Ferdi Schüth

Active 1989–2024

73
Papers
40,071
Citations
67
h-index
72
i10-index

Citations

Citations per year for Ferdi Schüth1989: 1 citations1990: 7 citations1991: 5 citations1992: 4 citations1993: 11 citations1994: 17 citations1995: 25 citations1996: 47 citations1997: 54 citations1998: 47 citations1999: 62 citations2000: 44 citations2001: 57 citations2002: 49 citations2003: 63 citations2004: 59 citations2005: 81 citations2006: 86 citations2007: 128 citations2008: 152 citations2009: 157 citations2010: 219 citations2011: 218 citations2012: 251 citations2013: 235 citations2014: 203 citations2015: 218 citations2016: 211 citations2017: 166 citations2018: 136 citations2019: 229 citations2020: 173 citations2021: 141 citations2022: 118 citations2023: 89 citations2024: 122 citations2025: 82 citations2026: 1 citations

Citation sources

Countries

World map of the countries and regions citing this authorChina: 916 citing papers, 20% of this breakdownUnited States: 766 citing papers, 16.7% of this breakdownGermany: 406 citing papers, 8.9% of this breakdownUnited Kingdom: 200 citing papers, 4.4% of this breakdownSpain: 167 citing papers, 3.6% of this breakdownJapan: 164 citing papers, 3.6% of this breakdownSouth Korea: 163 citing papers, 3.6% of this breakdownIndia: 158 citing papers, 3.4% of this breakdownFrance: 149 citing papers, 3.3% of this breakdownAustralia: 123 citing papers, 2.7% of this breakdownCanada: 90 citing papers, 2% of this breakdownNetherlands: 87 citing papers, 1.9% of this breakdown
0%20%Other 25.9%

Fields

  • Materials Science40.1%
  • Engineering18.4%
  • Chemistry11.9%
  • Energy8.9%
  • Biochemistry, Genetics and Molecular Biology6.8%
  • Chemical Engineering5.6%
  • Other8.3%

Topics

  • Mesoporous Materials and Catalysis6%
  • Catalytic Processes in Materials Science4.8%
  • Nanoparticle-Based Drug Delivery3%
  • Nanomaterials for catalytic reactions2.9%
  • Electrocatalysts for Energy Conversion2.8%
  • Catalysis for Biomass Conversion2.7%
  • Other77.8%

Coauthors

All papers

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  1. Engineering mesoporous silica nanoparticles for drug delivery: where are we after two decades?

    Authors: , , , , - Chemical Society Reviews 2022 cited by 458

  2. Magnetic Nanoparticles: Synthesis, Protection, Functionalization, and Application

    Authors: , , - Angewandte Chemie International Edition 2007 cited by 6,694

  3. Ammonia as a possible element in an energy infrastructure: catalysts for ammonia decomposition

    Authors: , , , - Energy & Environmental Science 2011 cited by 805

  4. Catalytic Reactions of Acetylene: A Feedstock for the Chemical Industry Revisited

    Authors: , , - Chemical Reviews 2013 cited by 509

  5. Mechanocatalytic Room‐Temperature Synthesis of Ammonia from Its Elements Down to Atmospheric Pressure

    Authors: , , - Angewandte Chemie 2021 cited by 91

  6. Chemical and Physical Solutions for Hydrogen Storage

    Authors: , , - Angewandte Chemie International Edition 2009 cited by 1,643

  7. Hollow Nano- and Microstructures as Catalysts

    Authors: , , , , , - Chemical Reviews 2016 cited by 793

  8. Solvent‐Free Catalytic Depolymerization of Cellulose to Water‐Soluble Oligosaccharides

    Authors: , , - ChemSusChem 2012 cited by 239

  9. Solid Catalysts for the Selective Low‐Temperature Oxidation of Methane to Methanol

    Authors: , , , , - Angewandte Chemie International Edition 2009 cited by 564

  10. Design criteria for stable Pt/C fuel cell catalysts

    Authors: , , , , , , , , , - Beilstein Journal of Nanotechnology 2014 cited by 551

  11. Stability investigations of electrocatalysts on the nanoscale

    Authors: , , , , , , , , - Energy & Environmental Science 2012 cited by 256

  12. Recent progress in scanning electron microscopy for the characterization of fine structural details of nano materials

    Authors: , , , , , , , , , , , , , , , , , , , , , , - Progress in Solid State Chemistry 2014 cited by 111

  13. Design of solid catalysts for the conversion of biomass

    Authors: , - Energy & Environmental Science 2009 cited by 711

  14. Acid Hydrolysis of Cellulose as the Entry Point into Biorefinery Schemes

    Authors: , - ChemSusChem 2009 cited by 657

  15. Mechanochemical Synthesis of Catalytic Materials

    Authors: , , , - Chemistry - A European Journal 2021 cited by 300

  16. Ordered mesoporous materials in catalysis

    Authors: , - Microporous and Mesoporous Materials 2004 cited by 2,094

  17. Nanocasting: A Versatile Strategy for Creating Nanostructured Porous Materials

    Authors: , - Advanced Materials 2006 cited by 1,307

  18. Ordered mesoporous materials

    Authors: , - Microporous and Mesoporous Materials 1999 cited by 1,071

  19. Endo‐ and Exotemplating to Create High‐Surface‐Area Inorganic Materials

    Authors: - Angewandte Chemie International Edition 2003 cited by 597

  20. Toward Highly Stable Electrocatalysts via Nanoparticle Pore Confinement

    Authors: , , , , , , , , - Journal of the American Chemical Society 2012 cited by 280

  21. Experimental and Theoretical Investigation of Molybdenum Carbide and Nitride as Catalysts for Ammonia Decomposition

    Authors: , , , , , , , , , - Journal of the American Chemical Society 2013 cited by 264

  22. Generalized synthesis of periodic surfactant/inorganic composite materials

    Authors: , , , , , , , , , - Nature 1994 cited by 2,064

  23. Platinum–cobalt bimetallic nanoparticles in hollow carbon nanospheres for hydrogenolysis of 5-hydroxymethylfurfural

    Authors: , , , , , , , - Nature Materials 2014 cited by 683

  24. Degradation Mechanisms of Pt/C Fuel Cell Catalysts under Simulated Start–Stop Conditions

    Authors: , , , , , , - ACS Catalysis 2012 cited by 581