银纳米颗粒忆阻器的研究性实验设计
周豪骏 1 ,范居晟 2 ,王浠丞 2 ,刘举庆 3 ,王 雷 1,2 ,杨 迎 2 ,芮云军 1,2∗
1.南京工业大学 2011 学院,江苏 南京 211816;2.南京工业大学 数理科学学院,江苏 南京 211816;3.南京工业
大学 柔性电子(未来技术)学院,江苏 南京 211816
Research Experimental Design of Memristor based on Silver Nanoparticle
ZHOU Haojun 1 ,FAN Jusheng 2 ,WANG Xicheng 2 ,Llu Juqing 3 ,WANG Lei 1,2 ,YANG Ying 2 , RUI Yunjun 1,2*
摘要
RLC 电路实验教学中,引导学生思考忆阻器的由来。 针对目前忆阻器教学中存在的突出问题———器件性能以仿真、模拟为主,测试则依赖昂贵的半导体分析仪,笔者基于科研成果和实验教学特点,制备了银纳米线/ 银纳米颗粒-聚乙烯吡咯烷酮/ 银纳米线(AgNW/ AgNP-PVP/ AgNW)三明治结构忆阻器,搭建了简易测试电路,展示了忆阻器的导电特性。 将学科前沿研究与实验教学改革相结合,设计研究性实验,培养学生的创新思维和实践能力,科研反哺教学,实现“教学相长”。
关键词:
忆阻器
银纳米颗粒
理论模拟
器件制备
测试电路搭建
研究性实验教学
Abstract:
In the teaching of RCL, circuit experiment, students are guided to think about the origin olmemristor, In view of the outstanding problems in memristor teaching, device performance is mainly simulated, and testing is dependent on the expensive semiconductor analyzer, Based on the scientific research and experimental teaching, the authors prepared the memristor with a AgNW/AgNP-PVP/AgNW sandwich structure , built a simple test circuit, and demonstrated the conduetive charaeteristics of the memristor Combining the frontier research with the reform of experimental teaching, the designed research experiments eultivate students’ innovative thinking and praetical ability. The seientilie research feeds teaching, and benelitsteachers and students.
Key words:
memristor
silver nanoparticles
theoretical simulation
device preparation
test circuit construction
research experiment teaching
出版日期: 2024-12-25
发布日期: 2024-12-25
整期出版日期: 2024-12-25
引用本文:
周豪骏 , 范居晟 , 王浠丞 , 刘举庆 , 王 雷 , 杨 迎 , 芮云军 .
银纳米颗粒忆阻器的研究性实验设计
[J]. 大学物理实验, 2024, 37(6): 7-13.
ZHOU Haojun, FAN Jusheng, WANG Xicheng, Llu JuqingWANG Lei , YANG Ying, RUI Yunjun.
Research Experimental Design of Memristor based on Silver Nanoparticle
. Physical Experiment of College, 2024, 37(6): 7-13.
链接本文:
https://dawushiyan.jlict.edu.cn/CN/10.14139/i.cnki.cn22-1228.2024.06.002
或
https://dawushiyan.jlict.edu.cn/CN/Y2024/V37/I6/7
[1]
. [J]. Physical Experiment of College, 2020, 33(1): 0
.
[2]
. [J]. Physical Experiment of College, 2020, 33(1): 0
.
[3]
WU Ming, ZENG Hong, ZHANG Wenpeng, ZHANG Yuanwei, DAI Zhenbing.
Theoretical and Experimental Research of A zimuthal-Radial Pendulum
[J]. Physical Experiment of College, 2020, 33(1): 1
-6
.
[4]
LIU Weiwei, SUN Qing, LIU Chenglin. Research on Selection of Critical Magnetization Current for Measuring Charge-Mass Ratio of Electron by Magnetron Controlling
[J]. Physical Experiment of College, 2020, 33(1): 7
-9
.
[5]
DENG Li, LIU Yang, ZHANG Hangzhong, ZHOU Kewei, ZHAO guoru, WEI luanyi.
MATLAB simulation of Fourier transform of Gaussian beam and the spatial filtering effects basing on 4F optical imaging system
[J]. Physical Experiment of College, 2020, 33(1): 10
-16
.
[6]
MA Kun.
Experiment Study on the Measuring Young' s Modulus by Stretching
[J]. Physical Experiment of College, 2020, 33(1): 17
-20
.
[7]
FEI Xianxiang, CHEN Chunlei, WANG Wenhua, SHI Wenqing, HUANG Cunyou.
Design of Lens Group Focal Length Measurement System Based on Object-Image Parallax Comparison
[J]. Physical Experiment of College, 2020, 33(1): 21
-24
.
[8]
LI Chunjiang, LI Luyu, YANG Jinglei, LI Tingrong, XIANG Wenli.
A New Method for Simple and Rapid Measurement of Refractive Index
[J]. Physical Experiment of College, 2020, 33(1): 25
-28
.
[9]
WANG Cuiping, YAO Mengyu, YE Liu, LI Aixia, ZHANG Ziyun, DAI Peng.
Progress and Applications of Electron Spin Resonance in Biology
[J]. Physical Experiment of College, 2020, 33(1): 29
-33
.
[10]
CHEN Yingmo, SHEN Siyi, WANG Jie.
Study on the Characteristics of Silicon Photocells
[J]. Physical Experiment of College, 2020, 33(1): 34
-36
.
Viewed
Full text
Abstract
Cited
Shared
Discussed