杨武,陈培,Gad David. 专利家族视角下技术演化路径依赖研究——以光刻技术为例[J]. 科技进步与对策, 2022, 39(23): 1-11., doi: 10.6049/kjjbydc.2021110307.
Yang Wu,Chen Pei,Gad David. Path Dependence in Technology Evolution from the Perspective of Patent Families: An Example of Lithography[J]. SCIENCE & TECHNOLOGY PROGRESS AND POLICY, 2022, 39(23): 1-11., doi: 10.6049/kjjbydc.2021110307.
曹钰华,李晶. 数字化情境下创业动态能力有效前因组态研究[J]. 科技进步与对策, 2022, 39(23): 12-21., doi: 10.6049/kjjbydc.2021110179.
Cao Yuhua,Li Jing. Effective Antecedent Configuration of Entrepreneurial Dynamic Capability in the Digital Context[J]. SCIENCE & TECHNOLOGY PROGRESS AND POLICY, 2022, 39(23): 12-21., doi: 10.6049/kjjbydc.2021110179.
匡敏,范逢春. 技术进步偏向、创新要素配置与经济韧性[J]. 科技进步与对策, 2022, 39(23): 22-32., doi: 10.6049/kjjbydc.2022050798.
Kuang Min,Fan Fengchun. Technological Progress Bias, Innovation Factor Allocation and Economic Resilience[J]. SCIENCE & TECHNOLOGY PROGRESS AND POLICY, 2022, 39(23): 22-32., doi: 10.6049/kjjbydc.2022050798.
李荣杰,李娜,陈健强,阎晓. 政府—市场协同创新与能源结构双重替代[J]. 科技进步与对策, 2022, 39(23): 33-43., doi: 10.6049/kjjbydc.2021090178.
Li Rongjie,Li Na,Chen Jianqiang,Yan Xiao. Government-market Collaborative Innovation and Dual Replacement of Energy Structure[J]. SCIENCE & TECHNOLOGY PROGRESS AND POLICY, 2022, 39(23): 33-43., doi: 10.6049/kjjbydc.2021090178.
葛立宇,于井远. 智慧城市建设与城市碳排放:基于数字技术赋能路径的检验[J]. 科技进步与对策, 2022, 39(23): 44-54., doi: 10.6049/kjjbydc.2022060026.
Ge Liyu,Yu Jingyuan. Smart City Construction and Urban Carbon Emissions:The Test Based on Digital Technology Empowerment Path[J]. SCIENCE & TECHNOLOGY PROGRESS AND POLICY, 2022, 39(23): 44-54., doi: 10.6049/kjjbydc.2022060026.
王守文,赵敏,徐丽洁. 长江经济带发展战略对区域科学竞争力的提升效应——基于双重差分法的实证研究[J]. 科技进步与对策, 2022, 39(23): 55-64., doi: 10.6049/kjjbydc.2022060011.
Wang Shouwen,Zhao Min,Xu Lijie. The Promotion Effect of the Development Strategy of Yangtze River Economic Belt on Regional Scientific Competitiveness: An Empirical Research Based on DID[J]. SCIENCE & TECHNOLOGY PROGRESS AND POLICY, 2022, 39(23): 55-64., doi: 10.6049/kjjbydc.2022060011.
杜宝贵,杨帮兴. 科技资源配置何以促进高技术产业TFP增长——基于29个省域案例的fsQCA分析[J]. 科技进步与对策, 2022, 39(23): 65-75., doi: 10.6049/kjjbydc.2022040542.
Du Baogui,Yang Bangxing. How the Allocation of Scientific and Technological Resources Promote the Growth of TFP in High-Tech Industries:An fsQCA Analysis Based on 29 Provincial Cases[J]. SCIENCE & TECHNOLOGY PROGRESS AND POLICY, 2022, 39(23): 65-75., doi: 10.6049/kjjbydc.2022040542.
邢会,姜影,陈园园. “双碳”目标下碳交易与制造业绿色全要素生产率——基于异质性技术创新模式的机制检验[J]. 科技进步与对策, 2022, 39(23): 76-86., doi: 10.6049/kjjbydc.2022040659.
Xing Hui,Jiang Ying,Chen Yuanyuan. Carbon Trading and Green Total Factor Productivity in Manufacturing Industry under the "Double Carbon" Goal:A Mechanism Test Based on Heterogeneous Technology Innovation Model[J]. SCIENCE & TECHNOLOGY PROGRESS AND POLICY, 2022, 39(23): 76-86., doi: 10.6049/kjjbydc.2022040659.
马亮,张淑敏. 在位企业非连续性技术变革的技术代际桥研究[J]. 科技进步与对策, 2022, 39(23): 87-96., doi: 10.6049/kjjbydc.2021040466.
Ma Liang,Zhang Shumin. Technological Intergenerational "Bridges" of Discontinuous Technological Change in Incumbent Enterprises[J]. SCIENCE & TECHNOLOGY PROGRESS AND POLICY, 2022, 39(23): 87-96., doi: 10.6049/kjjbydc.2021040466.
姜忠辉,吕晓菲,罗均梅. 基于结构视角的公司创业生态系统分类研究[J]. 科技进步与对策, 2022, 39(23): 97-107., doi: 10.6049/kjjbydc.2021080816.
Jiang Zhonghui,Lyu Xiaofei,Luo Junmei. The Classification of Corporate Entrepreneurial Ecosystem from the Perspective of Structure[J]. SCIENCE & TECHNOLOGY PROGRESS AND POLICY, 2022, 39(23): 97-107., doi: 10.6049/kjjbydc.2021080816.
阮荣彬,陈莞. 基于ISM框架的企业科技向善影响因素分析[J]. 科技进步与对策, 2022, 39(23): 108-118., doi: 10.6049/kjjbydc.2021110244.
Ruan Rongbin,Chen Wan. The Influencing Factors of Corporate Technology for Social Good Based on ISM[J]. SCIENCE & TECHNOLOGY PROGRESS AND POLICY, 2022, 39(23): 108-118., doi: 10.6049/kjjbydc.2021110244.
程德俊,王肖宇. 员工地位竞争动机、知识分享行为与创新绩效——基于嵌入性悖论视角[J]. 科技进步与对策, 2022, 39(23): 119-127., doi: 10.6049/kjjbydc.2022050498.
Cheng Dejun,Wang Xiaoyu. Employee Status-striving Motivation, Knowledge Sharing Behavior and Innovation Performance:A Study from the Perspective of Embeddedness Paradox[J]. SCIENCE & TECHNOLOGY PROGRESS AND POLICY, 2022, 39(23): 119-127., doi: 10.6049/kjjbydc.2022050498.
孙磊华,何海燕,常晓涵,袁伟. 军民深度协同对企业关键核心技术突破的影响[J]. 科技进步与对策, 2022, 39(23): 128-139., doi: 10.6049/kjjbydc.2022050784.
Sun Leihua,He Haiyan,Chang Xiaohan,Yuan Wei. The Influence of the Military-civilian Deep Collaboration in Enterprises' Breakthrough of Key and Core Technologies[J]. SCIENCE & TECHNOLOGY PROGRESS AND POLICY, 2022, 39(23): 128-139., doi: 10.6049/kjjbydc.2022050784.
李小丽,陈蕾. 技术多元化、发明者网络嵌入与军民融合企业技术创新效率[J]. 科技进步与对策, 2022, 39(23): 140-150., doi: 10.6049/kjjbydc.2021110092.
Li Xiaoli,Chen Lei. Technological Diversification, Inventor Network Embedding and Technological Innovation Efficiency of Civil-Military Integration Enterprises[J]. SCIENCE & TECHNOLOGY PROGRESS AND POLICY, 2022, 39(23): 140-150., doi: 10.6049/kjjbydc.2021110092.
吕荣杰,冯昱玮,张义明,郝力晓. 员工越轨创新研究述评与展望[J]. 科技进步与对策, 2022, 39(23): 151-160., doi: 10.6049/kjjbydc.2022020491.
Lyu Rongjie,Feng Yuwei,Zhang Yiming,Hao Lixiao. A Literature Review and Prospects of Employees′ Deviant Innovation[J]. SCIENCE & TECHNOLOGY PROGRESS AND POLICY, 2022, 39(23): 151-160., doi: 10.6049/kjjbydc.2022020491.