Abstract

l-tryptophan is one of the eight kinds of essential amino acids for sustainable human life activity. It is common to detect the concentration of tryptophan in human serum for diagnosing and preventing brain related diseases. Herein, in this study, GCE (glassy carbon electrode) modified by Ta2O5-reduced graphene oxide (-rGO) composite (Ta2O5-rGO-GCE) is synthesized by the hydrothermal synthesis-calcination methods, which is used for detecting the concentration of tryptophan in human serum under the as-obtained optimal detection conditions. As a result, the obtained Ta2O5-rGO-GCE shows larger electrochemical activity area than other bare GCE and rGO-GCE due to the synergistic effect of Ta2O5 NPs and rGO. Meanwhile, Ta2O5-rGO-GCE shows an excellent response to tryptophan during the oxidation process in 0.1 M phosphate buffer solution (pH = 6). Moreover, three wide linear detection range (1.0–8.0 μM, 8.0–80 μM and 80–800 μM) and a low limit of detection (LOD) of 0.84 μM (S/N = 3) in the detection of tryptophan are also presented, showing the larger linear ranges and lower detection limit by employing Ta2O5-rGO-GCE. Finally, the as-proposed Ta2O5-rGO-GCE with satisfactory recoveries (101~106%) is successfully realized for the detection of tryptophan in human serum. The synthesis of Ta2O5-rGO-GCE in this article could provide a slight view for the synthesis of other electrochemical catalytic systems in detection of trace substance in human serum.

Highlights

  • Materials and ChemicalsTantalum chloride (TaCl5), diethanol amine (DEOA), potassium permanganate (KMnO4), graphite, sulfuric acid (H2SO4), hydrogen peroxide (H2O2), α-aluminium oxide (α-Al2O3, particle size: 1.0 μm, 0.3 μm and 0.05 μm), disodium phosphate dodecahydrate (Na2HPO4·12H2O), sodium nitrate (NaNO3), sodium dihydrogen phosphate (NaH2PO4), potassium ferricyanide (K3Fe(CN)6), potassium ferrocyanide (K4Fe(CN)6) and ethyl alcohol were purchased from Sinopharm Chemical Reagent Co., Ltd. (Shanghai, China). l-tryptophan was purchased from Aladdin Bio-Chem Technology Co., Ltd. (Shanghai, China)

  • Abstract: l-tryptophan is one of the eight kinds of essential amino acids for sustainable human life activity

  • Tantalum chloride (TaCl5), diethanol amine (DEOA), potassium permanganate (KMnO4), graphite, sulfuric acid (H2SO4), hydrogen peroxide (H2O2), α-aluminium oxide (α-Al2O3, particle size: 1.0 μm, 0.3 μm and 0.05 μm), disodium phosphate dodecahydrate (Na2HPO4·12H2O), sodium nitrate (NaNO3), sodium dihydrogen phosphate (NaH2PO4), potassium ferricyanide (K3Fe(CN)6), potassium ferrocyanide (K4Fe(CN)6) and ethyl alcohol were purchased from Sinopharm Chemical Reagent Co., Ltd. (Shanghai, China). l-tryptophan was purchased from Aladdin Bio-Chem Technology Co., Ltd. (Shanghai, China)

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Summary

Materials and Chemicals

Tantalum chloride (TaCl5), diethanol amine (DEOA), potassium permanganate (KMnO4), graphite, sulfuric acid (H2SO4), hydrogen peroxide (H2O2), α-aluminium oxide (α-Al2O3, particle size: 1.0 μm, 0.3 μm and 0.05 μm), disodium phosphate dodecahydrate (Na2HPO4·12H2O), sodium nitrate (NaNO3), sodium dihydrogen phosphate (NaH2PO4), potassium ferricyanide (K3Fe(CN)6), potassium ferrocyanide (K4Fe(CN)6) and ethyl alcohol were purchased from Sinopharm Chemical Reagent Co., Ltd. (Shanghai, China). l-tryptophan was purchased from Aladdin Bio-Chem Technology Co., Ltd. (Shanghai, China). Tantalum chloride (TaCl5), diethanol amine (DEOA), potassium permanganate (KMnO4), graphite, sulfuric acid (H2SO4), hydrogen peroxide (H2O2), α-aluminium oxide (α-Al2O3, particle size: 1.0 μm, 0.3 μm and 0.05 μm), disodium phosphate dodecahydrate (Na2HPO4·12H2O), sodium nitrate (NaNO3), sodium dihydrogen phosphate (NaH2PO4), potassium ferricyanide (K3Fe(CN)6), potassium ferrocyanide (K4Fe(CN)6) and ethyl alcohol were purchased from Sinopharm Chemical Reagent Co., Ltd. L-tryptophan was purchased from Aladdin Bio-Chem Technology Co., Ltd. Human serums were taken from people’s hospital of Zhuzhou. Nanomaterials 2019, 9, 811 experimental process, ultrapure water (18.2 MΩ) was used generally. All of the reagents were utilized directly without any further purification

Preparation of Ta2O5 Nanoparticles
Fabrication of Ta2O5-GO-Modified GCE
Characterization
Electrochemical Experiments
Detection of Tryptophan in Human Serum
Structural and Morphologic Characterization of Ta2O5 and Ta2O5-GO
Electrochemical Activity Area of Ta2O5-rGO-GCE Nanocomposites
Electrochemical Behaviors of Tryptophan on Different Electrodes
Influence of the pH
Effect of the Scan Rate
Effect of the Accumulation Conditions
Stability of the Detection
Practical Sample Detections
Conclusions
Full Text
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