| Literature DB >> 28181164 |
Iurii Gudyma1, Victor Ivashko2, Andrej Bobák3.
Abstract
We perform Monte Carlo simulations to analyze the surface and size effects in spin-crossover nanocrystals using an Ising-like model including surface and core intermolecular interactions. The consequences of downsizing effect on the transition temperature and the width of hysteresis as finger of the system cooperativity are discussed. The critical temperature is calculated using the real-space renormalization method. The obtained results are in agreement with the experimental data.Entities:
Keywords: Cooperative effects; Ising-like model; Size; Spin-crossover nanoparticles; Surface
Year: 2017 PMID: 28181164 PMCID: PMC5307395 DOI: 10.1186/s11671-017-1844-z
Source DB: PubMed Journal: Nanoscale Res Lett ISSN: 1556-276X Impact factor: 4.703
Fig. 1The spin transition curves calculated by Monte Carlo technique for fixed values of ratio between surface and core interactions η. The system’s parameters are the following: g=150, Δ=900 K, J =85 K
Fig. 2The snapshots of 3D system for various values of η at constant temperature T = 255 K
Fig. 3Size dependence of the width of the thermal hysteresis Δ T. L is the number of molecules on the edge of the cube
Fig. 4Correlation factors C for core and surface components
Fig. 5Computer simulation of internal energy per spin E versus temperature T at fixed intersites couplings J =J =44K. Inset: the appropriate spin transition curves