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The US-China scientific collaboration, knowledge moderation, and China's rise in nanotechnology.

机译:美中科学合作,知识节制以及中国纳米技术的兴起。

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摘要

In the emerging knowledge economy, scientific pursuit in the form of international collaboration has escalated. Studies consistently report that such collaboration, which has been intensifying in the last several decades, is common among not only advanced economies but also in emerging scientific nations such as China, India, and Brazil. The emergence of a " invisible college" of international knowledge exchange has aroused interest from social scientists and captured the attention of policymakers. Indeed, recognizing its importance as a means of monitoring and exploiting other countries' R&D investment, more and more countries champion and participate in international joint research.;International collaboration between the United States (US) and China is particularly interesting. The US has been and will continue to be the leader in scientific development for the foreseeable future. However, as a rising scientific power, China is changing the global landscape of ideas and innovation along with other emerging countries. The growing significance of the US-China relationship and worldwide interest in China's development suggest that the characteristics of the scientific collaboration of these two countries and its associated knowledge dissemination across national borders are timely topics to study.;Surprisingly, few studies have examined research collaboration between a scientific superpower and an emerging scientific power, particularly in the context of emerging state-of-the-art technology. This dissertation seeks to address this research gap by examining patterns of collaboration in the US-China scientific community and its impact on China's rapid knowledge accumulation in nanotechnology, if any, through Chinese knowledge moderators (CKMs)---Chinese scholars who bridge two otherwise distant scientific communities through intensive collaboration with both sides.;The research focuses on the following three aspects: firstly, built upon the notions of the boundary spanner and the structural hole, the study develops the concept of Chinese knowledge moderators and uses it as an instrument to examine the relationship between international collaboration and knowledge spillover across national boundaries. Secondly, it operationalizes and tests the impact of US-China collaboration using multiple methods. In addition to citation-based indicators, based on the turnover of nanotechnology keywords, the study investigates the impact of collaborating with US scholars on CKMs' research trajectory and the international knowledge spillover facilitated by CKMs. Thirdly, utilizing a longitudinal publication dataset of 77 CKMs and their CV data, this study is able to quantify the dynamic impact of US collaboration on the quality of CKMs' research over time. The combination of bibliometric analyses, empirical testing, and case studies allows for the development of a comprehensive blueprint of US-China scientific collaboration in the field of nanotechnology.;This research yields several significant findings. First, the evolution of US-China collaboration in nanotechnology has gone beyond quantitative growth, as qualitative and structural changes have begun to take place. Secondly, CKMs play a critical role in fostering China's nanotechnology development, manifested in both knowledge creation and knowledge diffusion. The present study also reveals that US-China collaboration has a diminishing effect over time on the research quality of CKMs at level of individual papers, but as pertaining to entire journals. Thirdly, the case studies on the evolution of research streams suggest that US-China collaboration influences the research trajectory of CKMs, who, as the conduits of knowledge, further disseminate it within the national boundaries of China.;The research also has policy implications for both sides. Chinese policy makers need to strengthen the mechanisms that encourage CKMs collaborating with the US, and, in order to amplify international knowledge spillover, these mechanisms should further encourage more interactions between CKMs and their Chinese domestic colleagues. From the US American perspective, given China's scientific emergence in nanotechnology, the US should direct its efforts to ensuring its ample access to exploiting the heavy R&D investment of this emerging scientific powerhouse by collaborating with top Chinese scientists.
机译:在新兴的知识经济中,国际合作形式的科学追求已经升级。研究一致报告说,这种合作在过去几十年中一直在加强,不仅在发达经济体中而且在新兴科学国家(例如中国,印度和巴西)中都很普遍。国际知识交流“隐形学院”的出现引起了社会科学家的兴趣,并引起了政策制定者的注意。确实,认识到其作为监视和利用其他国家的R&D投资的手段的重要性,越来越多的国家拥护并参与了国际联合研究。美国和中国之间的国际合作特别有趣。在可预见的未来,美国一直并将继续成为科学发展的领导者。但是,作为科学力量的崛起,中国正在与其他新兴国家一起改变着思想和创新的全球格局。美中关系的重要性日益增长,全球对中国发展的关注表明,这两个国家的科学合作的特点及其相关的跨国界知识传播是研究的及时主题。令人惊讶的是,很少有研究研究过合作在科学超级大国和新兴科学力量之间发展,特别是在新兴技术水平的背景下。本论文旨在通过研究中国知识专家(CKM)来研究中美科学界的合作模式及其对中国纳米技术快速积累的影响(如果有的话),以解决这一研究空白。通过与双方的深入合作,建立了遥远的科学共同体。研究集中在以下三个方面:首先,基于边界扳手和结构漏洞的概念,研究发展了中国知识调节者的概念并将其用作工具研究国际合作与跨国界知识溢出之间的关系。其次,它使用多种方法来操作和测试美中合作的影响。除了基于引文的指标外,该研究还基于纳米技术关键词的周转率,研究了与美国学者合作对CKM的研究轨迹和CKM促进的国际知识溢出的影响。第三,利用纵向发布的77个CKM及其CV数据集,该研究能够定量地评估美国合作对CKM研究质量的动态影响。文献计量分析,实证检验和案例研究相结合,可以制定中美在纳米技术领域的科学合作的全面蓝图。该研究产生了一些重要发现。首先,由于质和结构的变化已开始发生,中美在纳米技术上的合作发展已超越了数量上的增长。其次,知识管理在促进中国纳米技术发展中起着至关重要的作用,体现在知识创造和知识传播上。本研究还显示,中美合作对CKM的研究质量随着时间的推移会逐渐减弱,无论是个别论文还是整个期刊。第三,对研究流演变的案例研究表明,中美合作影响了知识管理的研究轨迹,知识管理作为知识的传播渠道,在中国的国界内进一步传播知识。双方。中国决策者需要加强鼓励CKM与美国合作的机制,为了扩大国际知识的溢出,这些机制应进一步鼓励CKM与中国国内同行之间的更多互动。从美利坚合众国的角度来看,鉴于中国在纳米技术方面的科学兴起,美国应与中国顶尖科学家合作,努力确保其有充足的机会利用这一新兴科学强国的大量研发投资。

著录项

  • 作者

    Tang, Li.;

  • 作者单位

    Georgia Institute of Technology.;

  • 授予单位 Georgia Institute of Technology.;
  • 学科 Political Science International Relations.;Sociology Public and Social Welfare.;Nanotechnology.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 165 p.
  • 总页数 165
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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