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NETWORKTREE

LA CRESCENTA-USA

Company Name:
Corporate Name:
NETWORKTREE
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Company Address: 3738 1ST AVE,LA CRESCENTA,CA,USA 
ZIP Code:
Postal Code:
91214 
Telephone Number: 8189571658 (+1-818-957-1658) 
Fax Number: 8189578297 (+1-818-957-8297) 
Website:
 
Email:
 
USA SIC Code(Standard Industrial Classification Code):
737904 
USA SIC Description:
Computers 
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Company News:
  • Angewandte Chemie International Edition - Wiley Online Library
    We report a scalable and economical solid-state pyrolysis strategy for cobalt single-atom catalysts (Co-SACs) costing ∼$35 kg −1 Hydrothermal O-substitution precisely engineers the coordination environment from Co-N3O1 to Co-N2O2
  • lt;br hidden= gt;单一钴原子催化剂的分子配位遗传,用于两 . . .
    本文介绍了分子配位遗传策略,用于合成具有明确配位环境的 2e-ORR SACs,并研究了活性位点的形成机制。 我们选择包括 [Co(II)Salen]、CoPc、Co(acac)2 等前体,以实现特定的构型(Co–N2O2, Co–N4, Co–O4)。 我们的结果表明,前驱体在较低温度下会分解并部分嵌入碳基底,从而促进所需构型的继承。 随着温度升高,继承的构型会重新排列,逐渐形成双原子结构和金属颗粒。 在 Co–N 2O2、Co–N 4 和 Co–O 4 催化剂中,Co–N2O2 催化剂表现出最高的 2e-ORR 选择性。 本研究揭示了通过分子配位遗传策略调控 SAC 活性位点结构的机制,可能为进一步研究 SAC 活性位点的精确调控和形成机制提供新见解。
  • 学院井立强课题组Adv Mater:Co-N2O2构型单原子锚定氮化 . . .
    基于此,本文首次报道了一种通过硼酸对Co的预锚定而形成Co-OB-三聚氰酸-三聚氰胺超分子前驱体,进一步热缩聚合成法,成功地制备出具有Co-N2O2双原子配位结构的单原子Co锚定的g-C3N4纳米片(sCo BCN),并用于构建新型可视化DeY--sCo BCN光敏化检测体系。
  • Single-Atomic Co–N2O2 Sites to Construct Quinazolinone Scaffolds via . . .
    Based on the XAS investigations, it has been established that the electronic metal–support interaction (EMSI) of Co with N and O atoms moderates the electronic nature of the isolated Co atoms, resulting in improved catalytic activity
  • Improving CO - ScienceDirect
    Herein, utilizing carbon nanotube (CNT) heterostructured semi-open Co-N 2 O 2 catalytic configurations (Co-salophen), we have demonstrated the role of the local microenvironment on promoting ECR through regulating the location of hydroxyl groups
  • 清华大学学位论文服务系统
    针对酸性条件下的2e– 氧还原制备H2O2的反应特点,开发了一种金属-有机配合物低温转化的策略,制备了碳点负载的两个N和两个O共配位的单原子Co?N2O2位点催化剂。 Co单原子位点新颖的电子结构使得该催化剂实现了酸性条件下将O2高效、高选择性转化为H2O2。 该工作通过单原子位点配位结构的精确调控,实现了2e– 氧还原催化性能的提升。
  • 通过串联氧化反应,利用单个原子Co–N2O2位点构建喹唑啉 . . .
    基于这一认识,本研究开发了一种制备单原子催化剂Co(Co SAC)的方法:该催化剂由Co-N 2 O 2 组成,通过简单的热解合成工艺固定在多孔碳载体上,其中稻壳被用作碳源,而钴腺嘌呤金属有机框架Bio-MOF-11则作为钴的来源。
  • Coordination Reconstruction Enhanced Synergistic . . .
    We report a scalable and economical solid-state pyrolysis strategy for cobalt single-atom catalysts (Co-SACs) costing ∼$35 kg−1 Hydrothermal O-substitution precisely engineers the coordination environment from Co-N3O1 to Co-N2O2
  • Reduction of dioxygen to water by a Co (N2O2) complex with a 2,2 . . .
    We report a Co-based complex for the reduction of O2 to H2O utilizing decamethylferrocene as chemical reductant and acetic acid as a proton donor in methanol solution
  • 中国科学院马冬冬与朱起龙等:通过定制半开式Co-N2O2 . . .
    总之,本研究通过定制羟基微环境,成功解决了CO<sub>2< sub>电化学还原中的关键问题,展示了其在实际应用中的巨大潜力,为未来相关领域的研究提供了重要的参考和启示。




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