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linear decrease » linear increase (Expand Search)
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large decrease » marked decrease (Expand Search), large increases (Expand Search), large degree (Expand Search)
a large » _ large (Expand Search)
linear decrease » linear increase (Expand Search)
larger decrease » marked decrease (Expand Search)
large decrease » marked decrease (Expand Search), large increases (Expand Search), large degree (Expand Search)
a large » _ large (Expand Search)
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Capturing the Transient Microstructure of a Physically Assembled Gel Subjected to Temperature and Large Deformation
Published 2021“…Here, we report the real-time change in the structure of physically assembled triblock copolymer gels that consist of 10 and 20 wt % of poly(styrene)–poly(isoprene)–poly(styrene) [PS–PI–PS] triblock copolymer in mineral oil (i) during the gelation process with decreasing temperature, (ii) subjected to large oscillatory deformation, and (iii) during the stress-relaxation process after the application of a step strain. …”
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87
Capturing the Transient Microstructure of a Physically Assembled Gel Subjected to Temperature and Large Deformation
Published 2021“…Here, we report the real-time change in the structure of physically assembled triblock copolymer gels that consist of 10 and 20 wt % of poly(styrene)–poly(isoprene)–poly(styrene) [PS–PI–PS] triblock copolymer in mineral oil (i) during the gelation process with decreasing temperature, (ii) subjected to large oscillatory deformation, and (iii) during the stress-relaxation process after the application of a step strain. …”
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Triple B←N Lewis Pair-Functionalized Triazatruxenes with Large Stokes Shifts
Published 2023“…The introduction of B←N Lewis pairs not only results in a large decrease in the HOMO–LUMO gap but also lowers the LUMO to −3.00 eV. …”
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Active Diffusion of Self-Propelled Particles in Flexible Polymer Networks
Published 2022“…However, when the particle size is increased to be comparable to the mesh size, the active particles explore the polymer network via the trapping-and-hopping mechanism. If the particle is larger than the mesh, it captures the collective viscoelastic dynamics from the polymer network at short times and the simple diffusion of the total system at large times. …”
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97
Active Diffusion of Self-Propelled Particles in Flexible Polymer Networks
Published 2022“…However, when the particle size is increased to be comparable to the mesh size, the active particles explore the polymer network via the trapping-and-hopping mechanism. If the particle is larger than the mesh, it captures the collective viscoelastic dynamics from the polymer network at short times and the simple diffusion of the total system at large times. …”
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98
Active Diffusion of Self-Propelled Particles in Flexible Polymer Networks
Published 2022“…However, when the particle size is increased to be comparable to the mesh size, the active particles explore the polymer network via the trapping-and-hopping mechanism. If the particle is larger than the mesh, it captures the collective viscoelastic dynamics from the polymer network at short times and the simple diffusion of the total system at large times. …”
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99
Active Diffusion of Self-Propelled Particles in Flexible Polymer Networks
Published 2022“…However, when the particle size is increased to be comparable to the mesh size, the active particles explore the polymer network via the trapping-and-hopping mechanism. If the particle is larger than the mesh, it captures the collective viscoelastic dynamics from the polymer network at short times and the simple diffusion of the total system at large times. …”
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100
Active Diffusion of Self-Propelled Particles in Flexible Polymer Networks
Published 2022“…However, when the particle size is increased to be comparable to the mesh size, the active particles explore the polymer network via the trapping-and-hopping mechanism. If the particle is larger than the mesh, it captures the collective viscoelastic dynamics from the polymer network at short times and the simple diffusion of the total system at large times. …”