成果作为山东大学创新创业教育体系重要基础课程,支撑学校所获成绩:
▲ |
“2017-2021年全国综合类本科院校大学生竞赛榜单” |
山东大学位列第三位 |
▲ |
“全国普通高校大学生竞赛六轮总榜单” |
山东大学位列第八位 |
▲ |
“2017-2021年全国普通高校大学生竞赛榜单” |
山东大学位列第八位 |
▲ |
“2021年全国普通高校大学生竞赛榜单” |
山东大学位列第十位 |
近年来,学生发表高水平科研文章40余篇:
1 |
Promising valleytronic
materials with strong spin-valley coupling in two-dimensional MN2X2 (M =Mo,
W; X =F, H), Appl. Phys. Lett., 117, 172405, 2020. |
2 |
Prediction of
two-dimensional PC6 as a promising anode material for potassium-ion
batteries, Phys. Chem. Chem. Phys., 21, 26212—26218, 2019. |
3 |
Boosting the cyclability
of commercial TiO2 anode by introducing appropriate amount of
Ti9O17 during coating carbon, J. Alloy & Compd, 762, 598-604,
2018. |
4 |
Investigation of the Mn
dopant-enhanced photoluminescence performance of lead-free Cs2AgInCl6 double
perovskite crystals,Phys.Chem.Chem.Phys., 22, 1815-1818, 2020 |
5 |
Modulation Effect
Generated by A Cations in Hybrid A2BB’X6 Double Halogen Perovskite Materials,ACS Appl. Mater.
Interfaces, 12, 44798-44804, 2020 |
6 |
How the Copper Dopant
Alters the Geometric and Photoelectronic Properties of the Lead-Free
Cs2AgSbCl6 Double Perovskite, Adv. Theory Simul., 4, 2100142-2100149, 2021 |
7 |
High-Q metamaterials
based on cavity mode resonance for THz sensing applications, AIP Advances, 10: 075014, 2020 |
8 |
Efficiency improvement
of AlGaN-based deep ultraviolet LEDs with gradual Al-composition AlGaN
conduction layer, Optoelectronics Letters, 16: 0279-0283, 2020 |
9 |
A wide-angle and TE/TM
polarization-insensitive terahertz metamaterial near-perfect absorber based
on a multi-layer plasmonic structure, Nanoscale Advances, 3:
4072-4078, 2021 |
10 |
Electromagnetically
induced transparency analog in terahertz hybrid metal–dielectric
metamaterials, AIP Advances, 11: 065309, 2021 |
11 |
Active Modulation of an
All-Dielectric Metasurface Analogue of Electromagnetically Induced
Transparency in Terahertz, ACS Omega, 6: 4480−4484, 2021 |
12 |
Tunable Extraordinary
Optical Transmission with Graphene in Terahertz, ACS Omega, 7: 29746,
2021 |
13 |
Comparative Study of
Short-Channel Effects between Source-Gated Transistors and Standard Thin-Film
Transistors, IEEE Transactions on Electron Devices, 69: 561-566, 2022 |
14 |
Alleviated built-in
electric field in the active region of AlGaN deep-ultraviolet light-emitting
diodes with locally embedded p-i-n junctions,Applied Optics, 61: 6961-6966, 2022 |
15 |
Independently tunable
all-dielectric synthetic multi-spectral metamaterials based on Mie resonance, RSC Advances, 12: 20765, 2022 |
16 |
Advances in
Two-Dimensional Materials for Optoelectronics Applications, Crystals,
12: 1087, 2022 |
17 |
Enhanced THz
Transmission by Bull’s Eye Structure Integrated with a Concentric Gold
Hemisphere, Crystals, 12: 1210, 2022 |
18 |
Highly ordered arrays of
hat-shaped hierarchical nanostructures with different curvatures for
sensitive SERS and plasmon-driven catalysis, NANOPHOTONICS, 11, 1, 33-44,
2022 |
19 |
Large valley
polarization in a novel two-dimensional semiconductor H-ZrX2 (X=Cl, Br, I), JOURNAL
OF PHYSICS-CONDENSED MATTER, 34, 7, 075701, 2021 |
20 |
Manipulating the
surface-enhanced Raman spectroscopy (SERS) activity and plasmon-driven
catalytic efficiency by the control of Ag NP/ graphene layers under optical
excitation, NANOPHOTONICS, 10, 5, 1529–1540, 2021 |
21 |
Particle-in-Molybdenum
Disulfide-Coated Cavity Structure with a Raman Internal Standard for
Sensitive Raman Detection of Water Contaminants from Ions to <300 nm
Nanoplastics, JOURNAL OF PHYSICAL CHEMISTRY LETTERS, 13, 25, 5815-5823,
2022 |
22 |
An Au
Nanofilm-Graphene/D-Type Fiber Surface Plasmon Resonance Sensor for Highly
Sensitive Specificity Bioanalysis, SENSOR, 20, 4, 991, 2020 |
23 |
Bias-induced reconstruction
of hybrid interface states in magnetic molecular junctions, Chinese Physics B, 31, 5, 2022 |
24 |
Coherent control of
optical soliton interaction via electromagnetically induced transparency with
spatial modulation, AIP ADVANCES, 11, 12, 125118, 2021 |
25 |
Composite Structure Based
on Gold-Nanoparticle Layer and HMM for Surface-Enhanced Raman Spectroscopy
Analysis,NANOMATERIALS, 11, 3, 587,
2021 |
26 |
Construct high-precise
SERS sensor by hierarchical superhydrophobic Si/Cu(OH)2 platform for
ultratrace detection of food contaminants, SENSORS AND ACTUATORS
B-CHEMICAL, 352, 2, 131056, 2021 |
27 |
Enhancing the
self-reconstruction ability of the degree of coherence of a light beam via
manipulating the cross-phase structure,APPLIED PHYSICS LETTERS, 119, 11, 111105, 2022 |
28 |
Experimental Realization
of Scalar and Vector Perfect Laguerre-Gaussian Beams,APPLIED PHYSICS LETTERS, 119, 2,
021105, 2021 |
29 |
Heterostructured Cu2O–Au
nanowire as adual-functional nanocomposite for environmental pollutant
degradation and hydrogen peroxide sensing, APPLIED OPTICS, 60, 20, 5936-5941,
2021 |
30 |
Heterostructured
CuO@ZnO@Ag biomimeticsetaria as wettability-switchable difunctional SERS
substrate for trace pesticide and DNA detections, NANOPHOTONICS, 10, 10,
2671-2682, 2021 |
31 |
High-performance
Self-powered Photodetector Based on Organic/Inorganic Hybrid Van der Waals
Heterojunction of Rubrene/Silicon, CHINESE PHYSICS B, 30, 7, 077304, 2021 |
32 |
LSPR optical fiber
biosensor based on a 3D composite structure of gold nanoparticles and
multilayer graphene films, OPTICS EXPRESS, 28, 5, 6071-6083, 2020 |
33 |
Motionless synthesis and
scanning of lattice light sheets with a single digital micromirror device,APPLIED PHYSICS LETTERS, 120, 21,
211106, 2022 |
34 |
Organic
Rubrene/Topological Insulator Bi2Se3/SiO2 Hybrid Heterojunction Photodetector
for Broadband and Ultrafast Photodetection Application, JOURNAL OF
MATERIALS CHEMISTRY C, 10, 4, 1289-1301, 2021 |
35 |
Plasmonic enhanced
piezoelectric photocatalytic performance with PVDF@BT/MoS2/Au by strong
piezoelectric functional particle doping, JOURNAL OF ALLOYS AND COMPOUNDS, 925, 166695, 2022 |
36 |
Precise Real-Time
Quantification for Photocatalytic Reaction: Integration of the Sensitive
In-Situ SERS Sensor and High-Efficiency Photocatalyst, NANOTECHNOLOGY, 33, 22, 225701, 2022 |
37 |
Propagation and
excitation properties of nonlinear surface plasmon polaritons in a
rectangular barrier, PHYSICA E-LOW-DIMENSIONAL SYSTEMS &
NANOSTRUCTURES, 144, 115417, 2022 |
38 |
Self-powered Topological
Insulator Bi2Te3/Ge Heterojunction Photodetector Driven by Long-lived
Excitons Transfer, NANOTECHNOLOGY, 33, 25, 255502, 2022 |
39 |
Shaping the illumination
beams for STED imaging through highly scattering media, Appl. Phys. Lett. 119, 211105, 2021 |
40 |
Simultaneous measurement
of orbital angular momentum spectra in turbulent atmosphere without probe
beam compensation, Optics Express, 29, 19, 30666-30674, 2021 |
41 |
Storage and Retrieval of
Nonlinear Surface Plasmon Polariton Solitons via Electromagnetically Induced
Transparency in a Metal-Dielectric-Metal Waveguide, Eur. Phys. J. D, 75,
222, 2021 |
42 |
The Origin of Mo2C Films
for Surface-Enhanced Raman Scattering Analysis: EM or CM? J. Phys. Chem.
Lett. , 13, 38, 8864, 2022 |
成果有效支撑2项拔尖学生培养计划2.0基地
▲ |
山东大学基础学科拔尖学生培养计划2.0-物理学 |
▲ |
兰州大学基础学科拔尖学生培养计划2.0-物理学 |
成果有效支撑6个国家一流专业
▲ |
山东大学物理学专业 |
▲ |
山东大学空间科学与技术 |
▲ |
兰州大学物理学专业 |
▲ |
山东师范大学物理学专业 |
▲ |
济南大学物理学专业 |
▲ |
山东师范大学电子信息工程专业 |
成果有效支撑3个国家级实验教学示范中心
▲ |
物理国家级实验教学示范中心(山东大学) |
▲ |
物理国家级实验教学示范中心(兰州大学) |
▲ |
国家级物理虚拟仿真实验教学中心(山东师范大学) |
成果有效支撑2个国家创新创业示范高校/基地。
▲ |
国家“深化创新创业教育改革示范高校” |
▲ |
国家“大众创业万众创新示范基地” |
▲优秀学生典型介绍---鄢仁鸿、赵一凡
|
|