Fabrication and Characterization of Clinacanthus nutans Mediated Reduced Graphene Oxide Using a Green Approach

被引:10
作者
Perumal, Dharshini [1 ]
Albert, Emmellie Laura [2 ]
Saad, Norazalina [3 ]
Hin, Taufiq Yap Yun [4 ]
Zawawi, Ruzniza Mohd [5 ]
Teh, Huey Fang [6 ]
Abdullah, Che Azurahanim Che [1 ,2 ,3 ]
机构
[1] Univ Putra Malaysia, Fac Sci, Dept Phys, Biophys Lab, Serdang 43400, Malaysia
[2] Univ Putra Malaysia, Inst Nanosci & Nanotechnol, Serdang 43400, Malaysia
[3] Univ Putra Malaysia, Inst Biosci, UPM MAKNA Canc Res Lab, Serdang 43400, Malaysia
[4] Univ Putra Malaysia, Fac Sci, Catalysis Sci & Technol Res Ctr PutraCAT, Serdang 43400, Malaysia
[5] Univ Putra Malaysia, Fac Sci, Dept Chem, Serdang 43400, Malaysia
[6] Univ Putra Malaysia, Sime Darby Technol Ctr, Lebuh Silikon, Serdang 43400, Malaysia
关键词
green synthesis; reduced graphene oxide; Clinacanthus nutans; graphene oxide; screen-printed carbon electrode; 3 LARVAL STAGES; LEAF EXTRACT; REDUCTION; TOXICITY; CYSTS;
D O I
10.3390/cryst12111539
中图分类号
O7 [晶体学];
学科分类号
0702 ; 070205 ; 0703 ; 080501 ;
摘要
The reduction of graphene oxide (rGO) utilizing green methods such as plants has attracted much attention due to its productivity, eco-friendly features, and cost effectiveness. In the present study, the reflux method was employed to synthesize Clinacanthus nutans (C. nutans) leaf extract mediated rGO using a simple approach. The synthesized rGO was characterized using various spectroscopic and microscopic techniques. The UV-Vis spectrum demonstrated the absorption peak of rGO (270 nm) at distinct locations, while the FTIR analysis demonstrated that the amount of oxygen group in rGO was reduced. The Raman analysis confirms the reduction of GO by a slight increase in the D-band to G-band intensity ratio. The XRD spectra demonstrated that rGO was successfully produced based on the illustrated 2 theta angles at a peak of 22.12 degrees with d-spacing of 0.40 nm. FESEM clearly reveals the morphology of rGO that shows crumpled thin sheets, a rougher surface, and a wave-shaped corrugated structure. The reduction of GO was analyzed in the removal of the hydroxyl group and amorphotization of sp(2) carbon structures. The C/O ratio in rGO was higher than GO which indicates the small amount of oxygen-containing functional groups were still presented in the reduced graphene oxide. Furthermore, the cyclic voltammetry behavior of a modified screen-printed carbon electrode (SPCE) was measured. The redox reactivity of rGO-SPCE has been affirmed and compared with GO-SPCE and bare-SPCE. The toxicity using A. salina cysts demonstrated that rGO is less toxic compared to GO. The analysis adequately supports the synthesis of rGO and the effective removal of oxygen-containing functional groups from GO. The findings herein illustrate that C. nutans mediates the synthesis of rGO and is a promising eco-friendly substitute to conventional carbon-based fabrication.
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页数:16
相关论文
共 54 条
[41]   Oil Palm Waste-Based Precursors as a Renewable and Economical Carbon Sources for the Preparation of Reduced Graphene Oxide from Graphene Oxide [J].
Nasir, Salisu ;
Hussein, Mohd Zobir ;
Yusof, Nor Azah ;
Zainal, Zulkarnain .
NANOMATERIALS, 2017, 7 (07)
[42]   Green reduction of graphene oxide using phytochemicals extracted from Pomelo Grandis and Tamarindus indica and its supercapacitor applications [J].
Panicker, Nithin Joseph ;
Sahu, Partha Pratim .
JOURNAL OF MATERIALS SCIENCE-MATERIALS IN ELECTRONICS, 2021, 32 (11) :15265-15278
[43]   Biologically reduced graphene oxide as a green and easily available photocatalyst for degradation of organic dyes [J].
Parthipan, Punniyakotti ;
Cheng, Liang ;
Rajasekar, Aruliah ;
Govarthanan, Muthusamy ;
Subramania, Angaiah .
ENVIRONMENTAL RESEARCH, 2021, 196
[44]   Fabrication ofErythrina senegalensisleaf extract mediated reduced graphene oxide for cardiac repair applications in the nursing care [J].
Qi, Jian ;
Zhang, Shanshan ;
Xie, Chun ;
Liu, Qiufen ;
Yang, Shuxia .
INORGANIC AND NANO-METAL CHEMISTRY, 2021, 51 (01) :143-149
[45]   A cost effective and eco-friendly green route for fabrication of efficient graphene nanosheets photocatalyst [J].
Shamaila, Sajjad ;
Sajjad, Ahmed Khan Leghari ;
Quart-ul-Ain ;
Shaheen, Sania ;
Iqbal, Anum ;
Noor, Saima ;
Sughra, Ghulam ;
Ali, Uzma .
JOURNAL OF ENVIRONMENTAL CHEMICAL ENGINEERING, 2017, 5 (06) :5770-5776
[46]   Biosynthesis of reduced graphene oxide using Turbinaria ornata and its cytotoxic effect on MCF-7 cells [J].
Smita, K. M. ;
Abraham, L. Stanley ;
Kumar, V. Ganesh ;
Vasantharaja, Raguraman ;
Thirugnanasambandam, R. ;
Antony, Ajit ;
Govindaraju, K. ;
Velan, T. Senthil .
IET NANOBIOTECHNOLOGY, 2021, 15 (04) :455-464
[47]   Green Synthesis of Reduced Graphene Oxide using Green Tea Extract [J].
Tai, Melvin Jia-Yong ;
Liu, Wei-Wen ;
Khe, Cheng-Seong ;
Hidayah, N. M. S. ;
Teoh, Yi-Peng ;
Voon, C. H. ;
Lee, H. Cheun ;
Adelyn, P. Y. P. .
4TH ELECTRONIC AND GREEN MATERIALS INTERNATIONAL CONFERENCE 2018 (EGM 2018), 2018, 2045
[48]  
Teoh Peik Lin, 2021, Journal of Applied Pharmaceutical Science, V11, P15, DOI 10.7324/JAPS.2021.110602
[49]   Bio-Mediated Synthesis of Reduced Graphene Oxide Nanoparticles fromChenopodium album: Their Antimicrobial and Anticancer Activities [J].
Umar, Mohammad Faisal ;
Ahmad, Faizan ;
Saeed, Haris ;
Usmani, Saad Ali ;
Owais, Mohammad ;
Rafatullah, Mohd .
NANOMATERIALS, 2020, 10 (06)
[50]   Green and easy synthesis of biocompatible graphene for use as an anticoagulant [J].
Wang, Yi ;
Zhang, Pu ;
Liu, Chun Fang ;
Zhan, Lei ;
Li, Yuan Fang ;
Huang, Cheng Zhi .
RSC ADVANCES, 2012, 2 (06) :2322-2328