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Embodied intelligence-driven adaptive collaboration in supply chains: A four-dimensional synergy framework and mechanism analysis
Loading metrics Open Access Peer-reviewed Research Article Citation: Ding Z, Lin H, Xu H, Zhang X, Zhu X (2026) Embodied intelligence-driven adaptive collaboration in supply chains: A four-dimensional synergy framework and mechanism analysis. PLoS One 21(6): e0351058. https://doi.org/10.1371/journal.pone.0351058 Editor: Yang (Jack) Lu, Beijing Technology and Business University, CHINA Received: March 2, 2026; Accepted: May 21, 2026; Published: June 9, 2026 Copyright: © 2026 Ding et al.
Identifying the Synergistic Role of Graphitic Nitrogen and Cobalt Nanoparticle in Electron Transfer Pathway Toward Fenton-Like Catalysis
Hao Liang and Shuhan Qin contributed equally to this work. H.Liang, S.Qin, X.Zhang, et al. “Identifying the Synergistic Role of Graphitic Nitrogen and Cobalt Nanoparticle in Electron Transfer Pathway Toward Fenton-Like Catalysis.” Small (2026): e73589. https://doi.org/10.1002/smll.73589 Conflicts of Interest The authors declare no conflicts of interest. Data Availability Statement The data that support the findings of this study are available from the corresponding author upon reasonable request.
Global variation in the ratio of sapwood to leaf area explained by optimality principles
Data availability The data that support the findings of this study are openly available in figshare at https://doi.org/10.6084/m9.figshare.12625418.v1 (Sanchez-Martinez et al., 2020) and supplementary data in He et al. (2020). Supporting Information Filename Description nph70916-sup-0001-Supinfo.docxWord 2007 document , 8.2 MB Fig. S1 The theoretical sensitivity of loge-transformed ratio of sapwood to leaf area (vH) to ambient CO2. Fig.
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