30 октября 2021 г. 
Oxygen ionic transport in LaInO3 and LaIn0.5Zn0.5O2.75 perovskites: Theory and experiment.

A. V. Egorova, Ye. A. Morkhova, A. A. Kabanov, K. G. Belova, I. E. Animitsa, V. A. Blatov, A. A. Pimenov, D. V. Korona Oxygen ionic transport in LaInO3 and LaIn0.5Zn0.5O2.75 perovskites: Theory and experiment. Solid State Ionics, 2021. doi: 10.1016/j.ssi.2021.115790 IF 3.785

 
20211110-01 27 октября 2021 г. 
Visualization and Quantification of Geometric Diversity in Metal–Organic Frameworks.

Thomas C. Nicholas, Eugeny V. Alexandrov, Vladislav A. Blatov, Alexander P. Shevchenko, Davide M. Proserpio, Andrew L. Goodwin, and Volker L. Deringer Visualization and Quantification of Geometric Diversity in Metal–Organic Frameworks. Chemistry of Materials, 2021, 33 (21), 8289–8300. doi: 10.1021/acs.chemmater.1c02439 IF 9.811

 
PUB20210902 2 сентября 2021 г. 
An Amino-Decorated Self-Catenated Metal–Organic Framework for Efficient Capture and Conversion of CO2.

Ting Zhou, Shuang Liu, Eugeny V. Alexandrov, Huadong Guo, Pan Gao, Shengyong Mi, Qijin Su, Xianmin Guo, and Ting Hu An Amino-Decorated Self-Catenated Metal–Organic Framework for Efficient Capture and Conversion of CO2. Crystal Growth & Design, 2021, 21 (10), 5724–5730. doi: 10.1021/acs.cgd.1c00564 IF 4.076

 
PUB20210806 6 августа 2021 г. 
Computational Search for Novel Zn-Ion Conductors – A Crystallochemical, Bond Valence, and Density Functional Study.

Yelizaveta A. Morkhova, Manuel Rothenberger, Tilmann Leisegang, Stefan Adams, Vladislav A. Blatov, and Artem A. Kabanov Computational Search for Novel Zn-Ion Conductors – A Crystallochemical, Bond Valence, and Density Functional Study. The Journal of Physical Chemistry C, 2021, 125 (32), 17590–17599. doi: 10.1021/acs.jpcc.1c02984 IF 4.126

 
2021072601 20 июля 2021 г. 
2.21 — Topology: ToposPro.

Vladislav A. Blatov, Eugeny V. Alexandrov, Alexander P. Shevchenko, 2.21 - Topology: ToposPro. In Comprehensive Coordination Chemistry III (Third Edition). Elsevier, 2021, 389–412. doi: 10.1016/B978-0-12-409547-2.14576-7

 
20210501-01 15 апреля 2021 г. 
Crystal and electronic structure engineering of tin monoxide by external pressure.

Kun Li, Junjie Wang, Vladislav A. Blatov, Yutong Gong, Naoto Umezawa, Tomofumi Tada, Hideo Hosono & Artem R. Oganov Crystal and electronic structure engineering of tin monoxide by external pressure. Journal of Advanced Ceramics, 2021, 10 (3), 565–577. doi: 10.1007/s40145-021-0458-1 IF 2.889

 
20210202-03 27 января 2021 г. 
High-throughput systematic topological generation of low-energy carbon allotropes.

Vladislav A. Blatov, Changhao Yang, Dingyi Tang, Qingfeng Zeng, Andrey A. Golov & Artem A. Kabanov High-throughput systematic topological generation of low-energy carbon allotropes. npj Computational Materials, 2021, 7, 15. doi:10.1038/s41524-021-00491-y IF 11.282

 
20210107-05 1 декабря 2020 г. 
Phase Relations of Iron Carbides Fe2C, Fe3C, and Fe7C3 at the Earth’s Core Pressures and Temperatures.

N.E. Sagatov, P.N. Gavryushkin, I.V. Medrish, T.M. Inerbaev, K.D. Litasov Phase Relations of Iron Carbides Fe2C, Fe3C, and Fe7C3 at the Earth’s Core Pressures and Temperatures. Russian Geology and Geophysics, 2020, 61 (12), 1345–1353. doI: 10.15372/RGG2019146 IF 1.150

 
PUB20201118 18 ноября 2020 г. 
CrystalGrower: A Generic Computer Program for Monte Carlo Modelling of Crystal Growth.

Michael William Anderson, Adam R Hill, James T Gebbie, Pablo Cubillas, Mollie Trueman, Nathan de Bruyn, Zulaikha al Harthi, Rachel Pooley, Martin Attfield, Vladislav A. Blatov, Davide M Proserpio, Julian Gale, Duncan Akporiaye and Bjørnar Arstad CrystalGrower: A Generic Computer Program for Monte Carlo Modelling of Crystal Growth. Chemical Science, 2021, 12 (3), 1126–1146. doi: 10.1039/D0SC05017B IF 9.346

 
PUB20201021 21 октября 2020 г. 
Sorption of multivalent cations on titanosilicate obtained from natural raw materials. The mechanism and thermodynamics of sorption.

Igor А. Perovskiy, Nataliya Y. Yanicheva, Valery V. Stalyugin, Taras L. Panikorovskii, Andrey A. Golov Sorption of multivalent cations on titanosilicate obtained from natural raw materials. The mechanism and thermodynamics of sorption. Microporous and Mesoporous Materials, 2021, 311, 110716. doi: 10.1016/j.micromeso.2020.110716 IF 4.551

 
20200826-01 21 июля 2020 г. 
Combined DFT and geometrical–topological analysis of Li-ion conductivity in complex hydrides.

Valerio Gulino, Anna Wolczyk, Andrey A. Golov, Roman A. Eremin, Mauro Palumbo, Carlo Nervi, Vladislav A. Blatov, Davide M. Proserpio and Marcello Baricco Combined DFT and geometrical–topological analysis of Li-ion conductivity in complex hydrides. Inorganic Chemistry Frontiers, 2020, 7 (17), 3115–3125. doi: 10.1039/D0QI00577K IF 5.934

 
PUB2020071601 16 июля 2020 г. 
Topology versus porosity: what can reticular chemistry tell us about free space in metal-organic frameworks?.

Alexander P. Shevchenko, Eugeny V. Alexandrov, Andrey A. Golov, Olga A. Blatova, Alexandra S. Duyunova and Vladislav A. Blatov Topology versus porosity: what can reticular chemistry tell us about free space in metal-organic frameworks? Chemical Communications, 2020, 56 (67), 9616-9619. doi: 10.1039/D0CC04004E IF 6.164

 
PUB20200620 20 июня 2020 г. 
Two d10 metal coordination polymers as dual functional luminescent probes for sensing of Fe3+ ions and acetylacetone with high selectivity and sensitivity.

Miao-Miao Fu, Yun-Hua Qu, Vladislav A. Blatov, Yue-Hua Li, Guang-Hua Cui Two d10 metal coordination polymers as dual functional luminescent probes for sensing of Fe3+ ions and acetylacetone with high selectivity and sensitivity. Journal of Solid State Chemistry, 2020, 289, 121460. doi: 10.1016/j.jssc.2020.121460 IF 2.291

 
20200622-02 8 мая 2020 г. 
Nanoporous materials with predicted zeolite topologies.

Vladislav A. Blatov, Olga A. Blatova, Frits Daeyaert and Michael W. Deem Nanoporous materials with predicted zeolite topologies. RSC Advances, 2020, 10, 17760–17767. doi: 10.1039/D0RA01888K IF 3.168

 
PUB20200422 22 апреля 2020 г. 
Monolayer self‐organization of cyclodextrins on carbon surface.

Egor S. Bykov, Kirill A. Kopytin, Lyudmila A. Onuchak, Vladislav A. Blatov Monolayer self‐organization of cyclodextrins on carbon surface. Journal of the Chinese Chemical Society, 2020, 67 (10), 1778-1782. doi: 10.1002/jccs.201900544 IF 1.188

 
untitled 18 апреля 2020 г. 
Phase Diagrams of Iron Hydrides at Pressures of 100–400 GPa and Temperatures of 0–5000 K.

D.N. Sagatova, P.N. Gavryushkin, N.E. Sagatov, I. V. Medrish, K.D. Litasov Phase Diagrams of Iron Hydrides at Pressures of 100–400 GPa and Temperatures of 0–5000 K. JETP Letters, 2020, 111, 145–150. doi: 10.1134/S0021364020030108 IF 1.412

 
PUB20200402 2 апреля 2020 г. 
The CSD and knowledge databases: from answers to questions.

Alexander P. Shevchenko, Roman A. Eremin and Vladislav A. Blatov The CSD and knowledge databases: from answers to questions. CrystEngComm, 2020, 22 (43), 7298–7307. doi: 10.1039/D0CE00265H IF 3.382

 
20200409-03 1 апреля 2020 г. 
Structure variations within RSi2 and R2TSi3 silicides. Part I. Structure overview.

M. Nentwich, M. Zschornak, M. Sonntag, R. Gumeniuk, S. Gemming, T. Leisegang and D. C. Meyer Structure variations within RSi2 and R2TSi3 silicides. Part I. Structure overview. Acta Crystallographica Section B, 2020, 76 (2), 177–200. doi: 10.1107/S2052520620001043 IF 6.732

 
20200214-01 15 января 2020 г. 
A new quasicrystal approximant in the Sc–Pd system: from topological data mining to the bench.

Pavlo Solokha, Roman A. Eremin, Tilmann Leisegang, Davide M. Proserpio, Tatiana Akhmetshina, Albina Gurskaya, Adriana Saccone, Serena De Negri A new quasicrystal approximant in the Sc–Pd system: from topological data mining to the bench. Chemistry of Materials, 2020, 32 (3), 1064–1079. doi: 10.1021/acs.chemmater.9b03767 IF 10.159

 
20200617-01 9 января 2020 г. 
Crystal structure of NaFeO2 and NaAlO2 and their correlation with ionic conductivity.

Proskurnina N.V., Voronin V.I., Shekhtman G.S., Kabanova N. A. Crystal structure of NaFeO2 and NaAlO2 and their correlation with ionic conductivity. Ionics, 2020, 26 (6), 2917–2926. doi:10.1007/s11581-019-03387-6 IF 2.289

 
20200117-01 19 декабря 2019 г. 
Perceiving Zeolite Self-Assembly: a Combined Top-Down and Bottom-Up Approach within the Tiling Model.

Andrey A. Golov, Olga A. Blatova, Vladislav A. Blatov Perceiving Zeolite Self-Assembly: a Combined Top-Down and Bottom-Up Approach within the Tiling Model. The Journal of Physical Chemistry C, 2020, 124, 2, 1523-1528. doi: 10.1021/acs.jpcc.9b10514 IF 4.309

 
20200202-02 18 ноября 2019 г. 
Ionic Transport in Doped Solid Electrolytes by Means of DFT Modeling and ML Approaches: A Case Study of Ti-Doped KFeO2.

Roman A. Eremin, Pavel N. Zolotarev, Andrey A. Golov, Nadezhda A. Nekrasova, Tilmann Leisegang Ionic Transport in Doped Solid Electrolytes by Means of DFT Modeling and ML Approaches: A Case Study of Ti-Doped KFeO2. The Journal of Physical Chemistry C, 2019. doi: 10.1021/acs.jpcc.9b07535 IF 4.484

 
A1_11224_Cover page 1.indd 17 октября 2019 г. 
From clusters to crystals: scale chemistry of intermetallics.

Vladimir Ya. Shevchenko, Inna V. Medrish, Gregory D. Ilyushin, Vladislav A. Blatov From clusters to crystals: scale chemistry of intermetallics. Structural Chemistry, 2019, 30 (6), 2015–2027. doi: 10.1007/s11224-019-01427-5 IF 1.624

 
20191107-01 7 октября 2019 г. 
A universal algorithm for finding the shortest distance between systems of points.

I. A. Blatov, E. V. Kitaeva, A. P. Shevchenko and V. A. Blatov A universal algorithm for finding the shortest distance between systems of points. Acta Crystallographica Section A, 2019, 75 (6), 827-832. doi:10.1107/S2053273319011628 IF 4.647

 
20191015-01 23 сентября 2019 г. 
Anisotropy of Elastic Properties of Metal–Organic Frameworks and the Breathing Phenomenon.

Eugeny V. Alexandrov, Andrey V. Goltsev, Roman A. Eremin, Vladislav A. Blatov Anisotropy of Elastic Properties of Metal–Organic Frameworks and the Breathing Phenomenon. The Journal of Physical Chemistry C, 2019, 123, 40, 24651-24658. doi: 10.1021/acs.jpcc.9b08434 IF 4.484

 
20191001-03 23 сентября 2019 г. 
Modeling of Ionic Conductivity in Inorganic Compounds with Multivalent Cations.

E. A. Morkhova, A. A. Kabanov, V. A. Blatov Modeling of Ionic Conductivity in Inorganic Compounds with Multivalent Cations. Russian Journal of Electrochemistry, 2019, 55 (8), 762–777. doi: 10.1134/S102319351908010X IF 1.043

 
20191020-01 16 августа 2019 г. 
From Topological Descriptors to Expert Systems: A Route to Predictable Materials.

Alexander P. Shevchenko, Eugeny V. Alexandrov, Olga A. Blatova, Denis E. Yablokov, Vladislav A. Blatov From Topological Descriptors to Expert Systems: A Route to Predictable Materials. In Materials Informatics: Methods, Tools and Applications, 107–147. doi: 10.1002/9783527802265.ch4

 
20191007-01 4 августа 2019 г. 
Diverse π–π stacking motifs modulate electrical conductivity in tetrathiafulvalene-based metal–organic frameworks.

Lilia Xie, Eugeny V. Alexandrov, Grigorii Skorupskii, Davide M Proserpio and Mircea Dinca Diverse π–π stacking motifs modulate electrical conductivity in tetrathiafulvalene-based metal–organic frameworks. Chemical Science, 2019, 10 (37), 8558-8565. doi:10.1039/C9SC03348C IF 9.556

 
20190925-02 25 июля 2019 г. 
Two Novel Self-Catenated Metal-Organic Frameworks with Large Accessible Channels Obtained by Mixed-Ligand Strategy: Adsorption of Dichromate and Ln3+-Post Synthetic Modification.

Yingying Sun, Ruidan Ma, Fengyuan Wang, Xianmin Guo, Shaowen Sun, Huadong Guo, Eugeny V. Alexandrov Two Novel Self-Catenated Metal-Organic Frameworks with Large Accessible Channels Obtained by Mixed-Ligand Strategy: Adsorption of Dichromate and Ln3+-Post Synthetic Modification. Crystal Growth & Design, 2019, 19 (9),5267–5274. doi: 10.1021/acs.cgd.9b00657 IF 3.972

 
20191007-02 22 июля 2019 г. 
Assembly of two novel self-catenated metal-organic frameworks from a tripodal N, O-donor ligand: syntheses, structures and properties.

Ruidan Ma, Xianmin Guo, Yingying Sun, Fengyuan Wang, Shaowen Sun, Ting Zhou, Shuang Liu, Huadong Guo, Eugeny V. Alexandrov Assembly of two novel self-catenated metal-organic frameworks from a tripodal N, O-donor ligand: syntheses, structures and properties. Inorganica Chimica Acta, 2019, 496, 119032. doi: 10.1016/j.ica.2019.119032 IF 2.264

 
20190724-01 27 июня 2019 г. 
Topochemical Synthesis of Single-Crystalline Hydrogen-Bonded Cross-Linked Organic Frameworks and Their Guest-Induced Elastic Expansion.

Xuanfeng Jiang, Xunzhe Cui, Andrew J. E. Duncan, Liang Li, Russell P. Hughes, Richard J. Staples, Eugeny V. Alexandrov, Davide M. Proserpio, Yuyang Wu, Chenfeng Ke Topochemical Synthesis of Single-Crystalline Hydrogen-Bonded Cross-Linked Organic Frameworks and Their Guest-Induced Elastic Expansion. Journal of the American Chemical Society, 2019, 141 (27),10915–10923. doi: 10.1021/jacs.9b05232 IF 14.695

 
20190702-05 19 июня 2019 г. 
Construction of (3,8)-connected three-dimensional cobalt(II) and copper(II) coordination polymers with 1,3-bis­[(1,2,4-triazol-4-yl)meth­yl]benzene and benzene-1,3,5-tri­carboxyl­ate ligands.

Y.-Q. Zhang, V. A. Blatov, X.-X. Lv, D.-Y. Tang, L.-L. Qian, K. Li and B.-L. Li Construction of (3,8)-connected three-dimensional cobalt(II) and copper(II) coordination polymers with 1,3-bis­[(1,2,4-triazol-4-yl)meth­yl]benzene and benzene-1,3,5-tri­carboxyl­ate ligands. Acta Crystallographica Section C, 2019, 75, 960-968. doi:10.1107/S205322961900826X IF 4.36

 
20190702-06 3 июня 2019 г. 
A New sp2-sp3-Hybridized Metallic Carbon Network for Lithium-ion Battery Anode with Enhanced Safety and Lithium-ion Diffusion Rate.

Dong Fan, Andrey A. Golov, Artem A. Kabanov, Chengke Chen, Shaohua Lu, Xiao Li, Meiyan Jiang, Xiaojun Hu A New sp2-sp3-Hybridized Metallic Carbon Network for Lithium-ion Battery Anode with Enhanced Safety and Lithium-ion Diffusion Rate. The Journal of Physical Chemistry C, 2019, 123 (25),15412–15418. doi: 10.1021/acs.jpcc.9b02034 IF 4.484

 
20190513-01 1 мая 2019 г. 
The Aluminum-Ion Battery: A Sustainable and Seminal Concept?.

Tilmann Leisegang, Falk Meutzner, Matthias Zschornak, Wolfram Münchgesang, Robert Schmid, Tina Nestler, Roman A. Eremin, Artem A. Kabanov, Vladislav A. Blatov and Dirk C. Meyer The Aluminum-Ion Battery: A Sustainable and Seminal Concept? Frontier in Chemistry, 2019. doi: 10.3389/fchem.2019.00268 IF 4.155

 
20190702-09 23 апреля 2019 г. 
Sulphur‐ and selenium‐containing compounds potentially exhibiting Al‐ion conductivity.

F. Meutzner, M. Zschornak, A. Kabanov, T. Nestler, T. Leisegang, V. A. Blatov, D. C. Meyer Sulphur‐ and selenium‐containing compounds potentially exhibiting Al‐ion conductivity. Chemistry – A European Journal, 2019, 25 (36), 8623–8629. doi: 10.1002/chem.201901438 IF 5.160

 
20190604-01 18 апреля 2019 г. 
Novel Heterometallic Uranyl-Transition Metal Materials: Structure, Topology, and Solid State Photoluminescence Properties.

Germán E. Gomez, J. August Ridenour, Nicole M. Byrne, Alexander P. Shevchenko, and Christopher L. Cahill Novel Heterometallic Uranyl-Transition Metal Materials: Structure, Topology, and Solid State Photoluminescence Properties. Inorganic Chemistry, 2019, 58, 11, 7243-7254. doi: 10.1021/acs.inorgchem.9b00255 IF 4.700

 
20171123-01 12 апреля 2019 г. 
Network topological model of reconstructive solid-state transformations.

Vladislav A. Blatov, Andrey A. Golov, Changhao Yang, Qingfeng Zeng & Artem A. Kabanov Network topological model of reconstructive solid-state transformations. Scientific Reports, 2019, 9. doi:10.1038/s41598-019-42483-5 IF 4.122

 
20190520-01 12 апреля 2019 г. 
Sonochemical synthesis and characterization of four nanostructural nickel coordination polymers and photocatalytic degradation of methylene blue.

Lin-Lu Qian, Vladislav A. Blatov, Zhi-Xiang Wang, Jian-Gang Ding, Li-Ming Zhu, Ke Li, Bao-Long Li, Bing Wu Sonochemical synthesis and characterization of four nanostructural nickel coordination polymers and photocatalytic degradation of methylene blue. Ultrasonics Sonochemistry, 2019, 56, 213-228. doi: 10.1016/j.ultsonch.2019.04.015 IF 6.12

 
20190506-01 2 апреля 2019 г. 
Topological databases: why do we need them for design of coordination polymers?.

Eugeny V. Alexandrov, Alexander Shevchenko, and Vladislav A. Blatov Topological databases: why do we need them for design of coordination polymers? Crystal Growth & Design, 2019, 19 (5), pp 2604–2614. doi: 10.1021/acs.cgd.8b01721 IF 3.972

 
27 марта 2019 г. 
Topology: ToposPro.

Vladislav A.Blatov, Eugeny V.Alexandrov, Alexander P.Shevchenko Topology: ToposPro. In Comprehensive Coordination Chemistry (Reference Module in Chemistry, Molecular Sciences and Chemical Engineering), 2019. doi: 10.1016/B978-0-12-409547-2.14576-7

 
20171123-04 22 марта 2019 г. 
Variation of Topologies and Entanglements in Metal-Organic Frameworks with mixed tris[4-(1H-imidazol-1-yl)phenyl]phosphine oxide and dicarboxylate ligands.

Yingying Sun, Xiaojie Chen, Fengyuan Wang, Ruidan Ma, Xianmin Guo, Shaowen Sun, Huadong Guo and Eugeny V. Alexandrov Variation of Topologies and Entanglements in Metal-Organic Frameworks with mixed tris[4-(1H-imidazol-1-yl)phenyl]phosphine oxide and dicarboxylate ligands. Dalton Transactions, 2019, 48 (16), 5450–5458. doi:10.1039/C9DT00249A IF 4.099

 
20171123-03 15 марта 2019 г. 
Ab initio modeling of oxygen ion migration in non-stoichiometric bismuth titanate pyrochlore Bi1.5Ti2O6.25.

A.G. Krasnov, A.A. Kabanov, N.A. Kabanova, I.V. Piir, I.R. Shein Ab initio modeling of oxygen ion migration in non-stoichiometric bismuth titanate pyrochlore Bi1.5Ti2O6.25. Solid State Ionics, 2019, 335, 135-141. doi: 10.1016/j.ssi.2019.02.023 IF 2.751

 
no spine minimum. half size. Editor: Tara  JEM: Esther
RTP: Cathy Fisher 20 января 2019 г. 
A combined theoretical approach for identifying battery materials: Al3+ mobility in oxides.

T. Nestler, F. Meutzner, A.A. Kabanov, M. Zschornak, T. Leisegang, and D.C. Meyer A combined theoretical approach for identifying battery materials: Al3+ mobility in oxides. Chemistry of Materials, 2019, 31 (3), 737–747. doi: 10.1021/acs.chemmater.8b03631 IF 9.890

 
20191104-01 22 декабря 2018 г. 
Natural tilings and free space in zeolites: models, statistics, correlations, prediction.

Olga A. Blatova, Andrey A. Golov, Vladislav A. Blatov Natural tilings and free space in zeolites: models, statistics, correlations, prediction. Zeitschrift für Kristallographie - Crystalline Materials, 2019, 234 (7-8), 421–436. doi:10.1515/zkri-2018-2143 IF 2.159

 
20181217-03 20 октября 2018 г. 
High-throughput search for potential potassium ion conductors: A combination of geometrical-topological and density functional theory approaches.

R.A.Eremin, N.A.Kabanova, Ye.A.Morkhova, A.A.Golov, V.A.Blatov High-throughput search for potential potassium ion conductors: A combination of geometrical-topological and density functional theory approaches. Solid State Ionics, 2018, 326, 188-199. doi: 10.1016/j.ssi.2018.10.009 IF 2.751

 
20190131-02 12 октября 2018 г. 
Assembly of Polynuclear Single‐molecule Magnets.

Kieran Griffiths, Vladislav A. Blatov, George E. Kostakis Assembly of Polynuclear Single‐molecule Magnets. In Single‐Molecule Magnets, M. Hołyńska (Ed.). doi:10.1002/9783527809929.ch8

 
20190620-03 2 октября 2018 г. 
Computational analysis and identification of battery materials.

F. Meutzner, T. Nestler, M. Zschornak, P. Canepa, G. S. Gautam, S. Leoni, S. Adams, T. Leisegang, V. A. Blatov, D. C. Meyer Computational analysis and identification of battery materials. Physical Sciences Reviews, 2019, 4 (1), 20180044. doi:10.1515/psr-2018-0044 IF 1.414

 
20180920-04 20 сентября 2018 г. 
D-carbon: Ab initio study of a novel carbon allotrope.

Dong Fan, Shaohua Lu, Andrey A. Golov, Artem A. Kabanov and Xiaojun Hu D-carbon: Ab initio study of a novel carbon allotrope. The Journal of Chemical Physics, 2018, 149, 114702. doi: 10.1063/1.5037380 IF 2.843

 
20181016-03 28 августа 2018 г. 
Construction of five zinc coordination polymers with 4-substituted bis(trizole) and multicarboxylate ligands: Syntheses, structures and properties.

Ya-Qian Zhang, Vladislav A. Blatov, Xiu-Xiu Lv, Chang-Hao Yang, Lin-Lu Qian, Ke Li, Bao-Long Li, Bing Wu Construction of five zinc coordination polymers with 4-substituted bis(trizole) and multicarboxylate ligands: Syntheses, structures and properties. Polyhedron, 2018, 155, 223-231. doi: 10.1016/j.poly.2018.08.047 IF 2.067

 
20181016-02 18 августа 2018 г. 
Construction of Cd(II) coordination polymers from a fluorene-based bisimidazole ligand and polycarboxylic acids: syntheses, structures and properties.

Sh. Sun, Y. Sun, H. Guo, X. Fu, M. Guo, S. Liu, X. Guo, L. Zhang, E. V. Alexandrov Construction of Cd(II) coordination polymers from a fluorene-based bisimidazole ligand and polycarboxylic acids: syntheses, structures and properties. Inorganica Chimica Acta, 2018, 483, 165–172. doi: 10.1016/j.ica.2018.08.018 IF 2.264

 
20181116-02 11 августа 2018 г. 
Electrodes: definitions and systematisation – a crystallographers view.

Falk Meutzner, Matthias Zschornak, Melanie Nentwich, Damien Monti, Tilmann Leisegang Electrodes: definitions and systematisation – a crystallographers view. Physical Sciences Reviews, 2018, 3, 10. doi:10.1515/psr-2018-0043 IF 1.414

 
130 minimum on spine. Editor: Mihaela Rogers, JEM: Diane
RTP: Maureen Murdock 7 мая 2018 г. 
Deconstruction of Crystalline Networks into Underlying Nets: Relevance for Terminology Guidelines and Crystallographic Databases.

Charlotte Bonneau, Michael O'Keeffe, Davide M. Proserpio, Vladislav A. Blatov, Stuart R. Batten, Susan A. Bourne, Myoung Soo Lah, Jean-Guillaume Eon, Stephen T Hyde, Seth B. Wiggin, and Lars Ohrstrom Deconstruction of Crystalline Networks into Underlying Nets: Relevance for Terminology Guidelines and Crystallographic Databases. Crystal Growth & Design, 2018, 18 (6), 3411–3418. doi: 10.1021/acs.cgd.8b00126 IF 3.972

 
20171123-02 1 мая 2018 г. 
Topologically guided tuning of Zr-MOF pore structures for highly selective separation of C6 alkane isomers.

Hao Wang, Xinglong Dong, Junzhong Lin, Simon J. Teat, Stephanie Jensen, Jeremy Cure, Eugeny V. Alexandrov, Qibin Xia, Kui Tan, Qining Wang, David H. Olson, Davide M. Proserpio, Yves J. Chabal, Timo Thonhauser, Junliang Sun, Yu Han & Jing Li Topologically guided tuning of Zr-MOF pore structures for highly selective separation of C6 alkane isomers. Nature Communications, 2018, 9, 1745. doi: 10.1038/s41467-018-04152-5 IF 12.353

 
20180529-01 7 апреля 2018 г. 
An unusual (4,6)-coordinated copper(II) coordination polymer: High efficient degradation of organic dyes under visible light irradiation and electrochemical properties.

Tian-Rui Zheng, Vladislav A. Blatov, Lin-Lu Qian, Ding-Yi Tang, Ya-Qian Zhang, Zhi-Xiang Wang, Bao-Long Li, Bin Wu An unusual (4,6)-coordinated copper(II) coordination polymer: High efficient degradation of organic dyes under visible light irradiation and electrochemical properties. Polyhedron, 2018, 148, 81-87. doi:10.1016/j.poly.2018.03.032 IF 2.067

 
20180502-01 4 апреля 2018 г. 
A luminescent zinc(II) coordination polymer with unusual (3,4,4)-coordinated self-catenated 3D network for selective detection of nitroaromatics and ferric and chromate ions: a versatile luminescent sensor.

Ya-Qian Zhang, Vladislav A. Blatov, Tian-Rui Zheng, Chang-Hao Yang, Lin-Lu Qian, Ke Li, Bao-Long Li and Bing Wu A luminescent zinc(II) coordination polymer with unusual (3,4,4)-coordinated self-catenated 3D network for selective detection of nitroaromatics and ferric and chromate ions: a versatile luminescent sensor. Dalton Transactions, 2018, 47, 6189-6198. doi:10.1039/C7DT04682K IF 4.099

 
no spine minimum. half size. Editor: Tara  JEM: Esther
RTP: Cathy Fisher 4 апреля 2018 г. 
Predicting new zeolites: a combination of thermodynamic and kinetic factors.

Ekaterina D. Kuznetsova, Olga A. Blatova and Vladislav A. Blatov Predicting new zeolites: a combination of thermodynamic and kinetic factors. Chemistry of Materials, 2018, 30 (8), 2829–2837. doi: 10.1021/acs.chemmater.8b00905 IF 9.890

 
20180321-01 14 марта 2018 г. 
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130 minimum on spine. Editor: Mihaela Rogers, JEM: Diane
RTP: Maureen Murdock 20 февраля 2018 г. 
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130 minimum on spine. Editor: Mihaela Rogers, JEM: Diane
RTP: Maureen Murdock 25 января 2018 г. 
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20180206-01 23 января 2018 г. 
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20180116-01 29 декабря 2017 г. 
Topology of Intermetallic Structures: From Statistics to Rational Design.

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