Scrap polymeric materials as hybrid energy harvesters

Abdelmouleh M, Jedidi I (2021) Development of ldpe crystallinity in ldpe/cu composites. In: Material flow analysis. IntechOpen, p 71

Adik N, Lin O, Akil HM, Sandu AV, Villagracia A, Santos GN et al (2016) Effects of stearic acid on tensile, morphological and thermal analysis of polypropylene (pp)/dolomite (dol) composites. Mater Plast 53(1):61–64

Google Scholar 

Alagar M, Kumar MSC, Prabu AA (2003) Studies on electrical and thermal properties of vinyloxyaminosilane grafted ethylene–propylene–diene terpolymer/linear low density polyethylene blends for cable applications. Polym J 35(1):30–36

Article  CAS  Google Scholar 

Al-Salem S, Al-Nasser A, Behbehani M, Sultan H, Karam H, Al-Wadi M, Al-Dhafeeri A, Rasheed Z, AlFoudaree M (2019) Thermal response and degressive reaction study of oxo-biodegradable plastic products exposed to various degradation media. Int J Polym Sci 2019:1–15

Article  Google Scholar 

Ankanahalli Shankaregowda S, Sagade Muktar Ahmed RF, Liu Y, Bananakere Nanjegowda C, Cheng X, Shivanna S, Ramakrishna S, Yu Z, Zhang X, Sannathammegowda K (2019) Dry-coated graphite onto sandpaper for triboelectric nanogenerator as an active power source for portable electronics. Nanomaterials 9(11):1585

Article  PubMed  PubMed Central  Google Scholar 

Bae J-S, Oh S-K, Pedrycz W, Fu Z (2019) Design of fuzzy radial basis function neural network classifier based on information data preprocessing for recycling black plastic wastes: comparative studies of atr ft-ir and raman spectroscopy. Appl Intell 49:929–949

Article  Google Scholar 

Baibarac M, Baltog I, Lefrant S, Mevellec J, Bucur C (2008) Vibrational and photoluminescence properties of the polystyrene functionalized single-walled carbon nanotubes. Diam Relat Mater 17(7–10):1380–1388

Article  CAS  Google Scholar 

Bajwa GS, Singari RM, Mishra RS et al (2021) The natural fibre and nano talc based hybrid composite of polypropylene: thermal performance. Indian J Eng Mater Sci (IJEMS) 27(4):866–871

Google Scholar 

Bakshi P, Pappu A, Bharti DK, Patidar R (2021) Accelerated weathering performance of injection moulded pp and ldpe composites reinforced with calcium rich waste resources. Polym Degrad Stab 192:109694

Article  CAS  Google Scholar 

Bardají DKR, Furlan JPR, Stehling EG (2019) Isolation of a polyethylene degrading Paenibacillus sp. from a landfill in Brazil. Arch Microbiol 201:699–704

Article  PubMed  Google Scholar 

Brostow W (2010) Maleic anhydride grafted polypropylene coatings on steel: adhesion and wear. PhD thesis, University of North Texas

Bukhari MU, Khan A, Maqbool KQ, Arshad A, Riaz K, Bermak A (2022) Waste to energy: facile, low-cost and environment-friendly triboelectric nanogenerators using recycled plastic and electronic wastes for self-powered portable electronics. Energy Rep 8:1687–1695

Article  Google Scholar 

Burfield DR, Loi PS (1988) The use of infrared spectroscopy for determination of polypropylene stereoregularity. J Appl Polym Sci 36(2):279–293

Article  CAS  Google Scholar 

Casimir D, Alghamdi H, Ahmed IY, Garcia-Sanchez R, Misra P (2019) Raman spectroscopy of graphene, graphite and graphene nanoplatelets. IntechOpen, London, UK

Book  Google Scholar 

Chen J, Jia Y, Zhang Z, Wang X, Yang L (2015) Effects of chlorinated polypropylene on the conformation of polypropylene in polypropylene/chlorinated polypropylene/polyaniline composites. J Spectrosc 2015:1–8

Google Scholar 

Chen Y, Zhang H, Xu C, Cong R, Fang G (2022) Thermal properties of 1-hexadecanol/high density polyethylene/graphene nanoplates composites as form-stable heat storage materials. Sol Energy Mater Sol Cells 237:111580

Article  CAS  Google Scholar 

Das MP, Kumar S (2015) An approach to low-density polyethylene biodegradation by bacillus amyloliquefaciens. 3 Biotech 5(1):81–86

Article  PubMed  Google Scholar 

Demir E, Ünsal ÖF, Emiroglu F, Bedeloglu A (2021) Wearable textile-based piezoelectric nanogenerators with graphene/zno/agnw. Eskisehir Techn Univ J Sci Technol A Appl Sci Eng 22:59–69

Google Scholar 

Dogan M (2021) Ultraviolet light accelerates the degradation of polyethylene plastics. Microsc Res Techn 84(11):2774–2783

Article  CAS  Google Scholar 

Dresselhaus M, Jorio A, Saito R (2010) Characterizing graphene, graphite, and carbon nanotubes by raman spectroscopy. Annu Rev Condens Matter Phys 1(1):89–108

Article  CAS  Google Scholar 

Feng X, Li Q, Wang K (2020) Waste plastic triboelectric nanogenerators using recycled plastic bags for power generation. ACS Appl Mater Interfaces 13(1):400–410

Article  PubMed  Google Scholar 

Ferrari AC (2007) Raman spectroscopy of graphene and graphite: Disorder, electron–phonon coupling, doping and nonadiabatic effects. Solid State Commun 143(1–2):47–57

Article  CAS  Google Scholar 

Ferrari AC, Meyer JC, Scardaci V, Casiraghi C, Lazzeri M, Mauri F, Piscanec S, Jiang D, Novoselov KS, Roth S et al (2006) Raman spectrum of graphene and graphene layers. Phys Rev Lett 97(18):187401

Article  CAS  PubMed  Google Scholar 

Gan B, Bilek M, Kondyurin A, Mizuno K, McKenzie D (2006) Etching and structural changes in nitrogen plasma immersion ion implanted polystyrene films. Nucl Instrum Methods Phys Res Sect B 247(2):254–260

Article  CAS  Google Scholar 

Ghosh SK, Mandal D (2016) High-performance bio-piezoelectric nanogenerator made with fish scale. Appl Phys Lett. https://doi.org/10.1063/1.4961623

Article  Google Scholar 

Greeshma M, Sreenidhi P (2021) Material design for self powered cranial drill using piezoelectric effect–a comsol study. In: 2021 4th Biennial international conference on nascent technologies in engineering (ICNTE). IEEE, pp 1–5

Gulmine J, Janissek P, Heise H, Akcelrud L (2002) Polyethylene characterization by ftir. Polym Test 21(5):557–563

Article  CAS  Google Scholar 

Gupta AK, Hsu C-H, Lai S-N, Lai C-S (2020) Zno-polystyrene composite as efficient energy harvest for self powered triboelectric nanogenerator. ECS J Solid State Sci Technol 9(11):115019

Article  CAS  Google Scholar 

Hesham R, Soltan A, Madian A (2021) Energy harvesting schemes for wearable devices. AEU Int J Electron Commun 138:153888

Article  Google Scholar 

Jalili M, Khosroshahi Z, Kheirabadi NR, Karimzadeh F, Enayati M (2021) Green triboelectric nanogenerator based on waste polymers for electrophoretic deposition of titania nanoparticles. Nano Energy 90:106581

Article  CAS  Google Scholar 

Ji SH, Lee W, Yun JS (2020) All-in-one piezo-triboelectric energy harvester module based on piezoceramic nanofibers for wearable devices. ACS Appl Mater Interfaces 12(16):18609–18616

Article  CAS  PubMed  Google Scholar 

Jiang T, Qi Y, Wu Y, Zhang J (2019) “Application of antioxidant and ultraviolet absorber into hdpe: Enhanced resistance to uv irradiation. E-Polymers 19(1):499–510

Article  CAS  Google Scholar 

Jiang D, Su Y, Wang K, Wang Y, Xu M, Dong M, Chen G (2020) A triboelectric and pyroelectric hybrid energy harvester for recovering energy from low-grade waste fluids. Nano Energy 70:104459

Article  CAS  Google Scholar 

Kaniyoor A, Ramaprabhu S (2012) A raman spectroscopic investigation of graphite oxide derived graphene. AIP Adv. https://doi.org/10.1063/1.4756995

Article  Google Scholar 

Khandelwal G, Chandrasekhar A, Alluri NR, Vivekananthan V, Raj NPMJ, Kim S-J (2018) Trash to energy: a facile, robust and cheap approach for mitigating environment pollutant using household triboelectric nanogenerator. Appl Energy 219:338–349

Article  Google Scholar 

Kochetov R, Christen T, Gullo F (2017) Ftir analysis of ldpe and xlpe thin samples pressed between different protective anti-adhesive films. In: 2017 1st International conference on electrical materials and power equipment (ICEMPE). IEEE, pp 49–52

Kovács RL, Csontos M, Gyöngyösi S, Elek J, Parditka B, Deák G, Kuki Á, Kéki S, Erdélyi Z (2021) Surface characterization of plasma-modified low density polyethylene by attenuated total reflectance fourier-transform infrared (atr-ftir) spectroscopy combined with chemometrics. Polym Testing 96:107080

Article  Google Scholar 

Leonov V (2010) Energy harvesting for self-powered wearable devices. In: Bonfiglio A, De Rossi D (eds) Wearable monitoring systems. Springer, Boston, pp 27–49

Google Scholar 

Liang X, Huang D (2012) New insights into the effects of physical aging on glass transition of polystyrene by FTIR. J Macromol Sci B 51(2):348–357

Article  CAS  Google Scholar 

Liao K, Ye X-Y, Chen P-C, Xu Z-K (2014) Biomineralized polypropylene/caco3 composite nonwoven meshes for oil/water separation. J Appl Polym Sci. https://doi.org/10.1002/app.39897

Article  Google Scholar 

Lin J-H, Pan Y-J, Liu C-F, Huang C-L, Hsieh C-T, Chen C-K, Lin Z-I, Lou C-W (2015) Preparation and compatibility evaluation of polypropylene/high density polyethylene polyblends. Materials 8(12):8850–8859

Article  PubMed  PubMed Central  Google Scholar 

Maiti S, Karan SK, Kim JK, Khatua BB (2019) Nature driven bio-piezoelectric/triboelectric nanogenerator as next-generation green energy harvester for smart and pollution free society. Adv Energy Mater 9(9):1803027

Article  Google Scholar 

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