Anthony K. Cheetham

Active 1983–2021

83
Papers
33,245
Citations
82
h-index
83
i10-index

Citations

Citations per year for Anthony K. Cheetham1990: 1 citations1991: 6 citations1992: 2 citations1993: 9 citations1994: 6 citations1995: 13 citations1996: 15 citations1997: 11 citations1998: 22 citations1999: 31 citations2000: 38 citations2001: 36 citations2002: 44 citations2003: 62 citations2004: 69 citations2005: 64 citations2006: 49 citations2007: 81 citations2008: 106 citations2009: 111 citations2010: 82 citations2011: 134 citations2012: 75 citations2013: 102 citations2014: 115 citations2015: 154 citations2016: 170 citations2017: 248 citations2018: 215 citations2019: 227 citations2020: 216 citations2021: 138 citations2022: 87 citations2023: 73 citations2024: 74 citations2025: 42 citations2026: 2 citations

Citation sources

Countries

World map of the countries and regions citing this authorChina: 748 citing papers, 21.8% of this breakdownUnited States: 612 citing papers, 17.9% of this breakdownUnited Kingdom: 292 citing papers, 8.5% of this breakdownGermany: 160 citing papers, 4.7% of this breakdownFrance: 155 citing papers, 4.5% of this breakdownIndia: 134 citing papers, 3.9% of this breakdownJapan: 131 citing papers, 3.8% of this breakdownAustralia: 113 citing papers, 3.3% of this breakdownSouth Korea: 112 citing papers, 3.3% of this breakdownSingapore: 91 citing papers, 2.7% of this breakdownSpain: 85 citing papers, 2.5% of this breakdownCanada: 65 citing papers, 1.9% of this breakdown
0%21.8%Other 21.2%

Fields

  • Chemistry31.5%
  • Materials Science28.8%
  • Engineering22.1%
  • Energy4.5%
  • Chemical Engineering3.5%
  • Biochemistry, Genetics and Molecular Biology3.5%
  • Other6.1%

Topics

  • Metal-Organic Frameworks: Synthesis and Applications11.3%
  • Perovskite Materials and Applications5%
  • Covalent Organic Framework Applications3.9%
  • Catalytic Processes in Materials Science2.7%
  • Magnetism in coordination complexes2.2%
  • Graphene research and applications2%
  • Other72.9%

Coauthors

All papers

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  1. Improving the Acidic Stability of Zeolitic Imidazolate Frameworks by Biofunctional Molecules

    Authors: , , , , , , , , , , , , , , - Chem 2019 cited by 240

  2. Design Principles for Enhancing Photoluminescence Quantum Yield in Hybrid Manganese Bromides

    Authors: , , , , - Journal of the American Chemical Society 2020 cited by 389

  3. Chemical structure, network topology, and porosity effects on the mechanical properties of Zeolitic Imidazolate Frameworks

    Authors: , , - National Academy of Sciences, Proceedings of the National Academy of Sciences 2010 cited by 547

  4. Chemically diverse and multifunctional hybrid organic–inorganic perovskites

    Authors: , , , , , - Nature Reviews Materials 2017 cited by 1,257

  5. Amorphous Metal–Organic Frameworks

    Authors: , - Accounts of Chemical Research 2014 cited by 687

  6. Amorphous metal–organic frameworks for drug delivery

    Authors: , , , , , , - Chemical Communications 2015 cited by 381

  7. Janus Membranes: Creating Asymmetry for Energy Efficiency

    Authors: , , , , , - Advanced Materials 2018 cited by 338

  8. Mechanical properties of hybrid inorganic–organic framework materials: establishing fundamental structure–property relationships

    Authors: , - Chemical Society Reviews 2011 cited by 743

  9. Structural diversity and chemical trends in hybrid inorganic–organic framework materials

    Authors: , , - Chemical Communications 2006 cited by 1,075

  10. Interplay between defects, disorder and flexibility in metal-organic frameworks

    Authors: , , , - Nature Chemistry 2016 cited by 452

  11. MOF-derived nanohybrids for electrocatalysis and energy storage: current status and perspectives

    Authors: , , , , , - Chemical Communications 2018 cited by 305

  12. Mechanical properties of organic–inorganic halide perovskites, CH3NH3PbX3(X = I, Br and Cl), by nanoindentation

    Authors: , , , , - Journal of Materials Chemistry A 2015 cited by 265

  13. Solid-state principles applied to organic–inorganic perovskites: new tricks for an old dog

    Authors: , , - Chemical Science 2014 cited by 998

  14. Multiferroic Behavior Associated with an Order−Disorder Hydrogen Bonding Transition in Metal−Organic Frameworks (MOFs) with the Perovskite ABX3 Architecture

    Authors: , , , , , , , - Journal of the American Chemical Society 2009 cited by 799

  15. The Effect of Pressure on ZIF‐8: Increasing Pore Size with Pressure and the Formation of a High‐Pressure Phase at 1.47 GPa

    Authors: , , - Angewandte Chemie International Edition 2009 cited by 523

  16. Hybrid glasses from strong and fragile metal-organic framework liquids

    Authors: , , , , , , , , , , , - Nature Communications 2015 cited by 386

  17. Porous Organic Cage Thin Films and Molecular‐Sieving Membranes

    Authors: , , , , , , , - Advanced Materials 2016 cited by 373

  18. Magnetic ordering and exchange effects in the antiferromagnetic solid solutionsMnxNi1−xO

    Authors: , - Physical review. B, Condensed matter 1983 cited by 261

  19. How Strong Is the Hydrogen Bond in Hybrid Perovskites?

    Authors: , , , , , , - The Journal of Physical Chemistry Letters 2017 cited by 245

  20. Ball‐Milling‐Induced Amorphization of Zeolitic Imidazolate Frameworks (ZIFs) for the Irreversible Trapping of Iodine

    Authors: , , , , - Chemistry - A European Journal 2013 cited by 222

  21. Defects and disorder in metal organic frameworks

    Authors: , , , - Dalton Transactions 2015 cited by 207

  22. An extended Tolerance Factor approach for organic–inorganic perovskites

    Authors: , , - Chemical Science 2015 cited by 772

  23. Zeolitic imidazolate framework (ZIF-8) based polymer nanocomposite membranes for gas separation

    Authors: , , , , , , , , , , - Energy & Environmental Science 2012 cited by 733

  24. Understanding of Electrochemical Mechanisms for CO2 Capture and Conversion into Hydrocarbon Fuels in Transition-Metal Carbides (MXenes)

    Authors: , , , , , , - ACS Nano 2017 cited by 477