| Literature DB >> 20676194 |
Abstract
A method of surface functionalization of silica nanoparticles was used to prepare a kind of stable nanofluid. The functionalization was achieved by grafting silanes directly to the surface of silica nanoparticles in silica solutions (both a commercial solution and a self-made silica solution were used). The functionalized nanoparticles were used to make nanofluids, in which well-dispersed nanoparticles can keep good stability. One of the unique characteristics of the nanofluids is that no deposition layer forms on the heated surface after a pool boiling process. The nanofluids have applicable prospect in thermal engineering fields with the phase-change heat transfer.Entities:
Keywords: Heat transfer; Nanofluid; Nanoparticle; Phase change; Surface functionalization
Year: 2010 PMID: 20676194 PMCID: PMC2897029 DOI: 10.1007/s11671-010-9646-6
Source DB: PubMed Journal: Nanoscale Res Lett ISSN: 1556-276X Impact factor: 4.703
Figure 1Schematic of the functionalization
Mass loss of functionalized nanoparticles after the TGA process
| MPPTS | GPS | |||
|---|---|---|---|---|
| Mass ratio | Mass loss (%) | Mass ratio | Mass loss (%) | |
| Silica in ludox TM-40 | 0.491 | 14.16 | 0.460 | 13.83 |
| 0.246 | 11.12 | 0.230 | 7.71 | |
| 0.123 | 7.36 | 0.115 | 5.85 | |
| Silica in self-made nanoparticle solution | 0.123 | 7.18 | 0.115 | 5.52 |
Mass ratio represents the mass ratio of the reacting silane and silica; mass loss represents the mass loss percentage caused by the organic components after the functionalized nanoparticles are burnt by the TGA instrument
Figure 2TEM pictures of nanofluids consisting of nanoparticles before and after the functionalizing process a nanoparticles in ludox TM-40 b functionalized nanoparticles prepared with ludox TM-40 and MPPTS c nanoparticles in self-made nanoparticle solution d functionalized nanoparticles prepared with self-made nanoparticle solution and GPS
Figure 3Diameter distribution of functionalized nanoparticles
Figure 4SEM pictures of the heated surface during the boiling experiment a before the boiling experiment b using the functionalized nanofluid c using the conventional nanofluid