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知识管理
稳健性(进化)
计算机科学
对偶(语法数字)
业务
数字化制造
内生性
持续性
联动装置(软件)
面板数据
数字化转型
用户创新
工程类
数据科学
信息技术
过程管理
产业组织
制造业
新兴技术
度量(数据仓库)
创新管理
可用性
微观基础
标识
DOI:10.1016/j.clrc.2026.100392
摘要
Amid escalating environmental challenges and rapid digital transformation, sustained green innovation (SGI) has become a strategic imperative for manufacturing firms. Drawing on the knowledge-based view, this study examines whether and how firms’ digital innovation network embedding (DINE) enhances SGI through two complementary mechanisms—knowledge recombinative creation (KRC) and knowledge recombinative reuse (KRR). Using panel data on Chinese listed manufacturing firms from 2013 to 2021 and constructing patent co-application–based digital collaboration networks, we test the hypotheses with fixed-effects and instrumental-variable models. To mitigate endogeneity, DINE is instrumented by industry–province peer embedding (excluding the focal firm) and province-by-year fixed effects are absorbed to account for time-varying regional policy and institutional shocks. The results show that DINE significantly improves SGI, while KRC and KRR jointly mediate this relationship, explaining 37.5% of the total effect. Robustness checks and endogeneity corrections support the validity of the findings. Moreover, the DINE–SGI linkage is stronger in technology-intensive industries, highlighting contextual contingencies in digital–green synergies. This study advances understanding of how digitally embedded knowledge flows sustain green innovation and offers practical implications for building digital collaboration ecosystems that support long-term sustainability in emerging economies. • Digital network embedding increases sustained green innovation in manufacturing. • Patent co-application networks measure firms’ digital collaboration centrality. • Recombinative creation and reuse jointly mediate 37.5% of the DINE effect. • Digital–green synergy is stronger in technology-intensive industries.
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