Multifunctional Nanomaterials Modification of Cellulose Paper for Efficient Triboelectric Nanogenerators

被引:66
|
作者
Sriphan, Saichon [1 ]
Charoonsuk, Thitirat [2 ]
Maluangnont, Tosapol [3 ]
Pakawanit, Phakkhananan [4 ]
Rojviriya, Catleya [4 ]
Vittayakorn, Naratip [1 ,5 ]
机构
[1] King Mongkuts Inst Technol Ladkrabang, Fac Sci, Adv Mat Res Unit, Bangkok 10520, Thailand
[2] Srinakharinwirot Univ, Fac Sci, Dept Mat Sci, 114 Sukhumvit 23, Bangkok 10110, Thailand
[3] King Mongkuts Inst Technol Ladkrabang, Coll Nanotechnol, Electroceram Res Lab, Bangkok 10520, Thailand
[4] Publ Org, Synchrotron Light Res Inst, 111 Univ Ave, Muang Dist 30000, Nakhon Ratchasi, Thailand
[5] King Mongkuts Inst Technol Ladkrabang, Fac Sci, Dept Chem, Bangkok 10520, Thailand
关键词
Ag nanoparticles; cellulose filter paper; dielectric property; Ti; 0; 8O; (2) nanosheets; triboelectric nanogenerators; HYBRID NANOGENERATOR; OUTPUT PERFORMANCE; NANOSHEET; TITANATE; TEXTILE; SURFACE; NANOFIBERS; SYSTEM; LAYER;
D O I
10.1002/admt.202000001
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
There is a need to develop inexpensive, lightweight, and flexible high-performance triboelectric nanogenerators (TENGs) from renewable resources. Here, a multifunctional cellulose filter paper (CFP)-based TENG consisting of dielectric Ti0.8O2 nanosheets (Ti0.8O2 NSs) and conducting Ag nanoparticles (Ag NPs) is prepared by a simple dip coating method. The incorporation of dielectric Ti0.8O2 NSs onto the CFP significantly improves charge generation, while the inclusion of Ag NPs provides an electrically conductive path for charge transportation. The presence of these fillers can be deduced from XRD, SEM, EDS, X-ray photoelectron spectroscopy, and Raman spectroscopy. Their distribution is visualized in 3D by synchrotron radiation X-ray tomography. The present CFP-based TENG provides an output voltage and current density of approximate to 42 V and approximate to 1 mu A cm(-2), respectively with the power density of approximate to 25 mu W cm(-2). It is capable of lighting up 40 light-emitting diode bulbs and charging a 0.22 mu F capacitor to 8 V in only 5 s. The developed TENG is also capable of detecting simple human motions, i.e., finger tapping, finger rubbing, and foot trampling. This work offers a facile design of low cost yet efficient paper-based TENG by dual modification with multifunctional nanomaterials, and also demonstrates its use as a feasible power source that not only drives small electronics, but also scavenges energy from human actions.
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页数:14
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