An Investigation of SHG Response from the CNT/Peptide Interface as a Function of Variant Peptide Concentrations and Tunable Wavelengths by Using a Monochromator

M. Haque, Munaly Akter, Md. Abdus Sattar, M. Hoque, Md. Abdul Matin
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Abstract

The carbon nanotubes (CNT) was fabricated on the Si/SiO2/Co substrate by chemical vapor deposition (CVD) method. After that, we dropped variant concentrations of peptide molecules on the CNT surface and measured the SHG intensity from the CNT/PEP interface. We found that the SHG intensity was maximum for all concentrations of peptide molecules at 532 nm when we tuned the wavelength manually by using monochromator. At the fixed SHG wavelength, the intensity was increased with the increase of peptide concentrations. This is because of the availability of the different types of C-bonds may produce chiral structure. This chirality behavior could be the reason for the generation of SHG signal with the increase of peptides concentrations on the CNT surface.
单色仪研究碳纳米管/肽界面的SHG响应与不同肽浓度和可调波长的关系
采用化学气相沉积(CVD)方法在Si/SiO2/Co衬底上制备了碳纳米管。之后,我们将不同浓度的肽分子滴在CNT表面,并测量了CNT/PEP界面的SHG强度。我们发现,当我们使用单色仪手动调整波长时,所有浓度的肽分子在532 nm处的SHG强度最大。在固定SHG波长下,强度随肽浓度的增加而增加。这是因为不同类型的c键的可用性可能产生手性结构。这种手性行为可能是随着碳纳米管表面多肽浓度的增加而产生SHG信号的原因。
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