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Featured researches published by Yimin Mao.


Langmuir | 2018

Phase Separation and Stack Alignment in Aqueous Cellulose Nanocrystal Suspension under Weak Magnetic Field

Yimin Mao; Markus Bleuel; Yadong Lyu; Xin Zhang; Doug Henderson; Howard Wang; Robert M. Briber

Isotropic-nematic (I-N) transitions in cellulose nanocrystal (CNC) suspension and self-assembled structures in the isotropic and nematic phases were investigated using scattering and microscopy methods. A CNC suspension with a mass fraction of 7.4% spontaneously phase separated into an isotropic phase of 6.9% in the top layer and a nematic phase of 7.9% in the bottom layer. In both the phases, the CNC particles formed stacks with an interparticle distance being of ≈37 nm. One-dimensional small-angle neutron scattering (SANS) profiles due to both phases could be fitted using a stacking model considering finite particle sizes. SANS and atomic force microscopy studies indicate that the nematic phase in the bottom layer contains more populations of larger particles. A weak magnetic field of ≈0.5 T was able to induce a preferred orientation of CNC stacks in the nematic phase, with the stack normals being aligned with the field (perpendicular to the long axis of CNC particles). The Hermans orientation parameter, ⟨ P2⟩, was ≈0.5 for the nematic phase; it remained unchanged during the relaxation process of ≈10 h. The fraction of oriented CNC populations decreased during the relaxation; dramatic decrease occurred in the first 3 h. The top layer remained isotropic in the weak field. Polarized microscopy studies revealed that the nematic phase was chiral. Adjacent particles in a stack form a twisting angle of ≈0.6 °, resulting in a helix pitch distance of ≈22 μm.


Bulletin of the American Physical Society | 2018

A Small Angle Scattering Study of Water-resistant All-Cellulose Nanocomposites

Doug Henderson; Xin Zhang; Yimin Mao; Howard Wang; Robert M. Briber


Bulletin of the American Physical Society | 2018

Decoupling nanoparticle motion from elastic modulus in polymer nanocomposites in confined regime

Erkan Senses; Suresh Narayanan; Yimin Mao; Antonio Faraone


APS March Meeting 2018 | 2018

Dissolution and Precipitation of Oligomeric Cellulose in Lithium Hydroxide Solutions

Xin Zhang; Yimin Mao; Feng Jiang; Doug Henderson; Yoshiharu Nishiyama; Robert M. Briber; Howard Wang


Bulletin of the American Physical Society | 2017

All-Cellulose Composites of Nanofibril and Molecular Cellulose

Doug Henderson; Xin Zhang; Yimin Mao; Liangbing Hu; Robert M. Briber; Howard Wang


Bulletin of the American Physical Society | 2017

Small-angle Neutron Scattering Study on Cellulose Nanocrystal Solution: Phase Behavior and Magnetic Alignment

Yimin Mao; Xin Zhang; Doug Henderson; Howard Wang; Robert M. Briber


Bulletin of the American Physical Society | 2017

Effect of Water on Cellulose -- EMIM Ac -- DMSO Solution

Xin Zhang; Yimin Mao; Doug Henderson; Robert M. Briber; Howard Wang


Bulletin of the American Physical Society | 2017

Observation of Small Particle Driven Chain Disentanglements in Polymer Nanocomposites

Erkan Senses; Siyam M. Ansar; Christopher L. Kitchens; Suresh Narayanan; Yimin Mao; Antonio Faraone


Bulletin of the American Physical Society | 2017

Dynamically asymmetric polymer blends on nanoparticles: Effects on chain conformation, entanglement and particle mobility in nanocomposites

Antonio Faraone; Erkan Senses; Pinar Akcora; Madhusudan Tyagi; Yimin Mao; Suresh Narayanan


Bulletin of the American Physical Society | 2016

Thin blend films of cellulose and polyacrylonitrile

Rui Lu; Xin Zhang; Yimin Mao; Robert M. Briber; Howard Wang

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Antonio Faraone

National Institute of Standards and Technology

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Erkan Senses

Stevens Institute of Technology

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Madhusudan Tyagi

National Institute of Standards and Technology

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Suresh Narayanan

Argonne National Laboratory

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Markus Bleuel

National Institute of Standards and Technology

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Pinar Akcora

Stevens Institute of Technology

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Siyam M. Ansar

Mississippi State University

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Yadong Lyu

National Institute of Standards and Technology

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