PHOTOVOLTAICS LITERATURE SURVEY (No. 184) DOI Open Access
Ziv Hameiri

Progress in Photovoltaics Research and Applications, Journal Year: 2023, Volume and Issue: 31(8), P. 870 - 874

Published: Aug. 1, 2023

In order to help readers stay up-to-date in the field, each issue of Progress Photovoltaics will contain a list recently published journal articles that are most relevant its aims and scope. This is drawn from an extremely wide range journals, including IEEE Journal Photovoltaics, Solar Energy Materials Cells, Renewable Energy, Sustainable Reviews, Applied Physics, Physics Letters. To assist readers, separated into broad categories, but please note these classifications by no means strict. Also inclusion not endorsement paper's quality. If you have any suggestions email Ziv Hameiri at [email protected]. Gorjian S, Jamshidian FJ, A, et al Technological advancements research prospects innovative concentrating agrivoltaics. 2023; 337: 120799. Pochont NR, Sekhar Y R. Recent trends photovoltaic technologies for sustainable transportation passenger vehicles – A review. Reviews 181: 113317. Peng ZX, Zhang YW, Sun XK, Real-time probing unraveling morphology formation blade-coated ternary nonfullerene organic photovoltaics with situ x-ray scattering. Advanced Functional 33(14): 2213248. Xu G, Ke Z, Zhuang C, Measurements analysis solar spectrum near space. Reports 9: 1764–1773. Nawrocki WJ, Jones MR, Frese RN, time-resolved spectroelectrochemistry reveals limitations biohybrid photoelectrode performance. Joule 7(3): 529–544. Le AHT, Srinivasa Bowden SG, Temperature illumination dependence silicon heterojunction cells wafer resistivities. Photovoltaics: Research Applications 31(5): 536–545. Li B, Diallo D, Migan-Dubois Performance evaluation IEC 60891:2021 procedures correcting I–V curves modules under healthy faulty conditions. 474–493. Bhavya Jyothi KN, Narasimhan KL, Arora BM, Analysis mitigation errors external quantum efficiency measurement embedded modules. 258: 319–324. YJ, YX, Heger JE, Revealing surface interface evolution molybdenum nitride as carrier-selective contacts crystalline cells. Acs Interfaces 15(10): 13753–13760. Hasumi M, Sameshima T, Mizuno T. Passivation cut edges heat treatment liquid water. Japanese 62: SK1022. Theeuwes RJ, Melskens J, Beyer W, Hydrogenation p+ poly-Si Al2O3 nanolayers prepared atomic layer deposition. 133(14): 145301. Hallam Kim Y, The silver learning curve projected demand net-zero emissions 2050. 31(6): 598–606. Heilig Wurmbrand Hahn simplified masking-free doping process interdigitated back contact using atmospheric pressure chemical vapor deposition borosilicate glass/phosphosilicate glass stack laser followed high temperature step. 607–616. Park H, Choi Boron-doped polysilicon spin-on high-efficiency both-side passivating 461–473. Tang Yu C-W, Achievement 25.54% power conversion optimization current losses front side 449–460. Tepner Lorenz A. Printing cell metallization: comprehensive 557–590. Guo Jia R, X, Influence backside on passivation characteristics TOPCON 278–288. Canar HH, Bektaş Turan On performance SiNx, SiOxNy their c-Si wafers applications: Correlation optical, properties. Cells 256: 112356. Liu Lin Wu Tailoring protective metals high-efficient stable dopant-free 112343. Michel JI, Yan Phang SP, Poly-Si via phosphorus spin-on-doping: comparison between different methods. 255: 112290. Padhamnath P, W-J, De Luna Design, development large-area industrial featuring full area based rear selective front. 112351. Sio HC, Stuckelberger Basnet Improving doped polycrystalline magnesium fluoride. 254: 112251. SF, Jen AKY. Prospects challenges perovskite-organic tandem 484–502. Phong Pham Han Phuong Nguyen Potential structure bottom sub-cell bifacial four-terminal III-V/c-Si multijunction devices. 257: 10–17. Kabaklı ÖŞ, Kox Tutsch L, Minimizing electro-optical ITO layers monolithic perovskite 112246. Patil Kadam KD, Flexible organic–inorganic halide perovskite-based diffusive memristor artificial nociceptors. 13238–13,248. Ma LJ, Cui JQ, High-efficiency mechanically robust all-polymer enabled optimized fibril network morphology. 35(9): 2208926. Lv Yang QG, Deng WY, Isomeric acceptors incorporation enables 18.1% reduced trap-assisted charge recombination. Chemical Engineering 465: 142822. Burlingame QC, Ball ML, Voltage-dependent excitation dynamics UV-absorbing efficient transfer exciton emission. Environmental Science 16(4): 1742–1751. SX, He CL, Chen TY, Refined molecular microstructure carrier management multicomponent toward 19.3% certified efficiency. 16(5): 2262–2,273. Zhao XB, XH, High-speed printing bulk-heterojunction architecture films. 1711–1720. Wang High-performance indoor lighting suppressing energetic disorders. 7(5): 1067–1,079. JW, Zu YF, Robust hydrophobic interlayer material highly 545–557. TH, NW, Saeed MA, Record long-term stability self-assembled monolayer-based management. Nano 112: 108429. Ge Jiang 18% integrating fused perylene diimide guest acceptor. 108501. Fu JH, Fong PWK, 19.31% binary low non-radiative recombination non-monotonic intermediate state transition. Nature Communications 14(1): 1760. Lee Chin YC, Molecular orientation-dependent shifts solution-processed non-fullerene impact 1870. ZR, Q, Near-infrared absorbing acceptor suppressed triplet generation enabling 1236. Huang XN, Lifetime over 10,000 hours Ir/IrOx electron-transporting layer. 1241. Gao vertical field-effect photovoltaics. 1579. Venkatesan Chiang CY, Teng HS, Monolithic quasi-solid-state dye sensitized entirely processes. Chemistry 11(13): 5293–5,302. Awai F, Sasaki Kinoshita Energy-storable dye-sensitized improved charge/discharge 62(4): 044001. Richhariya Kumar Shukla AK, Efficient photosensitive light harvesting hibiscus rhodamine dyes. Power Sources 572: 233112. My NHT, Thin films solid-state polymer electrolytes 564: 232896. Zhou HK. Effective redox shuttles gel electrolytes-based outdoor Comprehensive guidelines. Today 34: 101299. Z. annular thermoelectric cooler driven cell. 351–360. Ji XF, Dopant-free two-dimensional hole transport small molecules enable 13(11): 2203756. CH, ZK, Liao LS. Perspective Letters 122(13): 130501. Adjustable skeleton bilateral Lewis base passivator CsPbI3 PCE 20% superior stability. 466: 143120. AL, Zuo CT, Niu promise lead-free perovskites optoelectronic applications. 451: 138926. Xing ZQ, Managing iodine tin defects mixed Sn-Pb 462: 142122. Ren FM, DR, Elimination unstable residual lead iodide buried improvement 2295–2,303. EY, Alkylammonium bis (trifluoromethylsulfonyl)imide dopant hole-transporting 2226–2,238. Ritzer DB, Nejand BA, Ruiz-Preciado Translucent building integration. 2212–2,225. Cai WL, Amidino-based Dion-Jacobson 2D 2D/3D heterostructure 574–586. Lan YD, Thermally inverted electropolymerized Zn-porphyrin film 7085–7093. MDX, RB, Buried strategies high-performance 11(16): 8573–8598. Xie Do SJ, Perovskite approaching 25% chain terminated materials concentration non-halogenated solvent process. 11(17): 9608–9615. Fan YP, HR, XM, Myth behind metastable n-hexylammonium bromide-based low-dimensional perovskites. American Society 145(14): 8209–8217. Lou SS, Gu single crystals: Dimensional control, properties, 225–250. Song QZ, XY, De-doping p-i-n utilizing compositional heterogeneity depth. 108: 108250. Seok HJ, JM, Jeong Plasma damage-free transparent Sn-doped In2O3 top cathode isolated plasma soft 111: 108431. HX, BY, Modulating multi-fluorine containing molecule NiOx-based 108363. Zou Eichhorn Rieger Ionic liquids tailoring crystal orientation electronic properties 108449. Iyer V, Mapping pathways photo-induced ion migration hybrid 1846. CQ, Eickemeyer FT, SH, Unveiling facet-dependent degradation facet engineering 379(6628): 173–178. You Zeng HP, YH, Radical polymeric p-doping grain modulation stable, 379(6629): 288–294. Hu JG, band alignment aluminum strategy record pulsed laser-deposited kesterite thin-film 15(11): 14291–14,303. Xue JY, Bao XQ, Improved lifetimes CdSe thin Te application. 15(14): 17858–17,866. Shimamune Tamaki Jimbo K. Effect post annealing stacked CZTS SK1020. Tao SY, Dong LZ, JS, Efficiency enhancement CZTSe K-doped precursor. 9085–9,096. Yilmaz de Wild Aninat In-depth potential-induced commercial CIGS PV module. 627–636. Patel Mishra Soni SK. Electrical optical parameters double absorber 125–136. Scarpulla McCandless Phillips AB, CdTe-based photovoltaics: advances, future prospects. 112289. Trifiletti Frioni Tseberlidis Manganese-substituted thin-films earth-abundant 112247. DD, YS, YG, How minimize voltage fill factor achieve chalcogenide dot cells: Strategies expected through numerical simulation. 341: 121124. YL, Polyethylenimine-based bifunctional interfacial 122(12): 123904. Du DX, LN, Ding One-step synthesis aqueous CdTe/CdSe composite QDs 461: 142040. Pandi DV, Saraswathi Venkatraman PbS dots-sensitized ZnO nanorods-based third 29: 101444. Yuan JB, Zheng dot-based triboelectric-solar boosting rain energy harvesting. 110: 10834. Hou Mocanu FC, Cho Evolution local structural motifs colloidal semiconductor nanocrystals leading nanofaceting. 23(6): 2277–2286. Jin BB, XJ, LC, loading CdS/CdSe co-sensitized dots enhance voltage-assisted SILAR 112293. K, real-time identification method model array. 342: 121157. Zhu What path (BIPV or BAPV) promotion? perspective evolutionary games. 340: 121033. Khan ZA, Hussain Baik SW. Dual stream attention mechanism forecasting. 338: 120916. Agrivoltaic system designing sustainability smart farming: Agronomic aspects design criteria safety assessment. 121130. Olczak P. Evaluation productivity installations case study. 343: 121109. Pirayawaraporn Sappaniran Nooraksa Innovative sensorless dual-axis tracking particle filter. 120946. Polasek Cadik M. Predicting production high-uncertainty weather forecasts. 339: 120989. Scott Ahsan Albarbar Machine forecasting (PV) system. 278: 127807. Raina Sinha S. Experimental investigations soiling module environmental Development 72: 301–313. Hajji Yahyaoui Mansouri Fault detection diagnosis grid-connected systems irradiance variations. 4005–4017. super-resolution perception convolutional neural missing data recovery. 388–395. Schallenberg-Rodriguez Rodrigo-Bello JJ, Río-Gamero BD. Agrivoltaic: much electricity could greenhouses supply? 5420–5,431. Soler-Castillo Sahni Leon-Castro E. predictability systems: An approach simulate I-V dynamics. 234–269. Wei temporal Artificial Intelligence 123: 106273. TF, Dally novel three-phase multilevel inverter DC-link capacitance. Transactions Industrial Electronics 70(5): 4751–4,761. Pascual García Marcos polyamide fluoropolymer backsheets: Degradation insulation failure field-aged 494–505. Springer Jordan DC, Barnes TM. Future-proofing reliability unifying predictive modeling framework. 546–553. Barbón Carreira-Fontao Bayón Optimal cost single-axis plants. 211: 626–646. Di Giuseppe Cardinali Castellani aging optic features beads retro-reflective coatings. 28–36. Boiarkin Rajarajan Al-Zaili dynamic pricing microgrid prosumers systems. 121148. Brown Kale Kyeong-Cha Exploring willingness consumers electrify homes. 120791. Cao SL, HX. Assessment radiation resource potential across China interpretable machine GIS-based approaches. 121005. Agdas Barooah economics rooftop adoption. Policy 178: 113611. Lemay AC, Wagner Rand BP. Current status adoption United States. 177: 113571. Ben Slama Mahmoud deep intelligent home renewable energy. 106388. Yeligeti Scholz Cropland rooftops: global undertapped 18(5): 054027. QA, YY, Reactive market distribution networks penetration. Smart Grid 14(2): 1642–1,651. Oteng Sharifi framework product stewardship end-of-life modules: lifecycle Cleaner Production 411: 137357. Rossi Zuffi Parisi Comparative scenario-based LCA focused evaluation. 405: 136931. Photovoltaic supply government subsidy decision-making China's distributed policy: perspective. 413: 137438. Zhong Carbon afforded China. 2347. Mao Luo Advances estimating installation capacity satellite aerial images. 179: 113276. Iqbal Su F. Nexus investment, green finance, development: Role technical innovations. 210: 715–724. Dilanchiev Promotion financing: transition 769–775. Polverini Espinosa N, Eynard U, Assessing carbon footprint EU Ecodesign Directive. 1–9. Rao RR, Priyadarshani Mani Examining use (EoL) panels housing sustainability. 210–220.

Language: Английский

Environmental impacts of solar PV energy systems for small-island communities in Indonesia: A life cycle assessment approach DOI
Joni Safaat Adiansyah, Datu Buyung Agusdinata,

Aryan Perdana Putra

et al.

Energy Sustainable Development/Energy for sustainable development, Journal Year: 2025, Volume and Issue: 85, P. 101651 - 101651

Published: Jan. 5, 2025

Language: Английский

Citations

2

Life cycle assessment of synthetic natural gas production from captured cement’s CO2 and green H2 DOI Creative Commons
M. Bacatelo, F. Capucha, Paulo Ferrão

et al.

Journal of CO2 Utilization, Journal Year: 2024, Volume and Issue: 83, P. 102774 - 102774

Published: May 1, 2024

Research on the environmental benefits of carbon capture and utilization (CCU) in cement production so far, has predominantly emphasized energy efficiency enhancements CO2 emission reductions at a CCU product level, neglecting broader consequences for sector. This research broadens this perspective by providing an extensive life cycle assessment (LCA) circular Portland (CPC) model. Synthesized methane is used as input fuel through green hydrogen calcium-looping (CaL) post-combustion captured from flue gas. Comparative analysis with ordinary (OPC) reveals significant climate change fossil resource use impact categories. However, trade-offs are evident acidification, water use, minerals metals consumption. The electrolysis system critical contributor due to high electricity demand production, its depends largely renewable source. wind-based model yields most favourable results, followed mixed (50% solar – 50% wind) scenarios. These findings offer valuable insights industry, supporting stakeholders decision making adoption sustainable methods.

Language: Английский

Citations

5

Net benefits change of waste photovoltaic recycling in China: Projection of waste based on multiple factors DOI
Jiali Shao, Jing Li, Xilong Yao

et al.

Journal of Cleaner Production, Journal Year: 2023, Volume and Issue: 417, P. 137984 - 137984

Published: July 11, 2023

Language: Английский

Citations

11

Are Fossil Fuels Superior to Floating Photovoltaic on Energy Return?- an LCEA Perspective DOI
Ching-Feng Chen,

Chia-Ming Fan

Smart Grids and Sustainable Energy, Journal Year: 2024, Volume and Issue: 9(2)

Published: June 28, 2024

Language: Английский

Citations

4

Life Cycle Assessment of Photovoltaic electricity production in Italy: Current scenario and future developments DOI Creative Commons
Carmen Ferrara, Benedetta Marmiroli, Maria Leonor Carvalho

et al.

The Science of The Total Environment, Journal Year: 2024, Volume and Issue: 948, P. 174846 - 174846

Published: July 18, 2024

This study presents a Life Cycle Assessment (LCA) of photovoltaic (PV) electricity production in Italy based on the composition current and future Italian PV scenario. Using detailed site-specific data, actual mix technologies at end 2022 those expected for 2030 were defined. A new LCA modelling most relevant was carried out using updated reliable inventory data. The impact assessment performed adopting categories Environmental Footprint Method v. 3.1. environmental profiles two scenarios (PV Scenario_2021 Scenario_2030) analysed this compared with that scenario achievable unaltered Ecoinvent v 3.9.1 datasets specific to Italian. obtained results highlighted use hypothesis entails significant overestimation impacts Italy; showing higher ranging from 70 % 30 (depending category considered) main key factors affecting investigated. However, wide gaps pointed importance conducting representative studies fast-growing evolving context countries, provide policy makers other researchers who need include generation their studies. Furthermore, performance analysis sustainability next years all considered (except land use). improvement can be primarily attributed annual energy yield greater utilization high-efficiency technologies, along expansion ground-mounted plants.

Language: Английский

Citations

4

Spatiotemporal evolution of decommissioned photovoltaic distribution and integrated energy-economic-environmental-social sustainable benefit assessment in China DOI
Jianli Zhou, Zihan Xu,

Juan He

et al.

Applied Energy, Journal Year: 2025, Volume and Issue: 384, P. 125459 - 125459

Published: Jan. 29, 2025

Language: Английский

Citations

0

Integrating Economic, Environmental, and Social Sustainability in Power-to-Ammonia Plants: A Multi-Objective Optimization Methodology DOI Creative Commons
Andrea Isella, Davide Manca

Computers & Chemical Engineering, Journal Year: 2025, Volume and Issue: unknown, P. 109082 - 109082

Published: Feb. 1, 2025

Language: Английский

Citations

0

A Critical Review of the Environmental Performance of Bifacial Photovoltaic Panels DOI Creative Commons
Manfredi Picciotto Maniscalco, Sonia Longo,

Gabriele Micciché

et al.

Energies, Journal Year: 2023, Volume and Issue: 17(1), P. 226 - 226

Published: Dec. 31, 2023

Bifacial photovoltaic (BPV) panels represent one of the main solar technologies that will be used in near future for renewable energy production, with a foreseen market share 2030 70% among all (PV) technologies. Compared to monofacial panels, bifaciality can ensure gain production per unit panel area together competitive cost. However, it is paramount importance identify whether there also an environmental benefit when adopting bifacial as opposed traditional ones. To obtain proper insight into impact, this paper reviews Life Cycle Assessment (LCA) studies identifying most crucial processes and materials raise burdens. The analysis contributes determining major aspects influence real operation scenarios and, all, associated bifaciality, are considered how these further affect overall impacts. In sense, was found installation parameters like mounting structure, or choice ground material albedo well diffuse irradiation hits rear surface thepanel, commonly not during LCA analysis. none analyzed address issue comprehensive way, hampering effective comparison between both different works PV panels. Recommendations LCAs finally proposed.

Language: Английский

Citations

7

Life cycle assessment of Al-Cu-Ag-Si recycling process from photovoltaic waste DOI Creative Commons
Anna Mazzi, Caterina Barbiero, Francesco Miserocchi

et al.

Resources Conservation and Recycling, Journal Year: 2024, Volume and Issue: 211, P. 107885 - 107885

Published: Aug. 30, 2024

As raw materials become increasingly scarce, it is important to efficiently recycle PV panels recover the highest quantity and quality of secondary materials. This study evaluates environmental impact related benefits an innovative process for c-Si recycling, which permits most contained in them. Life Cycle Assessment analysis was carried out with "grave-to-cradle" perspective. Inventory supported by data from a pilot plant located Venice (Italy). ReCiPe 2016 method used assessment. The results showed that are due recovery aluminium, copper, silicon, silver glass. Normalization assessment demonstrates main relevant categories this process, gravity underlines what steps recycling mainly contribute benefits. Sensitivity recovered influences profile process.

Language: Английский

Citations

2

Uncertainty of Life Cycle Assessment Studies for Blended Textiles DOI Creative Commons
Megija Valtere,

Tereza Bezrucko,

Mojca Poberžnik

et al.

Environmental and Climate Technologies, Journal Year: 2024, Volume and Issue: 28(1)

Published: Jan. 1, 2024

Abstract Textile fibres are derived from natural and artificial and, in some cases, blended together to ensure optimum properties. Textiles made cotton polyester blends currently hold a significant market share as they relatively inexpensive, offer excellent performance, have complementary However, the production consumption of textiles contribute significantly environmental degradation greenhouse gas emissions, but scale impact is uncertain under debate. This also case studies blends, detailed life cycle inventory this material absent scientific literature, thus affecting its assessment. Therefore, study aimed identify limitations assumptions used so far assessments assess uncertainties may introduce future assessments. Two methods were used: literature analysis scenario-based The summarized five reports that carried out an assessment provided data. results showed it not possible fill knowledge gap by creating new using existing because uncertainty was too high, reaching much 772 % difference baseline scenario. Nevertheless, step towards complete can improve textile blends.

Language: Английский

Citations

0