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中国有色金属回收技术的收敛性及驱动因素:基于专利合作网络结构洞的二次指派程序分析

China's non-ferrous metal recycling technology convergence and driving factors: A quadratic assignment procedure analysis based on patent collaboration-based network structural hole.

机构信息

School of Accountancy, Wuhan Textile University, Wuhan, China.

出版信息

PLoS One. 2022 Aug 5;17(8):e0271694. doi: 10.1371/journal.pone.0271694. eCollection 2022.

Abstract

Technological convergence is an important organizational innovation capability, essential for improving the core competitiveness of green and sustainable industries. However, studies have mainly focused on measuring technological convergence and have ignored the factors that affect the capabilities of such convergence capabilities. Thus, this study attempts to bridge this gap by providing an in-depth analysis of the impact of structural holes in inter-organizational technical cooperation networks. This technological convergence is studied from the perspective of a patent. It also considers the moderating effects of the degree of patent cooperation and the cooperation distance. It employs the social network theory to construct inter-organizational patent cooperation, and technological convergence networks, to facilitate the analysis of the effect of structural holes on such a convergence. It empirically examines 52 non-ferrous metal recycling organizations, with close patent cooperation. Accordingly, the structural hole constraint index by the inter-organizational patent cooperation network, shows a positive U-shaped curve relationship with technology convergence. Moreover, the degree of inter-organizational patent cooperation strengthens the positive U-shaped relationship, and the distance of cooperation weakens the influence of the structural hole constraint index on technology convergence. Therefore, managers and policymakers should encourage more industry-academia-research or patent alliances and designate policies to promote such cooperation.

摘要

技术融合是一种重要的组织创新能力,对于提高绿色可持续产业的核心竞争力至关重要。然而,现有研究主要集中于衡量技术融合,而忽略了影响这种融合能力的因素。因此,本研究试图通过深入分析组织间技术合作网络中的结构洞来弥补这一空白。本研究从专利的角度研究了技术融合,同时考虑了专利合作程度和合作距离的调节作用。它运用社会网络理论构建了组织间专利合作和技术融合网络,以分析结构洞对这种融合的影响。通过对 52 家具有密切专利合作关系的有色金属回收组织进行实证检验,结果表明组织间专利合作网络中的结构洞约束指数与技术融合呈正 U 型曲线关系。此外,组织间专利合作程度增强了这种正 U 型关系,而合作距离则削弱了结构洞约束指数对技术融合的影响。因此,管理者和政策制定者应鼓励更多的产学研或专利联盟,并制定政策以促进这种合作。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/104d/9355239/c16ad7ebc29d/pone.0271694.g001.jpg

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