Search alternatives:
significant attention » significant potential (Expand Search), significant reduction (Expand Search)
changes decrease » change increases (Expand Search), largest decrease (Expand Search)
larger decrease » marked decrease (Expand Search)
attention paid » attention based (Expand Search)
significant attention » significant potential (Expand Search), significant reduction (Expand Search)
changes decrease » change increases (Expand Search), largest decrease (Expand Search)
larger decrease » marked decrease (Expand Search)
attention paid » attention based (Expand Search)
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Real-Time Polymer Viscosity–Catalytic Activity Relationships on the Microscale
Published 2022“…Consistent with this diffusional-access model, these viscosity changes were found to be monomer-dependent, showing larger changes in microenvironment viscosity in cross-linked polydicyclopentadiene compared to non-crosslinked polynorbornene. …”
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Real-Time Polymer Viscosity–Catalytic Activity Relationships on the Microscale
Published 2022“…Consistent with this diffusional-access model, these viscosity changes were found to be monomer-dependent, showing larger changes in microenvironment viscosity in cross-linked polydicyclopentadiene compared to non-crosslinked polynorbornene. …”
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Real-Time Polymer Viscosity–Catalytic Activity Relationships on the Microscale
Published 2022“…Consistent with this diffusional-access model, these viscosity changes were found to be monomer-dependent, showing larger changes in microenvironment viscosity in cross-linked polydicyclopentadiene compared to non-crosslinked polynorbornene. …”
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Real-Time Polymer Viscosity–Catalytic Activity Relationships on the Microscale
Published 2022“…Consistent with this diffusional-access model, these viscosity changes were found to be monomer-dependent, showing larger changes in microenvironment viscosity in cross-linked polydicyclopentadiene compared to non-crosslinked polynorbornene. …”
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Real-Time Polymer Viscosity–Catalytic Activity Relationships on the Microscale
Published 2022“…Consistent with this diffusional-access model, these viscosity changes were found to be monomer-dependent, showing larger changes in microenvironment viscosity in cross-linked polydicyclopentadiene compared to non-crosslinked polynorbornene. …”
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Real-Time Polymer Viscosity–Catalytic Activity Relationships on the Microscale
Published 2022“…Consistent with this diffusional-access model, these viscosity changes were found to be monomer-dependent, showing larger changes in microenvironment viscosity in cross-linked polydicyclopentadiene compared to non-crosslinked polynorbornene. …”
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Real-Time Polymer Viscosity–Catalytic Activity Relationships on the Microscale
Published 2022“…Consistent with this diffusional-access model, these viscosity changes were found to be monomer-dependent, showing larger changes in microenvironment viscosity in cross-linked polydicyclopentadiene compared to non-crosslinked polynorbornene. …”
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Real-Time Polymer Viscosity–Catalytic Activity Relationships on the Microscale
Published 2022“…Consistent with this diffusional-access model, these viscosity changes were found to be monomer-dependent, showing larger changes in microenvironment viscosity in cross-linked polydicyclopentadiene compared to non-crosslinked polynorbornene. …”
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Real-Time Polymer Viscosity–Catalytic Activity Relationships on the Microscale
Published 2022“…Consistent with this diffusional-access model, these viscosity changes were found to be monomer-dependent, showing larger changes in microenvironment viscosity in cross-linked polydicyclopentadiene compared to non-crosslinked polynorbornene. …”
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Real-Time Polymer Viscosity–Catalytic Activity Relationships on the Microscale
Published 2022“…Consistent with this diffusional-access model, these viscosity changes were found to be monomer-dependent, showing larger changes in microenvironment viscosity in cross-linked polydicyclopentadiene compared to non-crosslinked polynorbornene. …”
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