In order to understand self-diffusion (D) of a charged, flexible, and porous nanoscopic molecule in water, we carry out very long, fully atomistic molecular dynamics simulation of PAMAM dendrimer up to eight generations in explicit salt water under varying pH. We find that while the radius of gyration (Rg) varies as N1/3, the self-diffusion constant (D) scales, surprisingly, as N-α, with α = 0.39 at high pH and 0.5 at neutral pH, indicating a dramatic breakdown of Stokes-Einstein relation for diffusion of charged nanoscopic molecules. The variation in D as a function of radius of gyration demonstrates the importance of treating water and ions explicitly in the diffusion process of a flexible nanoscopic molecule. In agreement with ...
Scaling behaviour for the water transport in nanoconfined geometries Eliodoro Chiavazzo1,*, Matteo F...
An experimental study of the self-diffusion and nuclear magnetic relaxation of poly(amidoamine) dend...
The transport of water in nanoconfined geometries is different from bulk phase and has tremendous im...
In order to understand self-diffusion (D) of a charged, flexible, and porous nanoscopic molecule in ...
Atomistic molecular dynamics simulations are used to study generation 5 polyamidoamine (PAMAM) dendr...
Atomistic molecular dynamics simulations are used to study generation 5 polyamidoamine (PAMAM) dendr...
Atomistic molecular dynamics simulations are used to study generation 5 polyamidoamine (PAMAM) dendr...
Atomistic molecular dynamics simulations are used to study generation 5 polyamidoamine (PAMAM) dendr...
The diffusion coefficient of charged PAMAM dendrimers was measured by fluorescence correlation spect...
The diffusion coefficient of charged PAMAM dendrimers was measured by fluorescence correlation spect...
An experimental study of the self-diffusion and nuclear magnetic relaxation of poly(amidoamine) dend...
An experimental study of the self-diffusion and nuclear magnetic relaxation of poly(amidoamine) dend...
Using several hundred nanoseconds long fully atomistic molecular dynamics simulation we demonstrate ...
An experimental study of the self-diffusion and nuclear magnetic relaxation of poly(amidoamine) dend...
Using several hundred nanoseconds long fully atomistic molecular dynamics simulation we demonstrate ...
Scaling behaviour for the water transport in nanoconfined geometries Eliodoro Chiavazzo1,*, Matteo F...
An experimental study of the self-diffusion and nuclear magnetic relaxation of poly(amidoamine) dend...
The transport of water in nanoconfined geometries is different from bulk phase and has tremendous im...
In order to understand self-diffusion (D) of a charged, flexible, and porous nanoscopic molecule in ...
Atomistic molecular dynamics simulations are used to study generation 5 polyamidoamine (PAMAM) dendr...
Atomistic molecular dynamics simulations are used to study generation 5 polyamidoamine (PAMAM) dendr...
Atomistic molecular dynamics simulations are used to study generation 5 polyamidoamine (PAMAM) dendr...
Atomistic molecular dynamics simulations are used to study generation 5 polyamidoamine (PAMAM) dendr...
The diffusion coefficient of charged PAMAM dendrimers was measured by fluorescence correlation spect...
The diffusion coefficient of charged PAMAM dendrimers was measured by fluorescence correlation spect...
An experimental study of the self-diffusion and nuclear magnetic relaxation of poly(amidoamine) dend...
An experimental study of the self-diffusion and nuclear magnetic relaxation of poly(amidoamine) dend...
Using several hundred nanoseconds long fully atomistic molecular dynamics simulation we demonstrate ...
An experimental study of the self-diffusion and nuclear magnetic relaxation of poly(amidoamine) dend...
Using several hundred nanoseconds long fully atomistic molecular dynamics simulation we demonstrate ...
Scaling behaviour for the water transport in nanoconfined geometries Eliodoro Chiavazzo1,*, Matteo F...
An experimental study of the self-diffusion and nuclear magnetic relaxation of poly(amidoamine) dend...
The transport of water in nanoconfined geometries is different from bulk phase and has tremendous im...