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The Determinants Of The Science-Based Cluster Growth: The Case Of Nanotechnologies

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  • Vincent Mangematin

    (MTS - Management Technologique et Strategique - EESC-GEM Grenoble Ecole de Management)

  • Khalid Errabi

    (MTS - Management Technologique et Strategique - EESC-GEM Grenoble Ecole de Management)

Abstract

There is growing academic and policy interests in the factors that underpin the formation and the growth of clusters, especially for such 'hyped up' scientific and technological fields as the nanotechnologies. This paper analyses the determinants of scientific cluster growth (measured by the number of publications that emanate there from), distinguishing between structural effects (i.e. initial cluster size, scientific field composition and geographic location) on the one hand and its scientific variety, organizational diversity and degree of openness (in terms of collaboration with outside actors) on the other. Overall, scientific variety enhances clusters growth, but organizational diversity slows it down. However, patterns of growth are different in Asia, Europe and North America. It seems that cluster evolution is highly contingent on national systems of innovation and on the history of collaboration amongst local actors. Policy makers and cluster strategists must design specific policies by zone, and should not simply attempt to replicate best practices from one zone to another. Slow growth may reflect also 'elitist' strategies - those based on quality rather than on numbers

Suggested Citation

  • Vincent Mangematin & Khalid Errabi, 2012. "The Determinants Of The Science-Based Cluster Growth: The Case Of Nanotechnologies," Post-Print hal-00526701, HAL.
  • Handle: RePEc:hal:journl:hal-00526701
    DOI: 10.1068/c10174v
    Note: View the original document on HAL open archive server: http://hal.grenoble-em.com/hal-00526701
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    References listed on IDEAS

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    1. Vincent Mangematin & Khalid Errabi & Caroline Gauthier, 2011. "Large players in the nanogame: dedicated nanotech subsidiaries or distributed nanotech capabilities?," The Journal of Technology Transfer, Springer, vol. 36(6), pages 640-664, December.
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    7. Zhang, Jing & Baden-Fuller, Charles & Mangematin, Vincent, 2007. "Technological knowledge base, R&D organization structure and alliance formation: Evidence from the biopharmaceutical industry," Research Policy, Elsevier, vol. 36(4), pages 515-528, May.
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    2. Alexander Sokolov & Sergey Shashnov & Maxim Kotsemir, 2021. "From BRICS to BRICS plus: selecting promising areas of S&T Cooperation with developing countries," Scientometrics, Springer;Akadémiai Kiadó, vol. 126(11), pages 8815-8859, November.

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