Showing 23,961 - 23,980 results of 113,932 for search '(( 5 ((mean decrease) OR (a decrease)) ) OR ( a ((fold decrease) OR (point decrease)) ))', query time: 1.10s Refine Results
  1. 23961

    Triboelectric Nanogenerators of the Li Salt of Adipic Acid-Incorporated Poly(vinyl alcohol) Composites Toward Biomechanical Motion Energy Harvesting and in Sports Application by Prasanjit K. Dey (19946302)

    Published 2024
    “…The open-circuit voltage in the PVA/Li-AA composite-based TENG of 15 wt % Li-AA registered ∼90 V and a short-circuit current of ∼45 μA. Moreover, the device showed a maximum power density of ∼2.75 W/m<sup>2</sup> at 2 MΩ resistance. …”
  2. 23962

    DataSheet1_A Two-step Strategy for High-Value-Added Utilization of Rapeseed Meal by Concurrent Improvement of Phenolic Extraction and Protein Conversion for Microbial Iturin A Prod... by Meng Wang (124646)

    Published 2021
    “…This could not only increase extraction efficiency and antioxidant property of phenolic compounds by about 2-fold, but also improve conversion efficiency of protein residue into iturin A production by Bacillus amyloliquefaciens CX-20 by about 33%. …”
  3. 23963

    (A) MMP-9 mRNA was assayed by RT-PCR, and normalized to cyclophilin RNA by Vanessa L Nordell (59811)

    Published 2011
    “…</p> MMP-9 mRNA was significantly increased by lesion, and estrogen teatment resulted in a small but signficant decrease in MMP-9 mRNA expression. …”
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  14. 23974

    Ligand Aspect Ratio as a Decisive Factor for the Self-Assembly of Coordination Cages by Suzanne M. Jansze (1403719)

    Published 2016
    “…It is possible to control the geometry and the composition of metallasupramolecular assemblies via the aspect ratio of their ligands. This point is demonstrated for a series of iron- and palladium-based coordination cages. …”
  15. 23975

    Ligand Aspect Ratio as a Decisive Factor for the Self-Assembly of Coordination Cages by Suzanne M. Jansze (1403719)

    Published 2016
    “…It is possible to control the geometry and the composition of metallasupramolecular assemblies via the aspect ratio of their ligands. This point is demonstrated for a series of iron- and palladium-based coordination cages. …”
  16. 23976

    Ligand Aspect Ratio as a Decisive Factor for the Self-Assembly of Coordination Cages by Suzanne M. Jansze (1403719)

    Published 2016
    “…It is possible to control the geometry and the composition of metallasupramolecular assemblies via the aspect ratio of their ligands. This point is demonstrated for a series of iron- and palladium-based coordination cages. …”
  17. 23977

    Ligand Aspect Ratio as a Decisive Factor for the Self-Assembly of Coordination Cages by Suzanne M. Jansze (1403719)

    Published 2016
    “…It is possible to control the geometry and the composition of metallasupramolecular assemblies via the aspect ratio of their ligands. This point is demonstrated for a series of iron- and palladium-based coordination cages. …”
  18. 23978

    Ligand Aspect Ratio as a Decisive Factor for the Self-Assembly of Coordination Cages by Suzanne M. Jansze (1403719)

    Published 2016
    “…It is possible to control the geometry and the composition of metallasupramolecular assemblies via the aspect ratio of their ligands. This point is demonstrated for a series of iron- and palladium-based coordination cages. …”
  19. 23979

    Ligand Aspect Ratio as a Decisive Factor for the Self-Assembly of Coordination Cages by Suzanne M. Jansze (1403719)

    Published 2016
    “…It is possible to control the geometry and the composition of metallasupramolecular assemblies via the aspect ratio of their ligands. This point is demonstrated for a series of iron- and palladium-based coordination cages. …”
  20. 23980

    Ligand Aspect Ratio as a Decisive Factor for the Self-Assembly of Coordination Cages by Suzanne M. Jansze (1403719)

    Published 2016
    “…It is possible to control the geometry and the composition of metallasupramolecular assemblies via the aspect ratio of their ligands. This point is demonstrated for a series of iron- and palladium-based coordination cages. …”