Showing 21 - 40 results of 46,273 for search '(((( i large decrease ) OR ( c also increased ))) OR ( ((i large) OR (via large)) decrease ))', query time: 2.15s Refine Results
  1. 21

    Large and Tunable Wavelength Blue Shifts in Luminescent Piezochromism of Cu(I) Complexes via a Guest Encapsulation Strategy by Wan-Tao Chen (330486)

    Published 2024
    “…In this work, a series of Cu­(I) complexes that display blue-shifted and enhanced luminescence under pressure are designed via a guest encapsulation strategy. …”
  2. 22

    Large and Tunable Wavelength Blue Shifts in Luminescent Piezochromism of Cu(I) Complexes via a Guest Encapsulation Strategy by Wan-Tao Chen (330486)

    Published 2024
    “…In this work, a series of Cu­(I) complexes that display blue-shifted and enhanced luminescence under pressure are designed via a guest encapsulation strategy. …”
  3. 23

    Large and Tunable Wavelength Blue Shifts in Luminescent Piezochromism of Cu(I) Complexes via a Guest Encapsulation Strategy by Wan-Tao Chen (330486)

    Published 2024
    “…In this work, a series of Cu­(I) complexes that display blue-shifted and enhanced luminescence under pressure are designed via a guest encapsulation strategy. …”
  4. 24

    Large and Tunable Wavelength Blue Shifts in Luminescent Piezochromism of Cu(I) Complexes via a Guest Encapsulation Strategy by Wan-Tao Chen (330486)

    Published 2024
    “…In this work, a series of Cu­(I) complexes that display blue-shifted and enhanced luminescence under pressure are designed via a guest encapsulation strategy. …”
  5. 25

    Large and Tunable Wavelength Blue Shifts in Luminescent Piezochromism of Cu(I) Complexes via a Guest Encapsulation Strategy by Wan-Tao Chen (330486)

    Published 2024
    “…In this work, a series of Cu­(I) complexes that display blue-shifted and enhanced luminescence under pressure are designed via a guest encapsulation strategy. …”
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    In superadditive networks, more enhancers decrease noise and fidelity. by Alvaro Fletcher (15675430)

    Published 2023
    “…Meanwhile <i>d</i><sub>1</sub>, the rate of increase for <i>k</i><sub>on</sub>, was chosen to be 0.01 for both <i>T</i><sub>1</sub> and <i>T</i><sub>2</sub> (B) Unlike in the subadditive case, enhancer numbers decrease transcriptional fidelity and also decrease noise. …”
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