研究目的
Investigating the fabrication and performance of a photodetector based on a 2D-WS2/organic semiconductor materials heterojunction for high-performance optoelectronic applications.
研究成果
The fabricated inorganic/organic heterojunction photodetector demonstrated high responsivity, detectivity, and a broad spectral response, indicating its potential for high-performance optoelectronic applications. The study suggests that optimization of the organic blend layer conductivity could further improve device performance.
研究不足
The study acknowledges the challenge of forming uniform 2D WS2 thin films on a large scale due to the coexistence of discontinuous and isolated single layers and multilayers. The carrier mobility in organic layers is identified as a limiting factor for charge collection efficiency.
1:Experimental Design and Method Selection:
The study involved the fabrication of a photodetector using a 2D-WS2/organic semiconductor materials heterojunction. The methodology included the use of chemical vapor deposition (CVD) for WS2 growth and a solution-coating process for the organic blend film.
2:Sample Selection and Data Sources:
The samples included WS2 films grown on silicon substrates and organic blend films of Poly-TPD/PCBM.
3:List of Experimental Equipment and Materials:
Equipment included a CVD system, spin-coating apparatus, and various characterization tools such as XRD, XPS, UV-Vis absorption spectrometer, FESEM, Raman spectrometer, and PL setup. Materials included WS2 powders, Poly-TPD, PCBM, and chlorobenzene solvent.
4:Experimental Procedures and Operational Workflow:
The process involved the growth of WS2 films via CVD, preparation of organic blend films by spin-coating, and device fabrication with Cr–Au electrodes.
5:Data Analysis Methods:
The performance of the photodetector was analyzed using electrical measurements and optical characterization techniques to determine responsivity, detectivity, and EQE.
独家科研数据包,助您复现前沿成果,加速创新突破
获取完整内容-
X-ray diffraction (XRD)
Thermo ARLXTRA
Thermo
Used for characterizing the WS2 films.
-
UV-Vis absorption spectrometer
Shimadzu UV-3600
Shimadzu
Used for measuring the absorption spectra of the WS2 and organic blend films.
-
Field emission scanning electron microscopy (FESEM)
FEI Apreo S HiVac
FEI
Used for imaging the morphology of the WS2 films.
-
Electrical measurement system
Agilent 4200 SCS
Agilent
Used for measuring the electrical properties of the photodetector.
-
WS2 powders
Aladdin
Used for the growth of WS2 films via CVD.
-
Poly-TPD
Aladdin
Used as a hole transport material in the organic blend film.
-
PCBM
Aladdin
Used as an electron transport material in the organic blend film.
-
Chlorobenzene solvent
Used as a solvent for the organic blend film preparation.
-
Cr–Au electrodes
Used as electrodes in the photodetector device.
-
X-ray photoelectron spectroscopy (XPS)
Ulvac-Phi PHI5000 Versaprobe II
Ulvac-Phi
Used for analyzing the chemical composition of the WS2 films.
-
Raman spectrometer
Horiba, iHR320
Horiba
Used for analyzing the vibrational modes of the WS2 films.
-
Photoluminescence (PL) setup
Used for measuring the photoluminescence spectra of the WS2 films.
-
Optical microscope
Jiangnan MV 3000 digital microscope
Jiangnan
Used for imaging the WS2 films.
-
LakeShore TTPX
LakeShore
Used for temperature-dependent measurements.
-
登录查看剩余12件设备及参数对照表
查看全部