. Network Connection, IPR Protection and Innovation Performance[J]. SCIENCE & TECHNOLOGY PROGRESS AND POLICY, 2018, 35(23): 1-8., doi: 10.6049/kjjbydc.L201808391.
. The Cooperation within Scientific Research Team from Perspectives of Knowledge and Character: Does the Complementarity or Powerful Alliance Impact[J]. SCIENCE & TECHNOLOGY PROGRESS AND POLICY, 2018, 35(23): 9-16., doi: 10.6049/kjjbydc.L201808214.
. Different Leadership Styles, Knowledge Accumulation and Organizational Duality Innovation: the Moderating Efffects of Ability Flexibility[J]. SCIENCE & TECHNOLOGY PROGRESS AND POLICY, 2018, 35(23): 17-24., doi: 10.6049/kjjbydc.L201808699.
. Study on the Relationship of the R&D Intensity, the Innovation Speed and the Value of Listed Companies[J]. SCIENCE & TECHNOLOGY PROGRESS AND POLICY, 2018, 35(23): 25-33., doi: 10.6049/kjjbydc.L201808402.
. The Institutional Proximity Character of Three Cities Innovation Network[J]. SCIENCE & TECHNOLOGY PROGRESS AND POLICY, 2018, 35(23): 34-42., doi: 10.6049/kjjbydc.L201808571.
. The Evolution of Policies about Leading Talents' Attraction and Cultivation in the Field of Science and Technology in Jiangsu Province[J]. SCIENCE & TECHNOLOGY PROGRESS AND POLICY, 2018, 35(23): 43-51., doi: 10.6049/kjjbydc.L201808626.
. Research on Regional Innovation Ability based on Optimal Financial Structure Theory[J]. SCIENCE & TECHNOLOGY PROGRESS AND POLICY, 2018, 35(23): 52-58., doi: 10.6049/kjjbydc.L201808635.
. Research on Efficiency Evaluation and Influencing Factors of HighTech Industry R&D Activities[J]. SCIENCE & TECHNOLOGY PROGRESS AND POLICY, 2018, 35(23): 59-65., doi: 10.6049/kjjbydc.L201808452.
Independent innovation and knowledge spillover are two main ways to improve knowledge storage and catch up with technology for backward enterprises. Knowledge spillover, as one of the prominent characteristics of industrial clusters, has an important impact on the innovation and development of industrial clusters. Based on the knowledge spillover model of Verspagen and Caniëls, this paper constructs an industrial cluster knowledge spillover model according to the characteristics of high and new technology industry cluster. Then this model is used as an analytical tool to analyze the technology catching up with gap of knowledge storage for technological backward enterprises under the joint effect of knowledge spillover and independent innovation. And then the influence factors of knowledge spillovers how to impact technology catching up of backward enterprises. And then, we do empirical study based on the data of Zhongguancun Science and Technology Park. In the end, some suggestions are put forward for technological backward enterprises to catch up in hi-tech industrial development zones.
. Research on the Impact of Knowledge Spillover on Technological Catching up in High-Tech Industry Clusters[J]. SCIENCE & TECHNOLOGY PROGRESS AND POLICY, 2018, 35(23): 66-74., doi: 10.6049/kjjbydc.2018050718.
. Researh on Industrial Generic Technology R&D Outsourcing Contract and Influencing Factors with Government Supports[J]. SCIENCE & TECHNOLOGY PROGRESS AND POLICY, 2018, 35(23): 75-81., doi: 10.6049/kjjbydc.L201808526.
. Research on the Stimulating Effect of Venture Capital on the Innovation Efficiency of New Energy Technology[J]. SCIENCE & TECHNOLOGY PROGRESS AND POLICY, 2018, 35(23): 82-91., doi: 10.6049/kjjbydc.L201808620.
. An Empirical Analysis on the Promotion for Agglomeration to Innovative Ecosystem of Strategic Emerging Industries[J]. SCIENCE & TECHNOLOGY PROGRESS AND POLICY, 2018, 35(23): 92-98., doi: 10.6049/kjjbydc.L201808444.
. How Does Governmental Venture Capital Affect a Firm's Innovation[J]. SCIENCE & TECHNOLOGY PROGRESS AND POLICY, 2018, 35(23): 99-105., doi: 10.6049/kjjbydc.L201808615.
. Family Control and Enterprise Innovation Investment based on the Moderating of Information Transparency[J]. SCIENCE & TECHNOLOGY PROGRESS AND POLICY, 2018, 35(23): 106-112., doi: 10.6049/kjjbydc.L201808153.
. The Relationship between CEO Narcissism&Dual Innovation and Enterprise Growth[J]. SCIENCE & TECHNOLOGY PROGRESS AND POLICY, 2018, 35(23): 113-120., doi: 10.6049/kjjbydc.L201808475.
. Research on the Intelligent Transformation and Upgrade Path of China's Automobile Manufacturing Enterprises from the Perspective of Dynamic Capabilities[J]. SCIENCE & TECHNOLOGY PROGRESS AND POLICY, 2018, 35(23): 121-129., doi: 10.6049/kjjbydc.L201808666.
. The CatchUp Opportunity of TechnoEconomic Paradigms and the Transformation of China's Innovation Policy[J]. SCIENCE & TECHNOLOGY PROGRESS AND POLICY, 2018, 35(23): 130-136., doi: 10.6049/kjjbydc.L201808552.
. The Influence Mechanism of Government Subsidy on the Growth of Technologybased SMEs[J]. SCIENCE & TECHNOLOGY PROGRESS AND POLICY, 2018, 35(23): 137-145., doi: 10.6049/kjjbydc.L201808762.
. Research on The Evaluation of Innovation Capability of Military and Civilian Integration Demonstration Area in China[J]. SCIENCE & TECHNOLOGY PROGRESS AND POLICY, 2018, 35(23): 146-154., doi: 10.6049/kjjbydc.L201808105.
. A Measurement of Government's Attention to Innovation and Entrepreneurship of Scientific and Technological Talents in China[J]. SCIENCE & TECHNOLOGY PROGRESS AND POLICY, 2018, 35(23): 155-160., doi: 10.6049/kjjbydc.L201808216.