深圳大学材料学院饶峰特聘教授团队招聘博士后,具体如下
团队介绍
饶峰特聘教授(国家优青)团队主要研究(1)相变存储器材料、机理与器件;(2)发光材料(稀土/半导体)、机理与应用;(3)二维电子与能源材料与应用;(4)材料在原位外场作用下的透射电子学研究。
团队主要成果如下:
I. Phase Change Materials & Memory Device (饶峰教授)
1. Reducing the stochasticity of crystal nucleation to enable sub-nanosecond memory writing, Science, in press, DOI: 10.1126/science.aao3212.
2.Direct observation of titanium-centered octahedral in titanium–antimony–tellurium phase-change material, Nature Communications 5, 10040, 2015.
3. One order of magnitude faster phase change at reduced power in Ti-Sb-Te, Nature Communications 5, 4086, 2014.
4. Direct observation of metastable face-centered cubic Sb2Te3 crystal, Nano Research 9, 3453, 2016.
II. Luminescent Nanomaterials & Device (陈献助理教授)
1. Energy Migration Upconversion in Ce(III)-Doped Heterogeneous Core−Shell Nanoparticles, Small 40, 170149, 2017.
2. Confining exciton migration in upconversion nanoparticles towards deep ultraviolet lasing, Nature Communications 7, 10304, 2016.
3. Photon upconversion in core–shell nanoparticles, Chemical Society Reviews 44, 1318–1330, 2015.
III. Two-dimensional Materials for Electronic and Energy Applications (朱家杰研究员)
1. Stress-enhanced lithiation in MAX compounds for battery applications, Appl. Mater. Today 9, 192-195, 2017.
2. P and Si functionalized MXenes for metal-ion battery applications, 2D Mater. 4, 025073, 2017.
3. Silicene/germanene on MgX2 (X = Cl, Br, and I) for Li-ion battery applications, Nanoscale 8, 7272-7277, 2016.
4. Stability and electronic properties of silicene on WSe2, J. Mater. Chem. C 3, 3946-3953, 2015.
IV. In Situ Transmission Electron Microscopy (李培峰副研究员)
1. In situ transmission electron microscopy investigation on fatigue behavior of single ZnO wires under high-cycle strain, Nano Lett. 14, 480-485, 2014.
2. In situ nanomechanical characterization of multilayer MoS2 membranes: from intraplanar to interplanar fracture, Nanoscale 9, 9119-9128, 2017.
3. In situ TEM investigation on ultrafast reversible lithiation and delithiation cycling of Sn@C yolk-shell nanoparticles as anodes for lithium ion batteries, Nano Energy 40, 187-194, 2017.
4. In situ atomic-scale analysis of Rayleigh instability in ultrathin gold nanowires, Nano Res. DOI 10.1007/s12274-017-1667-3.
应聘条件
(1)具有物理、材料、化学等相关学科博士学位或 3 个月内可以完成论文答辩;有电子器件设计与制备相关经验者优先;
(2)年龄不超过 32 周岁;
(3)有较好的中英文写作水平、团队协作能力与开拓进取精神。