李吉超

-
教授
博士生导师
硕士生导师
- 性别:男
- 出生日期:1972-09-10
- 毕业院校:山东大学
- 学历:研究生(博士)毕业
- 学位:博士生
- 在职信息:在职
- 所在单位:物理学院
- 入职时间: 2004-07-16
- 所属院系:
物理学院
- 办公地点:山东省济南市山大南路27号山东大学物理学院
- 电子邮箱:255a51711047f5252e8f9f1e7c72e9e0b55feb59bbccdda59e89982a9676c4a2ace37b512513b7659bbf76469207110130bca717cc877a9da4d12419895482354ccab4aa66774e09f8a226d371f0334b3794e0ce33e04fa9df6d2434496519655c02649c2b481466b17598c7996ead8564bb2b6dd603b9601fa9cff171615437
访问量:
-
[1]
张亚翠.
Thermoelectric properties of Li-doped Sr_(0.7)Ba_(0.3)Nb_2O_(6-δ) ceramics.
Chinese Physics B,
26,
427-431,
2017.
-
[2]
祝元虎.
Enhanced Thermoelectric Response of Ca0.96Dy02Re02MnO3 Ceramics (Re = La, Nd, Sm) at High Temperature.
Journal of Electronic Materials ,
44,
414-419,
2015.
-
[3]
李宜.
Thermoelectric properties of Sr0.61Ba0.39Nb2O6-δ ceramics in different oxygen-reduction conditions.
Chinese Physics B,
24,
353-358,
2015.
-
[4]
刘剑.
Enhancement of thermoelectric efficiency in oxygen-deficient Sr 1-x Lax TiO3-δ ceramics.
APPLIED PHYSICS LETTERS,
95,
162110-1-162110-3,
2009.
-
[5]
祝元虎.
Influence of Dy/Bi dual doping on thermoelectric performance of CaMnO 3 ceramics.
Materials Chemistry and Physics,
144,
385-389,
2014.
-
[6]
ZhouYC.
Electrical properties of Dy3+/Na+ Co-doped oxide thermoelectric [Ca1-x(Na1/2Dy1/2)x]MnO3 ceramics.
JOURNAL OF ALLOYS AND COMPOUNDS,
680,
129-132,
2016.
-
[7]
Zhang, X.M..
Optical absorption coefficient red shift effect of iodine vacancy in MAPbI3.
Computational Materials Science,
154,
138-142,
2018.
-
[8]
李吉超.
First principles calculation for all-trans chain of beta-phase of poly(vinylidene fluoride).
ACTA PHYSICA SINICA,
51,
776-781,
2002.
-
[9]
Du Yan-Ling.
Stability and electronic structure studies of LaAIO3/SrTiO3 (110) heterostructures.
中国物理B英文版,
468-473,
2014.
-
[10]
彭华.
Elastic and vibrational properties of Mg _2Si _(1-x)Sn _x alloy from first principles calculations.
SOLID STATE COMMUNICATIONS Journal,
821-824,
2014.
-
[11]
祝元虎.
Influence of rare-earth elements doping on thermoelectric properties of Ca0.98Dy0.02MnO3 at high temperature.
Journal of Solid State Chemistry,
225,
105-109,
2015.
-
[12]
白雪敏.
Thermoelectric properties and transport mechanism of Cu0.5In0.5Cr2Se4 and its Zn-doped samples.
JOURNAL OF ALLOYS AND COMPOUNDS,
910,
2022.
-
[13]
赵兰玲.
High thermoelectric performance of Ag doped SnTe polycrystalline bulks: Via the synergistic manipulation of electrical and thermal transport.
Physical chemistry chemical physics,
21,
17978-17984,
2019.
-
[14]
赵兰玲.
Theoretical study on the electronic structures and transport properties of Ti32-xHfxNi32Sn32-ySby half-Heusler compounds.
PHYSICA B-CONDENSED MATTER,
596,
412385,
2020.
-
[15]
王建旭.
A multi-folded-beam piezoelectric energy harvester for wideband energy harvesting under ultra-low harmonic acceleration.
Energy Reports,
8,
6521-6529,
2022.
-
[16]
Wang, Jian-Xu.
A rotational piezoelectric energy harvester based on trapezoid beam: Simulation and experiment.
Renewable Energy,
184,
619-626,
2022.
-
[17]
刘剑.
Thermoelectric properties and transport mechanism of Cu0.5In0.5Cr2Se4 and its Zn-doped samples.
JOURNAL OF ALLOYS AND COMPOUNDS,
164955,
2022.
-
[18]
陈宇飞.
Enhancement of Thermoelectric Performance of Sr1?xTi0.8Nb0.2O3 Ceramics by Introducing Sr Vacancies.
Journal of Electronic Materials,
48,
1147-1152,
2019.
-
[19]
张晓谦.
Water-stable metal–organic framework (UiO-66) supported on zirconia nanofibers membrane for the dynamic removal of tetracycline and arsenic from water.
Applied Surface Science,
596,
2022.
-
[20]
王建旭.
<p>A rotational piezoelectric energy harvester based on trapezoid beam: Simulation and experiment</p>.
renewable energy,
184,
619,
2022.