A platform for research: civil engineering, architecture and urbanism
Influence of Supply Chain Collaborative Innovation on Sustainable Development of Supply Chain: A Study on Chinese Enterprises
The recent trade friction between the two largest economies, US and China, is having a profound impact on the sustainable development of supply chains at a global scale. Supply chain collaborative innovation has not only become the main means for enterprises in various countries to cope with imponderable changes, but also been the driver of increasing supply chain dynamic capability and of achieving sustainable development of supply chains. Based on the survey data of 510 Chinese enterprises, this paper adopts the hierarchical regression analysis and a structural equation model to study the impact of supply chain collaborative innovation on the sustainable development of supply chains. The results show that: (1) Three modes of supply chain collaborative innovation (namely, technology collaborative innovation, management collaborative innovation, and market collaborative innovation) have different effects on supply chain dynamic capability and sustainable supply chain performance. (2) Supply chain dynamic capability plays a significant intermediary role between supply chain collaborative innovation and sustainable supply chain performance. (3) Supply chain technology collaborative innovation has the greatest direct impact on sustainable supply chain performance, followed by supply chain management collaborative innovation. However, the direct effect of supply chain market collaborative innovation on sustainable supply chain performance is not significant; under the intermediary role of dynamic capability, supply chain market collaborative innovation has a significant indirect effect on sustainable supply chain performance.
Influence of Supply Chain Collaborative Innovation on Sustainable Development of Supply Chain: A Study on Chinese Enterprises
The recent trade friction between the two largest economies, US and China, is having a profound impact on the sustainable development of supply chains at a global scale. Supply chain collaborative innovation has not only become the main means for enterprises in various countries to cope with imponderable changes, but also been the driver of increasing supply chain dynamic capability and of achieving sustainable development of supply chains. Based on the survey data of 510 Chinese enterprises, this paper adopts the hierarchical regression analysis and a structural equation model to study the impact of supply chain collaborative innovation on the sustainable development of supply chains. The results show that: (1) Three modes of supply chain collaborative innovation (namely, technology collaborative innovation, management collaborative innovation, and market collaborative innovation) have different effects on supply chain dynamic capability and sustainable supply chain performance. (2) Supply chain dynamic capability plays a significant intermediary role between supply chain collaborative innovation and sustainable supply chain performance. (3) Supply chain technology collaborative innovation has the greatest direct impact on sustainable supply chain performance, followed by supply chain management collaborative innovation. However, the direct effect of supply chain market collaborative innovation on sustainable supply chain performance is not significant; under the intermediary role of dynamic capability, supply chain market collaborative innovation has a significant indirect effect on sustainable supply chain performance.
Influence of Supply Chain Collaborative Innovation on Sustainable Development of Supply Chain: A Study on Chinese Enterprises
Hongmei Shan (author) / Ying Li (author) / Jing Shi (author)
2020
Article (Journal)
Electronic Resource
Unknown
supply chain collaborative innovation , sustainable supply chain performance , supply chain dynamic capability , hierarchical regression analysis , structural equation model , Environmental effects of industries and plants , TD194-195 , Renewable energy sources , TJ807-830 , Environmental sciences , GE1-350
Metadata by DOAJ is licensed under CC BY-SA 1.0
Moving from Supply Chain to Collaborative Supply Net
British Library Conference Proceedings | 2001
|