代表性成果与荣誉
发表的论文(第一或通信作者代表学术论文):
1. Flexible energy-saving surface for all-season adaptive thermal management, Energy 313, 133861 (2024).
2. Efficient Machine Learning Model Focusing on Active Sites for the Discovery of Bifunctional Oxygen Electrocatalysts in Binary Alloys, ACS Applied Materials & Interfaces 16, 16050 (2024).
3. In situ confined synthesis of an interlayer-riveted carbon shell encapsulated PdZnBi alloy as a highly active and durable oxygen reduction reaction catalyst, J. Mater. Chem. A 12, 8194 (2024).
4. Electrical-gate-controlled giant tunneling magnetoresistance and its quasi-periodic oscillation in an interlaced magnetic-electric silicene superlattice, Nanoscale 15, 1860 (2023).
5. A universal high-efficiency cooling structure for high-power integrated circuits, Appl. Therm. Eng. 215, 118849 (2022).
6. Wrinkled-Surface-Induced Memristive Behavior of MoS(2) Wrapped GaN Nanowires, Adv. Electro. Mater., 2000571 (2020).
7. C3N/phosphorene heterostructure: a promising anode material in lithium-ion batteries, J. Mater. Chem. A 7, 2106 (2019).
8. Generalized Mechanism of Field Emission from Nanostructured Semiconductor Film Cathodes. Sci Rep 7, 43625, 43625 (2017).
9. A low cost, green method to synthesize GaN nanowires. Sci Rep 5, 17692 (2015).
10. Two dimensional Dirac carbon allotropes from graphene, Nanoscale 6 (2), 1113 (2014).
11. Wurtzite-type CuInSe2 for high-performance solar cell absorber: ab initio exploration of the new phase structure. J. Mater. Chem. 22, 21662-21666 (2012)
12. Giant magnetoresistance effect in graphene with asymmetrical magnetic superlattices. Appl. Phys. Lett. 101, 152404 (2012).
13. Electron field emission enhanced by geometric and quantum effects from nanostructured AlGaN/GaN quantum wells. Appl. Phys. Lett. 98, 152110 (2011).
14. Ultra-Low-Threshold Field Emission from Oriented Nanostructured GaN Films on Si Substrate. Appl. Phys. Lett. 96(9), 092101(2010).
15. Field emission enhancement by the quantum structure in an ultrathin multilayer planar cold cathode. Appl. Phys. Lett. 92(14), 142102 (3) (2008)
16. Strain-induced Raman-mode shift in single-wall carbon nanotubes: Calculation of force constants from molecular-dynamics simulations. Phys. Rev. B 77(19), 195440 (5) (2008).
17. Pressure-induced Raman-active radial breathing mode transition in single-wall carbon nanotubes. Phys. Rev. B 2007, 75(4), 045425 (5) (2007).
18. Structural enhancement mechanism of field emission from multilayer semiconductor films. Phys. Rev. B, 72(12), 125310 (6) ( 2005).
19. Multipeak characteristics of field emission energy distribution from semiconductors. Phys. Rev. B, 70(19),195305 (6) (2004)
20. Band Bending Mechanism for Field Emission in Wide Band Gap Semiconductors. Appl. Phys. Lett., 81(15), 2782~2784 (2002).
出版的著作:
1、 王如志、严辉 纳米半导体场发射冷阴极理论与实验,科学出版社(2017.1)
2、 王如志、刘维、刘立英 半导体材料,清华大学出版社(2019.12)