[PDF][PDF] Controlling the nanoscale rotational behaviors of nanoparticles on the cell membranes: a computational model

QJ Ji, B Yuan, XM Lu, K Yang, YQ Ma - Small, 2016 - drive.google.com
Cell membrane is one of the most important components of a cell. It separates a cell from the
surrounding environment and protects the integrity of the cell.[1] Besides this, numerous …

Controlling the Nanoscale Rotational Behaviors of Nanoparticles on the Cell Membranes: A Computational Model.

QJ Ji, B Yuan, XM Lu, K Yang, YQ Ma - Small (Weinheim an der …, 2015 - europepmc.org
Nanoparticles prefer to bind to a membrane with a surface coated by short or rigid ligands,
as shown by computer simulations. To realize such a preferred configuration, the …

Controlling the Nanoscale Rotational Behaviors of Nanoparticles on the Cell Membranes: A Computational Model

QJ Ji, B Yuan, XM Lu, K Yang… - Small (Weinheim an …, 2016 - pubmed.ncbi.nlm.nih.gov
Nanoparticles prefer to bind to a membrane with a surface coated by short or rigid ligands,
as shown by computer simulations. To realize such a preferred configuration, the …

[引用][C] Controlling the Nanoscale Rotational Behaviors of Nanoparticles on the Cell Membranes: A Computational Model

QJ Ji, B Yuan, XM Lu, K Yang, YQ Ma - Small, 2016 - Wiley Online Library
Cell membrane is one of the most important components of a cell. It separates a cell from the
surrounding environment and protects the integrity of the cell.[1] Besides this, numerous …

Controlling the Nanoscale Rotational Behaviors of Nanoparticles on the Cell Membranes: A Computational Model

QJ Ji, B Yuan, XM Lu, K Yang, YQ Ma - Small, 2016 - infona.pl
Nanoparticles prefer to bind to a membrane with a surface coated by short or rigid ligands,
as shown by computer simulations. To realize such a preferred configuration, the …