keyword
https://read.qxmd.com/read/38529746/ultra-thin-gaas-single-junction-solar-cells-for-self-powered-skin-compatible-electrocardiogram-sensors
#21
JOURNAL ARTICLE
Yonghyun Nam, Dongjoon Shin, Jun-Gyu Choi, Inho Lee, Sunghyun Moon, Yeojun Yun, Won-June Lee, Ikmo Park, Sungjun Park, Jaejin Lee
GaAs thin-film solar cells have high efficiency, reliability, and operational stability, making them a promising solution for self-powered skin-conformal biosensors. However, inherent device thickness limits suitability for such applications, making them uncomfortable and unreliable in flexural environments. Therefore, reducing the flexural rigidity becomes crucial for integration with skin-compatible electronic devices. Herein, this study demonstrated a novel one-step surface modification bonding methodology, allowing a streamlined transfer process of ultra-thin (2...
March 26, 2024: Small Methods
https://read.qxmd.com/read/38529583/recent-progress-and-prospects-of-dimer-and-multimer-acceptors-for-efficient-and-stable-polymer-solar-cells
#22
REVIEW
Jin-Woo Lee, Jin Su Park, Hyesu Jeon, Seungjin Lee, Dahyun Jeong, Changyeon Lee, Yun-Hi Kim, Bumjoon J Kim
High power conversion efficiency (PCE) and long-term stability are essential prerequisites for the commercialization of polymer solar cells (PSCs). Small-molecule acceptors (SMAs) are core materials that have led to recent, rapid increases in the PCEs of the PSCs. However, a critical limitation of the resulting PSCs is their poor long-term stability. Blend morphology degradation from rapid diffusion of SMAs with low glass transition temperatures ( T g s) is considered the main cause of the poor long-term stability of the PSCs...
March 26, 2024: Chemical Society Reviews
https://read.qxmd.com/read/38526453/cpe-na-based-hole-transport-layers-for-improving-the-stability-in-nonfullerene-organic-solar-cells-a-comprehensive-study
#23
JOURNAL ARTICLE
Mohamed Samir, Enas Moustafa, Osbel Almora, Magaly Ramírez-Como, Maria Pilar Montero-Rama, José G Sánchez, Emilio Palomares, Josep Pallarès, Lluis F Marsal
Organic photovoltaic (OPV) cells have experienced significant development in the last decades after the introduction of nonfullerene acceptor molecules with top power conversion efficiencies reported over 19% and considerable versatility, for example, with application in transparent/semitransparent and flexible photovoltaics. Yet, the optimization of the operational stability continues to be a challenge. This study presents a comprehensive investigation of the use of a conjugated polyelectrolyte polymer (CPE-Na) as a hole layer (HTL) to improve the performance and longevity of OPV cells...
March 25, 2024: ACS Applied Materials & Interfaces
https://read.qxmd.com/read/38524482/imidazoanthraquinone-derivative-as-a-surface-passivator-for-enhanced-and-stable-perovskite-solar-cells
#24
JOURNAL ARTICLE
Qamar Tabrez Siddiqui, Ashique Kotta, Inseok Seo, Hyung-Kee Seo
Hybrid organic-inorganic perovskites have been investigated for their potential to serve in next-generation perovskite solar cells (PSCs). While PSC technology is approaching commercialization, thermal and moisture stabilities remain a concern. Here, we describe the assembly of PSCs using an imidazoanthraquinone derivative (AQ) as a small organic additive to enhance the device performance and stability. Unlike polymer additives, AQ is easy to synthesize and is more economical. AQ was synthesized because it has both carbonyl and imidazole functional groups...
March 19, 2024: ACS Omega
https://read.qxmd.com/read/38512224/polymerized-and-colloidal-ionic-liquids%C3%A2-syntheses-and-applications
#25
REVIEW
Qi Li, Feng Yan, John Texter
The breadth and importance of polymerized ionic liquids (PILs) are steadily expanding, and this review updates advances and trends in syntheses, properties, and applications over the past five to six years. We begin with an historical overview of the genesis and growth of the PIL field as a subset of materials science. The genesis of ionic liquids (ILs) over nano to meso length-scales exhibiting 0D, 1D, 2D, and 3D topologies defines colloidal ionic liquids, CILs, which compose a subclass of PILs and provide a synthetic bridge between IL monomers (ILMs) and micro to macro-scale PIL materials...
March 21, 2024: Chemical Reviews
https://read.qxmd.com/read/38511599/polymerizing-m-series-acceptors-for-efficient-polymer-solar-cells-effect-of-the-molecular-shape
#26
JOURNAL ARTICLE
Yuhang Zhu, Hui Guo, Xiaoying Xiong, Dongdong Cai, Yunlong Ma, Qingdong Zheng
Currently, high-performance polymerized small-molecule acceptors (PSMAs) based on ADA-type SMAs are still rare and greatly demanded for polymer solar cells (PSCs). Herein, two novel regioregular PSMAs (PW-Se and PS-Se) are designed and synthesized by using centrosymmetric (linear-shaped) and axisymmetric (banana-shaped) ADA-type SMAs as the main building blocks, respectively. It is demonstrated that photovoltaic performance of the PSMAs can be significantly improved by optimizing the configuration of ADA-type SMAs...
March 21, 2024: Advanced Materials
https://read.qxmd.com/read/38511580/electrostatic-potential-design-of-solid-additives-for-enhanced-molecular-order-of-polymer-donor-in-efficient-organic-solar-cells
#27
JOURNAL ARTICLE
Zhenghong Chen, Chuanhang Guo, Liang Wang, Chen Chen, Jinlong Cai, Chenhao Liu, Zirui Gan, Yuandong Sun, Jinpeng Zhou, Jing Zhou, Dan Liu, Tao Wang, Wei Li
Polymeric semiconducting materials struggle to achieve fast charge mobility due to low structural order. In this work, five 1H-indene-1,3(2H)dione-benzene structured halogenated solid additives namely INB-5F, INB-3F, INB-1F, INB-1Cl, and INB-1Br with gradually varied electrostatic potential are designed and utilized to regulate the structural order of polymer donor PM6. Molecular dynamics simulations demonstrate that although the dione unit of these additives tends to adsorb on the backbone of PM6, the reduced electrostatic potential of the halogen-substituted benzene can shift the benzene interacting site from alkyl side chains to the conjugated backbone of PM6, not only leading to enhanced π-π stacking in out-of-plane but also arising new π-π stacking in in-plane together with the appearance of multiple backbone stacking in out-of-plane, consequent to the co-existence of face-on and edge-on molecular orientations...
March 21, 2024: Small
https://read.qxmd.com/read/38504635/rapid-thiophene-annulations-via-na2s-powerful-tools-for-facile-synthesis-of-dithienobenzothiadiazoles-and-d18-cl-polymer-for-organic-solar-cells
#28
JOURNAL ARTICLE
Jun Mo Kang, Shin Yeong Kim, Kyukwan Zong
A new synthetic route for rapidly constructing dithieno[3',2':3,4;2'',3'':5,6]benzo[1,2-c][1,2,5]thiadiazoles via a Na2S promoted thiophene-annulation was developed and successfully applied to cost-effective synthesis of D18-Cl polymer that has attracted a great attention as a highly efficient polymer donor in the field of bulk-heterojunction polymer solar cells. A commercially available 4,7-dihalo-5,6-difluorobenzo[c][1,2,5]thiadiazole was converted into a range of the corresponding 4,7-dialkynlated compounds under Sonogashira reaction condition...
March 20, 2024: ChemSusChem
https://read.qxmd.com/read/38501443/high-efficiency-ternary-polymer-solar-cells-with-a-gradient-blended-structure-fabricated-by-sequential-deposition
#29
JOURNAL ARTICLE
Jianghao Jin, Qiao Wang, Wenfei Shen, Laurence A Belfiore, Jianguo Tang
Acquiring the ideal blend morphology of the active layer to optimize charge separation and collection is a constant goal of polymer solar cells (PSCs). In this paper, the ternary strategy and the sequential deposition process were combined to make sufficient use of the solar spectrum, optimize the energy-level structure, regulate the vertical phase separation morphology, and ultimately enhance the power conversion efficiency (PCE) and stability of the PSCs. Specifically, the donor and acceptor illustrated a gradient-blended distribution in the sequential deposition-processed films, thus resulting in facilitated carrier characteristics in the gradient-blended devices...
March 19, 2024: ACS Applied Materials & Interfaces
https://read.qxmd.com/read/38496928/enhancing-long-term-durability-of-electrochemical-reactors-producing-formate-from-co-2-and-water-designed-for-integration-with-solar-cells
#30
JOURNAL ARTICLE
Naohiko Kato, Yasuaki Kawai, Natsumi Nojiri, Masahito Shiozawa, Yoshihiro Kikuzawa, Nobuaki Suzuki, Satoru Kosaka, Yuichi Kato, Juntaro Seki, Tsuyoshi Hamaguchi, Yasuhiko Takeda
Artificial photosynthetic cells producing organic matter from CO2 and water have been extensively studied for carbon neutrality, and the research trend is currently transitioning from proof of concept using small-sized cells to large-scale demonstrations for practical applications. We previously demonstrated a 1 m2 size cell in which an electrochemical (EC) reactor featuring a ruthenium (Ru)-complex polymer (RuCP) cathode catalyst was integrated with photovoltaic cells. In this study, we tackled the remaining issue to improve the long-term durability of cathode electrodes used in the EC reactors, demonstrating high Faradaic efficiencies exceeding 80% and around 60% electricity-to-chemical energy-conversion efficiencies of a 75 cm2 sized EC reactor after continuous operation for 3000 h under practical conditions...
March 12, 2024: ACS Omega
https://read.qxmd.com/read/38485958/publisher-correction-polymer-acid-metal-quasi-ohmic-contact-for-stable-perovskite-solar-cells-beyond-a-20-000-hour-extrapolated-lifetime
#31
Junsheng Luo, Bowen Liu, Haomiao Yin, Xin Zhou, Mingjian Wu, Hongyang Shi, Jiyun Zhang, Jack Elia, Kaicheng Zhang, Jianchang Wu, Zhiqiang Xie, Chao Liu, Junyu Yuan, Zhongquan Wan, Thomas Heumueller, Larry Lüer, Erdmann Spiecker, Ning Li, Chunyang Jia, Christoph J Brabec, Yicheng Zhao
No abstract text is available yet for this article.
March 14, 2024: Nature Communications
https://read.qxmd.com/read/38475280/chemically-engineered-titanium-oxide-interconnecting-layer-for-multijunction-polymer-solar-cells
#32
JOURNAL ARTICLE
Geunjin Kim, Hyungcheol Back, Jaemin Kong, Laiba Naseer, Jiwon Jeong, Jaehyoung Son, Jongjin Lee, Sung-Oong Kang, Kwanghee Lee
We report chemically tunable n-type titanium oxides using ethanolamine as a nitrogen dopant source. As the amount of ethanolamine added to the titanium oxide precursor during synthesis increases, the Fermi level of the resulting titanium oxides (ethanolamine-incorporated titanium oxides) significantly changes from -4.9 eV to -4.3 eV, and their free charge carrier densities are enhanced by two orders of magnitudes, reaching up to 5 × 1018 cm-3 . Unexpectedly, a basic ethanolamine reinforces not only the n-type properties of titanium oxides, but also their basicity, which facilitates acid-base ionic junctions in contact with acidic materials...
February 21, 2024: Polymers
https://read.qxmd.com/read/38474488/application-of-copper-sulfur-compound-electrode-materials-in-supercapacitors
#33
REVIEW
Junhua Lu, Hedong Jiang, Pingchun Guo, Jiake Li, Hua Zhu, Xueyun Fan, Liqun Huang, Jian Sun, Yanxiang Wang
Supercapacitors (SCs) are a novel type of energy storage device that exhibit features such as a short charging time, a long service life, excellent temperature characteristics, energy saving, and environmental protection. The capacitance of SCs depends on the electrode materials. Currently, carbon-based materials, transition metal oxides/hydroxides, and conductive polymers are widely used as electrode materials. However, the low specific capacitance of carbon-based materials, high cost of transition metal oxides/hydroxides, and poor cycling performance of conductive polymers as electrodes limit their applications...
February 23, 2024: Molecules: a Journal of Synthetic Chemistry and Natural Product Chemistry
https://read.qxmd.com/read/38473667/photonic-crystal-structures-for-photovoltaic-applications
#34
REVIEW
Anna Starczewska, Mirosława Kępińska
Photonic crystals are artificial structures with a spatial periodicity of dielectric permittivity on the wavelength scale. This feature results in a spectral region over which no light can propagate within such a material, known as the photonic band gap (PBG). It leads to a unique interaction between light and matter. A photonic crystal can redirect, concentrate, or even trap incident light. Different materials (dielectrics, semiconductors, metals, polymers, etc.) and 1D, 2D, and 3D architectures (layers, inverse opal, woodpile, etc...
March 4, 2024: Materials
https://read.qxmd.com/read/38470768/polymer-lewis-base-for-improving-the-charge-transfer-in-tin-lead-mixed-perovskite-solar-cells
#35
JOURNAL ARTICLE
Yanjun Xing, Zhiqiang Deng, Qiuxiang Wang, Jiaxing Xiong, Xiaohui Liu, Like Huang, Yuejin Zhu, Jing Zhang
The poor film stability of Sn-Pb mixed perovskite film and the mismatched interface energy levels pose significant challenges in enhancing the efficiency of tin-lead (Sn-Pb) mixed perovskite solar cells. In this study, polyvinylpyrrolidone (PVP) is introduced into the PVK perovskite precursor solution, effectively enhancing the overall stability of the film. This improvement is achieved through the formation of robust coordination bonds between the carbonyl (C=O) in the pyrrole ring and the undercoordinated SnII and PbII , thereby facilitating the passivation of defects...
February 27, 2024: Nanomaterials
https://read.qxmd.com/read/38464695/impact-of-length-of-branched-alkyl-side-chains-on-thiazolothiazole-based-small-molecular-acceptors-in-non-fullerene-polymer-solar-cells
#36
JOURNAL ARTICLE
Wenhong Peng, Jiyu Xiong, Tao Chen, Dong Zhao, Jinran Liu, Ning Zhang, Yefang Teng, Junting Yu, Weiguo Zhu
It has been reported that the length of branched alkyl side chains on fused-ring electron acceptors confers different impacts on properties versus solubility of BJH blends. However, because this impact on a non-fused acceptor backbone has rarely been studied, we examined the impact of molecular optimization from alkyl chain tuning based on non-fused thiazolothiazole small-molecule acceptors. The length of the side chain on the thiophene bridge was modified from 2-butyloctyl to 2-ethylhexyl, which corresponds to small molecules TTz3(C4C6) and TTz3(C2C4), respectively...
March 6, 2024: RSC Advances
https://read.qxmd.com/read/38461153/tuning-polymer-backbone-coplanarity-and-conformational-order-to-achieve-high-performance-printed-all-polymer-solar-cells
#37
JOURNAL ARTICLE
Yilei Wu, Yue Yuan, Diego Sorbelli, Christina Cheng, Lukas Michalek, Hao-Wen Cheng, Vishal Jindal, Song Zhang, Garrett LeCroy, Enrique D Gomez, Scott T Milner, Alberto Salleo, Giulia Galli, John B Asbury, Michael F Toney, Zhenan Bao
All-polymer solar cells (all-PSCs) offer improved morphological and mechanical stability compared with those containing small-molecule-acceptors (SMAs). They can be processed with a broader range of conditions, making them desirable for printing techniques. In this study, we report a high-performance polymer acceptor design based on bithiazole linker (PY-BTz) that are on par with SMAs. We demonstrate that bithiazole induces a more coplanar and ordered conformation compared to bithiophene due to the synergistic effect of non-covalent backbone planarization and reduced steric encumbrances...
March 9, 2024: Nature Communications
https://read.qxmd.com/read/38449657/metallic-nanoparticles-and-hybrids-of-metallic-nanoparticles-graphene-nanomaterials-for-enhanced-photon-harvesting-and-charge-transport-in-polymer-and-dye-sensitized-solar-cells
#38
REVIEW
Tabitha A Amollo
Solar energy is a sustainable option in the provision of affordable and clean energy. Conversion of solar energy to electricity requires the development of materials and technologies that are not only efficient but also cost-effective. Polymer solar cells (PSCs) and dye sensitized solar cells (DSSCs) are some of the cost-effective technologies for solar energy conversion. However, PSCs suffer from poor optical absorption and charge carrier mobility, while the major drawback to high efficiencies in DSSCs is charge carrier recombination...
March 15, 2024: Heliyon
https://read.qxmd.com/read/38447136/terpolymer-containing-a-meta-octyloxy-phenyl-modified-dithieno-3-2-f-2-3-h-quinoxaline-unit-enabling-efficient-organic-solar-cells
#39
JOURNAL ARTICLE
Yuchen Zhou, Shujuan Liu, Zezhou Liang, Haimei Wu, Liuchang Wang, Weiping Wang, Baofeng Zhao, Zhiyuan Cong, Guanghao Lu, Chao Gao
With the rapid development of small-molecule electron acceptors, polymer electron donors are becoming more important than ever in organic photovoltaics, and there is still room for the currently available high-performance polymer donors. To further develop polymer donors with finely tunable structures to achieve better photovoltaic performances, random ternary copolymerization is a useful technique. Herein, by incorporating a new electron-withdrawing segment 2,3-bis(3-octyloxyphenyl)dithieno[3,2- f :2',3'- h ]quinoxaline derivative (C12T-TQ) to PM6, a series of terpolymers were synthesized...
March 6, 2024: ACS Applied Materials & Interfaces
https://read.qxmd.com/read/38443353/polymer-acid-metal-quasi-ohmic-contact-for-stable-perovskite-solar-cells-beyond-a-20-000-hour-extrapolated-lifetime
#40
JOURNAL ARTICLE
Junsheng Luo, Bowen Liu, Haomiao Yin, Xin Zhou, Mingjian Wu, Hongyang Shi, Jiyun Zhang, Jack Elia, Kaicheng Zhang, Jianchang Wu, Zhiqiang Xie, Chao Liu, Junyu Yuan, Zhongquan Wan, Thomas Heumueller, Larry Lüer, Erdmann Spiecker, Ning Li, Chunyang Jia, Christoph J Brabec, Yicheng Zhao
The development of a robust quasi-ohmic contact with minimal resistance, good stability and cost-effectiveness is crucial for perovskite solar cells. We introduce a generic approach featuring a Lewis-acid layer sandwiched between dopant-free semicrystalline polymer and metal electrode in perovskite solar cells, resulting in an ideal quasi-ohmic contact even at elevated temperature up to 85 °C. The solubility of Lewis acid in alcohol facilitates nondestructive solution processing on top of polymer, which boosts hole injection from polymer into metal by two orders of magnitude...
March 5, 2024: Nature Communications
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