F6FeHgP5Pt2S2

Xingling XuS.-W. Audi FongZhaohui LiZhi-Heng LohFeng ZhaoJagadese J. VittalWilliam HendersonSoo-Beng KhooT. S. Andy Hor

Inorganic Chemistry (2002) 41, 6838-6845

a=12.2184(1)Å   b=13.3114(2)Å   c=46.2508(5)Å

α=90.00°   β=94.646(1)°   γ=90.00°

C48H36F12N6O12Pb3

C48H36F12N6O12Pb3

Abdul Malik Puthan PeedikakkalJagadese J. Vittal

Inorganic Chemistry (2010) 49, 10-12

a=8.9740(5)Å   b=12.8997(7)Å   c=13.1607(7)Å

α=67.7710(10)°   β=88.4850(10)°   γ=72.3590(10)°

C52H54F12P4Pt3Se2

C52H54F12P4Pt3Se2

Jeremy S. L. YeoJagadese J. VittalWilliam HendersonT. S. Andy Hor

Inorganic Chemistry (2002) 41, 1194-1198

a=15.8939(2)Å   b=11.8889(1)Å   c=29.2574(1)Å

α=90.00°   β=97.456(1)°   γ=90.00°

C82.5H84Cl5F12O3.5P6Pt3Se2

C82.5H84Cl5F12O3.5P6Pt3Se2

Jeremy S. L. YeoJagadese J. VittalWilliam HendersonT. S. Andy Hor

Inorganic Chemistry (2002) 41, 1194-1198

a=17.693(3)Å   b=23.952(4)Å   c=21.129(4)Å

α=90.00°   β=91.272(5)°   γ=90.00°

C35H44Cl4NO4P

C35H44Cl4NO4P

Praveen KommanaSudha KumaraswamyJ. J. VittalK. C. Kumara Swamy

Inorganic Chemistry (2002) 41, 2356-2363

a=22.4934(11)Å   b=16.9072(8)Å   c=20.7734(10)Å

α=90.00°   β=114.5990(10)°   γ=90.00°

C30H34Cl6NO4P

C30H34Cl6NO4P

Praveen KommanaSudha KumaraswamyJ. J. VittalK. C. Kumara Swamy

Inorganic Chemistry (2002) 41, 2356-2363

a=20.718(11)Å   b=17.009(11)Å   c=19.877(9)Å

α=90.00°   β=103.89(4)°   γ=90.00°

C36H37Cl7NO4P

C36H37Cl7NO4P

Praveen KommanaSudha KumaraswamyJ. J. VittalK. C. Kumara Swamy

Inorganic Chemistry (2002) 41, 2356-2363

a=11.187(3)Å   b=13.151(10)Å   c=26.571(15)Å

α=90.00°   β=90.76(3)°   γ=90.00°

C33.5H38Cl4NO4PS

C33.5H38Cl4NO4PS

Praveen KommanaSudha KumaraswamyJ. J. VittalK. C. Kumara Swamy

Inorganic Chemistry (2002) 41, 2356-2363

a=9.563(2)Å   b=12.993(2)Å   c=15.994(3)Å

α=72.986(18)°   β=78.85(4)°   γ=73.25(3)°

C27H29O2PPd

C27H29O2PPd

Joseph Kok-Peng NgYongxin LiGeok-Kheng TanLip-Lin KohJagadese J. VittalPak-Hing Leung

Inorganic Chemistry (2005) 44, 9874-9886

a=9.5880(7)Å   b=26.560(2)Å   c=9.5467(7)Å

α=90.00°   β=90.00°   γ=90.00°

C36H39ClNPPd

C36H39ClNPPd

Joseph Kok-Peng NgYongxin LiGeok-Kheng TanLip-Lin KohJagadese J. VittalPak-Hing Leung

Inorganic Chemistry (2005) 44, 9874-9886

a=11.7890(7)Å   b=13.1284(7)Å   c=21.3695(12)Å

α=90.00°   β=91.7790(10)°   γ=90.00°

C44H46Cl4P2Pd2

C44H46Cl4P2Pd2

Joseph Kok-Peng NgYongxin LiGeok-Kheng TanLip-Lin KohJagadese J. VittalPak-Hing Leung

Inorganic Chemistry (2005) 44, 9874-9886

a=8.7896(5)Å   b=8.9429(5)Å   c=15.3868(9)Å

α=106.3120(10)°   β=93.1130(10)°   γ=113.1160(10)°

C24H36Cl2N2Pd2

C24H36Cl2N2Pd2

Yongxin LiS. SelvaratnamJagadese J. VittalPak-Hing Leung

Inorganic Chemistry (2003) 42, 3229-3236

a=11.7472(2)Å   b=15.9525(3)Å   c=14.9517(3)Å

α=90.00°   β=109.307(1)°   γ=90.00°

C29H39N2O4PPd

C29H39N2O4PPd

Yongxin LiS. SelvaratnamJagadese J. VittalPak-Hing Leung

Inorganic Chemistry (2003) 42, 3229-3236

a=11.5788(7)Å   b=15.6471(9)Å   c=16.0232(9)Å

α=90.00°   β=90.00°   γ=90.00°

C17H26N2O2Pd

C17H26N2O2Pd

Yongxin LiS. SelvaratnamJagadese J. VittalPak-Hing Leung

Inorganic Chemistry (2003) 42, 3229-3236

a=8.0740(15)Å   b=8.6042(16)Å   c=24.7412(45)Å

α=90.00°   β=90.00°   γ=90.00°

C24H31ClNPPd

C24H31ClNPPd

Yongxin LiS. SelvaratnamJagadese J. VittalPak-Hing Leung

Inorganic Chemistry (2003) 42, 3229-3236

a=8.8274(1)Å   b=12.5733(2)Å   c=21.7013(2)Å

α=90.00°   β=90.00°   γ=90.00°

C27H33Cl4Cu3KN6O22

C27H33Cl4Cu3KN6O22

Xiaobai WangJagadese J. Vittal

Inorganic Chemistry (2003) 42, 5135-5142

a=20.9192(3)Å   b=27.4692(2)Å   c=7.2465(1)Å

α=90.00°   β=90.00°   γ=90.00°