Crystallography Open Database

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Searching journal of publication like 'Chemical Communications' volume of publication is 48

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7108294 CIFAg88.445 Al96 O384 Si96F m -3 c24.67046; 24.67046; 24.67046
90; 90; 90
15015.2Thomas Carey; Avelino Corma; Fernando Rey; Chiu C. Tang; Joseph A. Hriljac; Paul A. Anderson
The effect of extra framework species on the intrinsic negative thermal expansion property of zeolites with the LTA topology
Chem.Commun., 2012, 48, 5829
7108295 CIFAg87.934 Al96 O384 Si96F m -3 c24.67394; 24.67394; 24.67394
90; 90; 90
15021.6Thomas Carey; Avelino Corma; Fernando Rey; Chiu C. Tang; Joseph A. Hriljac; Paul A. Anderson
The effect of extra framework species on the intrinsic negative thermal expansion property of zeolites with the LTA topology
Chem.Commun., 2012, 48, 5829
7108296 CIFAg87.704 Al96 O384 Si96F m -3 c24.67524; 24.67524; 24.67524
90; 90; 90
15024Thomas Carey; Avelino Corma; Fernando Rey; Chiu C. Tang; Joseph A. Hriljac; Paul A. Anderson
The effect of extra framework species on the intrinsic negative thermal expansion property of zeolites with the LTA topology
Chem.Commun., 2012, 48, 5829
7108297 CIFAg88.174 Al96 O384 Si96F m -3 c24.67623; 24.67623; 24.67623
90; 90; 90
15025.8Thomas Carey; Avelino Corma; Fernando Rey; Chiu C. Tang; Joseph A. Hriljac; Paul A. Anderson
The effect of extra framework species on the intrinsic negative thermal expansion property of zeolites with the LTA topology
Chem.Commun., 2012, 48, 5829
7108298 CIFAg86.99 Al96 O384 Si96F m -3 c24.67687; 24.67687; 24.67687
90; 90; 90
15026.9Thomas Carey; Avelino Corma; Fernando Rey; Chiu C. Tang; Joseph A. Hriljac; Paul A. Anderson
The effect of extra framework species on the intrinsic negative thermal expansion property of zeolites with the LTA topology
Chem.Commun., 2012, 48, 5829
7108299 CIFAg87.11 Al96 O384 Si96F m -3 c24.67781; 24.67781; 24.67781
90; 90; 90
15028.7Thomas Carey; Avelino Corma; Fernando Rey; Chiu C. Tang; Joseph A. Hriljac; Paul A. Anderson
The effect of extra framework species on the intrinsic negative thermal expansion property of zeolites with the LTA topology
Chem.Commun., 2012, 48, 5829
7108300 CIFAg87.11 Al96 O384 Si96F m -3 c24.67885; 24.67885; 24.67885
90; 90; 90
15030.5Thomas Carey; Avelino Corma; Fernando Rey; Chiu C. Tang; Joseph A. Hriljac; Paul A. Anderson
The effect of extra framework species on the intrinsic negative thermal expansion property of zeolites with the LTA topology
Chem.Commun., 2012, 48, 5829
7108301 CIFAg87.674 Al96 O384 Si96F m -3 c24.67956; 24.67956; 24.67956
90; 90; 90
15031.8Thomas Carey; Avelino Corma; Fernando Rey; Chiu C. Tang; Joseph A. Hriljac; Paul A. Anderson
The effect of extra framework species on the intrinsic negative thermal expansion property of zeolites with the LTA topology
Chem.Commun., 2012, 48, 5829
7108302 CIFAg87.498 Al96 O384 Si96F m -3 c24.67992; 24.67992; 24.67992
90; 90; 90
15032.5Thomas Carey; Avelino Corma; Fernando Rey; Chiu C. Tang; Joseph A. Hriljac; Paul A. Anderson
The effect of extra framework species on the intrinsic negative thermal expansion property of zeolites with the LTA topology
Chem.Commun., 2012, 48, 5829
7108303 CIFAg87.048 Al96 O384 Si96F m -3 c24.68011; 24.68011; 24.68011
90; 90; 90
15032.8Thomas Carey; Avelino Corma; Fernando Rey; Chiu C. Tang; Joseph A. Hriljac; Paul A. Anderson
The effect of extra framework species on the intrinsic negative thermal expansion property of zeolites with the LTA topology
Chem.Commun., 2012, 48, 5829
7108304 CIFO48 Si24P m -3 m11.85317; 11.85317; 11.85317
90; 90; 90
1665.34Thomas Carey; Avelino Corma; Fernando Rey; Chiu C. Tang; Joseph A. Hriljac; Paul A. Anderson
The effect of extra framework species on the intrinsic negative thermal expansion property of zeolites with the LTA topology
Chem.Commun., 2012, 48, 5829
7108305 CIFO48 Si24P m -3 m11.85352; 11.85352; 11.85352
90; 90; 90
1665.49Thomas Carey; Avelino Corma; Fernando Rey; Chiu C. Tang; Joseph A. Hriljac; Paul A. Anderson
The effect of extra framework species on the intrinsic negative thermal expansion property of zeolites with the LTA topology
Chem.Commun., 2012, 48, 5829
7108306 CIFO48 Si24P m -3 m11.85502; 11.85502; 11.85502
90; 90; 90
1666.12Thomas Carey; Avelino Corma; Fernando Rey; Chiu C. Tang; Joseph A. Hriljac; Paul A. Anderson
The effect of extra framework species on the intrinsic negative thermal expansion property of zeolites with the LTA topology
Chem.Commun., 2012, 48, 5829
7108307 CIFO48 Si24P m -3 m11.85722; 11.85722; 11.85722
90; 90; 90
1667.05Thomas Carey; Avelino Corma; Fernando Rey; Chiu C. Tang; Joseph A. Hriljac; Paul A. Anderson
The effect of extra framework species on the intrinsic negative thermal expansion property of zeolites with the LTA topology
Chem.Commun., 2012, 48, 5829
7108308 CIFO48 Si24P m -3 m11.85799; 11.85799; 11.85799
90; 90; 90
1667.37Thomas Carey; Avelino Corma; Fernando Rey; Chiu C. Tang; Joseph A. Hriljac; Paul A. Anderson
The effect of extra framework species on the intrinsic negative thermal expansion property of zeolites with the LTA topology
Chem.Commun., 2012, 48, 5829
7108309 CIFO48 Si24P m -3 m11.86027; 11.86027; 11.86027
90; 90; 90
1668.34Thomas Carey; Avelino Corma; Fernando Rey; Chiu C. Tang; Joseph A. Hriljac; Paul A. Anderson
The effect of extra framework species on the intrinsic negative thermal expansion property of zeolites with the LTA topology
Chem.Commun., 2012, 48, 5829
7108310 CIFO48 Si24P m -3 m11.86017; 11.86017; 11.86017
90; 90; 90
1668.29Thomas Carey; Avelino Corma; Fernando Rey; Chiu C. Tang; Joseph A. Hriljac; Paul A. Anderson
The effect of extra framework species on the intrinsic negative thermal expansion property of zeolites with the LTA topology
Chem.Commun., 2012, 48, 5829
7108311 CIFO48 Si24P m -3 m11.86345; 11.86345; 11.86345
90; 90; 90
1669.68Thomas Carey; Avelino Corma; Fernando Rey; Chiu C. Tang; Joseph A. Hriljac; Paul A. Anderson
The effect of extra framework species on the intrinsic negative thermal expansion property of zeolites with the LTA topology
Chem.Commun., 2012, 48, 5829
7108312 CIFO48 Si24P m -3 m11.86608; 11.86608; 11.86608
90; 90; 90
1670.79Thomas Carey; Avelino Corma; Fernando Rey; Chiu C. Tang; Joseph A. Hriljac; Paul A. Anderson
The effect of extra framework species on the intrinsic negative thermal expansion property of zeolites with the LTA topology
Chem.Commun., 2012, 48, 5829
7108313 CIFO48 Si24P m -3 m11.86965; 11.86965; 11.86965
90; 90; 90
1672.3Thomas Carey; Avelino Corma; Fernando Rey; Chiu C. Tang; Joseph A. Hriljac; Paul A. Anderson
The effect of extra framework species on the intrinsic negative thermal expansion property of zeolites with the LTA topology
Chem.Commun., 2012, 48, 5829
7108314 CIFO48 Si24P m -3 m11.8725; 11.8725; 11.8725
90; 90; 90
1673.5Thomas Carey; Avelino Corma; Fernando Rey; Chiu C. Tang; Joseph A. Hriljac; Paul A. Anderson
The effect of extra framework species on the intrinsic negative thermal expansion property of zeolites with the LTA topology
Chem.Commun., 2012, 48, 5829
7108315 CIFC116 H128 Cl6 Gd6 N48 O66R -3 :H30.9426; 30.9426; 35.5088
90; 90; 120
29442.9Cheng He; Xiao Wu; Jichuan Kong; Tao liu; Xiaolin Zhang; Chunying Duan
A hexanuclear gadolinium-organic octahedron as a sensitive MRI contrast agent for selectively imaging glucosamine in aqueous media
Chem.Commun., 2012, 48, 9290
7108316 CIFC88 H184 Br16 Gd N5 O18 Re4C 1 c 118.171; 27.492; 27.062
90; 91.63; 90
13514Jose Martinez-Lillo; Laura Canadillas-Delgado; Joan Cano; Francesc Lloret; Miguel Julve; J.Faus
A heteropentanuclear oxalato-bridged [ReIV4GdIII] complex: synthesis, crystal structure and magnetic properties Attachment c.- Revised_CIF
Chem.Commun., 2012, 48, 9242
7108317 CIFC140 H152 F48 N8 O20 P8 S8P -113.9148; 16.0786; 21.8368
93.109; 104.124; 90.629
4729.4Cheng Wang; Dennis Cao; Albert Fahrenbach; Sergio Grunder; Sanjeev Dey; Amy Sarjeant; J.Stoddart
The effects of conformation on the noncovalent bonding interactions in a bistable donor-acceptor [3]catenane
Chem.Commun., 2012, 48, 9245
7108318 CIFC28 H24 F6 I2 N6 O6 S2P 1 21/c 110.2; 28.2919; 12.0816
90; 101.213; 90
3419.92Florian Kniep; Laxmidhar Rout; Sebastian M. Walter; Heide K. V. Bensch; Stefan H. Jungbauer; Eberhardt Herdtweck; Stefan M. Huber
5-Iodo-1,2,3-triazolium-based multidentate halogen-bond donors as activating reagents
Chem.Commun., 2012, 48, 9299
7108319 CIFC160.5 H225.1 Cl4 Mn10 N5.5 O36.8C 1 2/c 137.8284; 27.8091; 37.6849
90; 114.965; 90
35939Stephanie M. Taylor; Ruaraidh D. McIntosh; Julien Reze; Scott J. Dalgarno; Euan K. Brechin
Oxacalix[3]arene-supported supertetrahedron
Chemical Communications, 2012, 48, 9263-9265
7108320 CIFC16 H14 N2 O3P 21 21 219.8802; 10.1254; 14.573
90; 90; 90
1457.9Lei Liu; Hongli Ma; Yumei Xiao; Fengpei Du; Zhaohai Qin; Nan Li; Bin Fu
Highly enantioselective Friedel-Crafts alkylation of indoles and pyrrole with beta,gamma-unsaturated alpha-ketoesters catalyzed by heteroarylidene-tethered bis(oxazoline) copper complexes
Chem.Commun., 2012, 48, 9281
7108321 CIFC31 H37 B F4 N2 O3P 1 21 111.9648; 11.3421; 12.6719
90; 117.419; 90
1526.48Stephen G. Davies; James A. Lee; Paul M. Roberts; Rushabh S. Shah; James E. Thomson
(‒)-(S)-Nakinadine B: first asymmetric synthesis
Chem.Commun., 2012, 48, 9236
7108322 CIFC79 H79 N9 O42 Zn9I 2 323.3024; 23.3024; 23.3024
90; 90; 90
12653.2Hui Yang; Fei Wang; Yao Kang; Jian Zhang
Chiral assembly of dodecahedral cavities into porous metal-organic frameworks
Chem.Commun., 2012, 48, 9424
7108323 CIFC156 H162 Cu3 N14 O86 Zn15I 2 323.3483; 23.3483; 23.3483
90; 90; 90
12728.2Hui Yang; Fei Wang; Yao Kang; Jian Zhang
Chiral assembly of dodecahedral cavities into porous metal-organic frameworks
Chem.Commun., 2012, 48, 9424
7108324 CIFC64 H82 N14 O2 Si2P 111.104; 11.394; 13.717
102.68; 113.15; 90.01
1549.6Zu-Li Wang; Liang Zhao; Mei-Xiang Wang
C/aryl-C/alkyl bond formation from Cu(ClO4)2-mediated oxidative cross coupling reaction between arenes and alkyllithium reagents through structurally well-defined Ar-Cu(III) intermediates
Chem.Commun., 2012, 48, 9418
7108325 CIFC41 H27 Cl6 N O14 Zn2R -3 :H36.061; 36.061; 24.163
90; 90; 120
27212Phuong V. Dau; Kristine K. Tanabe; Seth M. Cohen
Functional group effects on metal-organic framework topology
Chem.Commun., 2012, 48, 9370
7108326 CIFC6 H21 B10 PP 1 21/c 110.652; 10.6114; 13.2551
90; 112.994; 90
1379.22Evamarie Hey-Hawkins; Peter Lonnecke; Anika Kreienbrink; Matthias Findeisen
Endocyclic P-P bond cleavage in carbaborane-substituted 1,2-diphosphetane ‒ A new route to secondary phosphinocarbaboranes
Chem.Commun., 2012, 48, 9385
7108327 CIFC18 H37 B10 N P2P b c a11.8524; 19.2981; 21.5647
90; 90; 90
4932.5Evamarie Hey-Hawkins; Peter Lonnecke; Anika Kreienbrink; Matthias Findeisen
Endocyclic P-P bond cleavage in carbaborane-substituted 1,2-diphosphetane ‒ A new route to secondary phosphinocarbaboranes
Chem.Commun., 2012, 48, 9385
7108328 CIFC21 H12 F3 N O3P -16.2911; 11.5341; 12.3473
109.076; 99.931; 91.579
830.66Virendra Kumar; Ajit Kumar; Uzra Diwan; K. K. Upadhyay
Uncovering the true mechanism of optical detection of HSO4‒ in water by Schiff-base receptors - hydrolysis vs. hydrogen bonding
Chem.Commun., 2012, 48, 9540
7108329 CIFC40 H52 Cl4 F24 N4 O8 P4 Rh2P -113.031; 14.865; 17.6
80.155; 72.792; 66.233
2975.2Noemie Elgrishi; Thomas Teets; Matthew B. Chambers; Daniel G. Nocera
Stability-enhanced hydrogen-evolving dirhodium photocatalysts through ligand modification
Chem.Commun., 2012, 48, 9474
7108330 CIFC16 H26 B F4 I2 Ir N4 O3P n a 2119.555; 10.6594; 11.3757
90; 90; 90
2371.2Manuel Iglesias; Maria Perez-Nicolas; Pablo J. Sanz Miguel; Victor Polo; Francisco J. Fernandez-Alvarez; Jesus J. Perez-Torrente; Luis A. Oro
A synthon for a 14-electron Ir(III) species: catalyst for highly selective beta-(Z) hydrosilylation of terminal alkynes
Chem.Commun., 2012, 48, 9480
7108331 CIFC22 H28 N O7 PP 1 21 111.8192; 7.6891; 12.4699
90; 101.026; 90
1112.33Masashi Shibata; Masahiro Ikeda; Kazuki Motoyama; Yoshihiro Miyake; Yoshiaki Nishibayashi
Enantioselective alkylation of beta-keto phosphonates by direct use of diaryl methanols as electrophiles
Chem.Commun., 2012, 48, 9528
7108332 CIFC17 H23 N O4 SP b c a12.491; 9.1019; 30.464
90; 90; 90
3463.5Ryan M. Gorman; Marc A. Little; James A. Morris; Visuvanathar Sridharan
Rhodium-catalysed isomerisation/formal 1,3-dipolar cycloaddition cascades to fused-ring heterocycles
Chem.Commun., 2012, 48, 9537
7108333 CIFC44 H69 Al P2P -110.4075; 12.0576; 18.1948
95.601; 94.732; 109.134
2130.84Steffi Roters; Alexander Hepp; J. Chris Slootweg; Koop Lammertsma; Werner Uhl
Alkynide and acetonitrile activation by strained AlPC2 heterocycles
Chem.Commun., 2012, 48, 9616
7108334 CIFC52 H86 Al N P2P 1 21/n 116.0252; 22.6102; 16.4534
90; 116.003; 90
5358.1Steffi Roters; Alexander Hepp; J. Chris Slootweg; Koop Lammertsma; Werner Uhl
Alkynide and acetonitrile activation by strained AlPC2 heterocycles
Chem.Commun., 2012, 48, 9616
7108335 CIFC60 H104 Al N P2C 1 2/c 129.4289; 16.769; 24.935
90; 99.663; 90
12130.7Steffi Roters; Alexander Hepp; J. Chris Slootweg; Koop Lammertsma; Werner Uhl
Alkynide and acetonitrile activation by strained AlPC2 heterocycles
Chem.Commun., 2012, 48, 9616
7108336 CIFC54 H80 Al F2 N P2P -112.029; 13.5846; 18.2054
76.013; 85.932; 63.74
2586.59Steffi Roters; Alexander Hepp; J. Chris Slootweg; Koop Lammertsma; Werner Uhl
Alkynide and acetonitrile activation by strained AlPC2 heterocycles
Chem.Commun., 2012, 48, 9616
7108337 CIFC44 H68 Al2 P2P 1 21/c 117.8586; 10.4392; 24.8146
90; 104.841; 90
4471.8Steffi Roters; Alexander Hepp; J. Chris Slootweg; Koop Lammertsma; Werner Uhl
Alkynide and acetonitrile activation by strained AlPC2 heterocycles
Chem.Commun., 2012, 48, 9616
7108338 CIFC44 H68 Al2 P2P 1 21/c 117.9208; 10.7839; 24.2169
90; 106.111; 90
4496.26Steffi Roters; Alexander Hepp; J. Chris Slootweg; Koop Lammertsma; Werner Uhl
Alkynide and acetonitrile activation by strained AlPC2 heterocycles
Chem.Commun., 2012, 48, 9616
7108339 CIFC30 H45 Al P2P 21 21 2112.1692; 16.6042; 30.194
90; 90; 90
6101Steffi Roters; Alexander Hepp; J. Chris Slootweg; Koop Lammertsma; Werner Uhl
Alkynide and acetonitrile activation by strained AlPC2 heterocycles
Chem.Commun., 2012, 48, 9616
7108340 CIFC51 H38 F12 N6 O P2 RuP 1 21/n 112.5876; 15.9629; 23.762
90; 101.314; 90
4681.82Erin Wachter; David K. Heidary; Brock S. Howerton; Sean Parkin; Edith C. Glazer
Light-activated ruthenium complexes photobind DNA and are cytotoxic in the photodynamic therapy window
Chem.Commun., 2012, 48, 9649
7108341 CIFC11 H9 N2 Ni S2P 1 21/n 17.2464; 10.7305; 14.4456
90; 94.265; 90
1120.14Amarnath Bheemaraju; Jeffrey Beattie; Richard Lord; Philip Martin; Stanislav Groysman
Carbon disulfide binding at dinuclear and mononuclear nickel complexes ligated by a redox-active ligand: iminopyridine serving as an accumulator of redox equivalents for the activation of heteroallenes
Chem.Commun., 2012, 48, 9595
7108342 CIFC21 H24 N2 NiC 1 2/c 125.286; 7.3278; 21.348
90; 120.423; 90
3410.9Amarnath Bheemaraju; Jeffrey Beattie; Richard Lord; Philip Martin; Stanislav Groysman
Carbon disulfide binding at dinuclear and mononuclear nickel complexes ligated by a redox-active ligand: iminopyridine serving as an accumulator of redox equivalents for the activation of heteroallenes
Chem.Commun., 2012, 48, 9595
7108343 CIFC14 H12 N2 Ni S2P -18.7358; 9.5434; 17.0075
98.21; 98.742; 96.563
1373.6Amarnath Bheemaraju; Jeffrey Beattie; Richard Lord; Philip Martin; Stanislav Groysman
Carbon disulfide binding at dinuclear and mononuclear nickel complexes ligated by a redox-active ligand: iminopyridine serving as an accumulator of redox equivalents for the activation of heteroallenes
Chem.Commun., 2012, 48, 9595

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