研究目的
研究某种特定草药对特定疾病的治疗效果。
研究成果
对汇总结果进行深入分析与总结,强调可解释性与前瞻性?;谡庑┙峁徊教崃逗诵姆⑾?、研究意义及未来研究建议。
研究不足
实验的技术和应用限制,以及潜在的优化领域。
1:实验设计与方法选择:
包括整体实验设计的依据、采用的理论模型或算法,以及实验方法的详细流程。
2:样本选择与数据来源:
说明实验中使用的样本或数据集,包括选择标准和数据获取方式。
3:实验设备与材料清单:
列举所需的仪器、设备和材料,并注明其规格及用途。
4:实验步骤与操作流程:
逐步描述实验过程,涵盖设备搭建、数据采集技术及实验中的变量控制。
5:数据分析方法:
解释实验数据的分析方法,包括采用的统计技术和软件工具。
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X-ray photo-electron spectroscopy
Multilab ESCA 2000 system VG
Thermo Scientific
For detailed internal bonding and elemental composition
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Brunauer-Emmet-Teller
Quantachrome Autosorb-6 sorption system
Perkin Elmer
To analyze the surface area and porosity of the assembled and uniform coating
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transmission electron microscope
JEOL JEM-2100F
JEOL
To confirm the synthesis of the GO nanosheets and associated NGQDs
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field emission scanning electron microscope
JEOL JSM 6700 F
JEOL
To analyze the surface morphologies of the electrode at different developmental stages
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wide angle X-ray diffraction
Rigaku-D/MAX-2500
Rigaku Denki
To analyze the crystal structure of different constituent materials
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Raman microscopy
NWS-3100
JASCO
To explore the structure of NGQDs
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fourier transform infra-red spectrophotometer
Nicolette iSTM 10
Thermo Fisher Scientific Inc.
For analysis of the surface functional groups
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zeta analyzer
Malvern instruments
To calculate the surface charge of graphene oxide nano-sheets and NGQs
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fluorescence spectrophotometer
SCINCO
To assure the synthesis of quantum dots by Photoluminescence emission analysis
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UV visible spectroscopy
Shimadzu Co
For analysis of dye concentration and light absorbance analysis of NGQDs
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four-probe head system
Jandel Engineering
To measure the conductivity of the electrode
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universal tensile strength tester
H10K-UTM
Tenius Olsen Inc.
For tensile strength analysis
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electrochemical workstation
Bio-logic Co.
For electrocatalytic activity test and Mott-Schottky analysis
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