يعرض 181 - 200 نتائج من 18,203 نتيجة بحث عن '(( c largest decrease ) OR ((( b larger decrease ) OR ( ((c large) OR (via large)) increases ))))', وقت الاستعلام: 0.56s تنقيح النتائج
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    Building Stable Pillar-Layered Metal–Organic Frameworks: Introduction of Unsaturated Bonds for Enhanced Efficiency in C<sub>2</sub>H<sub>2</sub>/CO<sub>2</sub> Separation حسب Wenke Yuan (7543331)

    منشور في 2024
    "…Pillar-layered structures represent a significant category within MOFs; however, the exploration of their chemical stability and systematic functionalization has been largely neglected. Herein, we fabricated a pillar-layered MOF (<b>Zn-L</b><sub><b>CC</b></sub>) with fsc topology, utilizing a tetradentate carboxylic ligand with bipyridine and Zn­(II) ions via the pillar-layered approach. …"
  4. 184

    Building Stable Pillar-Layered Metal–Organic Frameworks: Introduction of Unsaturated Bonds for Enhanced Efficiency in C<sub>2</sub>H<sub>2</sub>/CO<sub>2</sub> Separation حسب Wenke Yuan (7543331)

    منشور في 2024
    "…Pillar-layered structures represent a significant category within MOFs; however, the exploration of their chemical stability and systematic functionalization has been largely neglected. Herein, we fabricated a pillar-layered MOF (<b>Zn-L</b><sub><b>CC</b></sub>) with fsc topology, utilizing a tetradentate carboxylic ligand with bipyridine and Zn­(II) ions via the pillar-layered approach. …"
  5. 185

    Building Stable Pillar-Layered Metal–Organic Frameworks: Introduction of Unsaturated Bonds for Enhanced Efficiency in C<sub>2</sub>H<sub>2</sub>/CO<sub>2</sub> Separation حسب Wenke Yuan (7543331)

    منشور في 2024
    "…Pillar-layered structures represent a significant category within MOFs; however, the exploration of their chemical stability and systematic functionalization has been largely neglected. Herein, we fabricated a pillar-layered MOF (<b>Zn-L</b><sub><b>CC</b></sub>) with fsc topology, utilizing a tetradentate carboxylic ligand with bipyridine and Zn­(II) ions via the pillar-layered approach. …"
  6. 186

    Building Stable Pillar-Layered Metal–Organic Frameworks: Introduction of Unsaturated Bonds for Enhanced Efficiency in C<sub>2</sub>H<sub>2</sub>/CO<sub>2</sub> Separation حسب Wenke Yuan (7543331)

    منشور في 2024
    "…Pillar-layered structures represent a significant category within MOFs; however, the exploration of their chemical stability and systematic functionalization has been largely neglected. Herein, we fabricated a pillar-layered MOF (<b>Zn-L</b><sub><b>CC</b></sub>) with fsc topology, utilizing a tetradentate carboxylic ligand with bipyridine and Zn­(II) ions via the pillar-layered approach. …"
  7. 187

    Improving Toleration of Volume Expansion of Silicon-Based Anode by Constructing a Flexible Solid-Electrolyte Interface Film via Lithium Difluoro(bisoxalato) Phosphate Electrolyte A... حسب Jie Wang (16762)

    منشور في 2022
    "…Besides, the organics containing P and F atoms are also abundant in SEI, which has greater flexibility and can tolerate volume expansion of the Si@Graphite@C anode. Therefore, the STD+2% LiDFBOP electrolyte can improve the electrochemical performances of Si@Graphite@C/Li half-cells. …"
  8. 188

    Improving Toleration of Volume Expansion of Silicon-Based Anode by Constructing a Flexible Solid-Electrolyte Interface Film via Lithium Difluoro(bisoxalato) Phosphate Electrolyte A... حسب Jie Wang (16762)

    منشور في 2022
    "…Besides, the organics containing P and F atoms are also abundant in SEI, which has greater flexibility and can tolerate volume expansion of the Si@Graphite@C anode. Therefore, the STD+2% LiDFBOP electrolyte can improve the electrochemical performances of Si@Graphite@C/Li half-cells. …"
  9. 189

    Improving Toleration of Volume Expansion of Silicon-Based Anode by Constructing a Flexible Solid-Electrolyte Interface Film via Lithium Difluoro(bisoxalato) Phosphate Electrolyte A... حسب Jie Wang (16762)

    منشور في 2022
    "…Besides, the organics containing P and F atoms are also abundant in SEI, which has greater flexibility and can tolerate volume expansion of the Si@Graphite@C anode. Therefore, the STD+2% LiDFBOP electrolyte can improve the electrochemical performances of Si@Graphite@C/Li half-cells. …"
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