Confining effect of oxide film on tin whisker growth
-
Add time:07/31/2019 Source:sciencedirect.com
Spontaneous tin whisker growth has been mysterious and catastrophic for more than half century. The difficulty in the research on this topic consists of the randomness of the whisker growth, the slow growth rate and many other tricky factors. Herein, with Ti2SnC-Sn as a new platform, fast tin whisker growth is realized to facilitate the research. The whisker morphology is found to be modulated by oxide film. A striated whisker morphology forms as growing in air, whereas a faceted morphology forms in vacuum. Furthermore, the evolution to the faceted morphology is attributed to the reconstruction of the whisker surface driven by surface energy reduction. The findings might open a new avenue to uncover the myths of this long-standing issue, and thus develop a long-awaited lead-free tin whisker mitigation strategy.
We also recommend Trading Suppliers and Manufacturers of LEAD TIN OXIDE (cas 12036-31-6). Pls Click Website Link as below: cas 12036-31-6 suppliers
Prev:Hydrothermal synthesis of uniform tin oxide nanoparticles on reduced activated graphene oxide as anode material for lithium-ion batteries
Next:Position and oxidation state of tin in Sn-bearing tetrahedrites Cu12-xSnxSb4S13) - 【Back】【Close 】【Print】【Add to favorite 】
- Related Information
- Position and oxidation state of tin in Sn-bearing tetrahedrites Cu12-xSnxSb4S1308/01/2019
- Hydrothermal synthesis of uniform tin oxide nanoparticles on reduced activated graphene oxide as anode material for lithium-ion batteries07/30/2019
- Compared the oxidation behavior of TiN and TiN/W2N ceramic coatings during heat treatment07/29/2019
- Bimodal porous structure tin oxide anode materials for lithium ion batteries07/28/2019
- Preparation of lead oxide from the recycled lead carbonate by vacuum decomposition technology07/27/2019
- Technical and environmental assessment of selective recovery of tin and lead from waste solder alloy using direct anodic oxidation07/26/2019
-
Health and Chemical more >


