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1421“…This is illustrated in a 20-minute synthesis of corannulene, a fragment of fullerene C(60), in 66% yield through ball milling of planar tetrabromomethylfluoranthene precursor under ambient conditions. …”
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1422por Liu, Yajuan, Li, Zhiyuan, Fan, Feng, Zhu, Xianjun, Jia, Lingbo, Chen, Muqing, Du, Pingwu, Yang, Lihua, Yang, Shangfeng“…Three different covalently functionalized‐BPNSs are synthesized, including the first fullerene‐functionalized BPNSs with C(60) covalently bonded onto the surface of BPNSs (abbreviated as C(60)‐s‐BP), surface‐functionalized BPNSs by benzoic acid (abbreviated as BA‐s‐BP), and edge‐functionalized BPNSs by C(60) (abbreviated as C(60)‐e‐BP), and the role of covalent functionalization pattern of BPNSs on its SDT efficacy is systematically investigated. …”
Publicado 2021
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1423por Grancharov, Georgy, Atanasova, Mariya-Desislava, Kalinova, Radostina, Gergova, Rositsa, Popkirov, Georgi, Dikov, Christosko, Sendova-Vassileva, Marushka“…In this study, some crucial parameters were determined of flexible polymer–organic solar cells prepared from an active layer blend of poly(3-hexylthiophene) (P3HT) and the fullerene derivative [6,6]-phenyl-C(61)-butyric acid methyl ester (PCBM) mixed in 1:1 mass ratio and deposited from chlorobenzene solution by spin-coating on poly(ethylene terephthalate) (PET)/ITO substrates. …”
Publicado 2021
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1424por Wójcik, Barbara, Sawosz, Ewa, Szczepaniak, Jarosław, Strojny, Barbara, Sosnowska, Malwina, Daniluk, Karolina, Zielińska-Górska, Marlena, Bałaban, Jaśmina, Chwalibog, André, Wierzbicki, Mateusz“…The objective of the study was to evaluate the toxic properties of the following nanomaterials: silver (Ag), gold (Au), platinum (Pt), graphene oxide (GO), diamond (ND), and fullerenol (C(60)(OH)(40)) against the cell lines BxPC-3, AsPC-1, HFFF-2, and HS-5. …”
Publicado 2021
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1425por Zhang, Shuangshuang, Li, Zihe, Luo, Kun, He, Julong, Gao, Yufei, Soldatov, Alexander V, Benavides, Vicente, Shi, Kaiyuan, Nie, Anmin, Zhang, Bin, Hu, Wentao, Ma, Mengdong, Liu, Yong, Wen, Bin, Gao, Guoying, Liu, Bing, Zhang, Yang, Shu, Yu, Yu, Dongli, Zhou, Xiang-Feng, Zhao, Zhisheng, Xu, Bo, Su, Lei, Yang, Guoqiang, Chernogorova, Olga P, Tian, Yongjun“…Herein, we report on amorphous (AM) carbon materials with a high fraction of sp(3) bonding recovered from compression of fullerene C(60) under high pressure and high temperature, previously unexplored. …”
Publicado 2021
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1426por Vuk, Dragana, Radovanović-Perić, Floren, Mandić, Vilko, Lovrinčević, Vilma, Rath, Thomas, Panžić, Ivana, Le-Cunff, Jerome“…The derived SQs were additionally characterized in thin-film configuration using cyclic voltammetry and UV-VIS spectroscopy and then processed to prepare self-standing bulk heterojunction (BHJ) thin films in conjunction with fullerene-based electron acceptors, which were characterized via profilometry. …”
Publicado 2022
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1427“…The role of the exchange functional in the predicted relationship between geometric structure and band gap is then explored, using fullerene, 2D polymorphs of elemental phosphorus and polyacetylene as case studies. …”
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1428por Sasitharan, Kezia, Kilbride, Rachel C., Spooner, Emma L.K., Clark, Jenny, Iraqi, Ahmed, Lidzey, David G., Foster, Jonathan A.“…In particular, this approach led to the development of PffBT4T2OD‐MON‐PCBM device with a PCE of 12.3%, which to the authors’ knowledge is the highest performing fullerene based OPV device reported in literature to date. …”
Publicado 2022
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1429por Torrinha, Álvaro, Oliveira, Thiago M. B. F., Ribeiro, Francisco W. P., de Lima-Neto, Pedro, Correia, Adriana N., Morais, Simone“…The literature search displayed the conjugation of more than 20 different ILs and several carbon nanomaterials (MWCNT, SWCNT, graphene, carbon nanofibers, fullerene, and carbon quantum dots, among others) that were applied for a large set (about 60) of pharmaceutical compounds. …”
Publicado 2022
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1430“…The present room temperature synthetic methodology may well be applied to the creation of nano/micro structures/materials using basic carbon nano units such as cycloparaphenylene (CPP, carbon nanorings) and fullerenes; e.g., C(60), C(70) and C(59)N.…”
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1431por Wang, Guangmei, Dorn, Katharina V., Siebeneichler, Stefanie, Valldor, Martin, Smetana, Volodymyr, Mudring, Anja-Verena“…The first representatives of this class of materials are [(R)(24)(NH(4))(14)(PO(OH)(2))(6)]·[M(134)(PO(3)(OH,F))(96)F(120)] (M = Co, R = C(2)Py = 1-ethylpyridinium and M = Ni, R = C(4)C(1)Py = 1-butyl-3-methylpyridinium) featuring interlinked fullerene-like nanosphere cavities. Having a transition metal building up the framework brings about interesting properties, for example, spin-glass behavior, and, with this particular topology, a hedgehog-like spin orientation.…”
Publicado 2022
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1432por Torimtubun, Alfonsina Abat Amelenan, Follana-Berná, Jorge, Sánchez, José G., Pallarès, Josep, Sastre-Santos, Ángela, Marsal, Lluis F.“…Ternary bulk heterojunction blends, consisting of a polymer donor PTB7-Th, fullerene acceptors PC(70)BM, and a third component MPcF(48), are formulated to fabricate TOSCs with a device architecture of ITO/PFN/active layer/V(2)O(5)/Ag. …”
Publicado 2021
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1433“…These molecules include big complex ones, such as fullerene (C(60)) and polycyclic aromatic hydrocarbons (PAHs), which are the main components of carbonaceous dust. …”
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1434por Gao, Yerun, Liao, Jiawen, Chen, Haoyu, Ning, Haijun, Wu, Qinghe, Li, Zhilin, Wang, Zhenye, Zhang, Xinliang, Shao, Ming, Yu, Yu“…Here, a self‐powered organic photodetector (OPD) composed of intrinsically stretchable polymer donor PNTB6‐Cl and non‐fullerene acceptor Y6 is reported. The PNTB6‐Cl:Y6 photoactive film accommodates a remarkable 100% strain without fracture, exhibiting a high optical anisotropy of 1.8 after strain alignment. …”
Publicado 2022
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1435por Schäfer, Daniela“…This grants the opportunity to easily expand this framework to include VH, HH or more exotic signals with different messenger particles in the future.No significant excess is observed above the estimated standard model background and limits are set at 95% confidence level on the cross section times branching fraction of a new particle,which are interpreted in terms of various models that predict spin-2 gravitons or spin-1 vector bosons. …”
Publicado 2019
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1436“…This research attempted to fabricate and characterize Bulk Hetero Junction (BHJ) based Nano Photo Diode (NPD) utilizing Graphene–polyethylene terephthalate (G–PET)/semiconducting Single-Wall Carbon Nano Tubes (s-SWCNT): fullerene (C(60)) blend/aluminium (Al) structure to determine the issues in the development of subretinal prosthesis. …”
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1437por Li, Yang-Yang, Ma, Xin-Xin, Song, Xin-Yan, Ma, Lin-Lin, Li, Yu-Ying, Meng, Xin, Chen, Yu-Jie, Xu, Ke-Xin, Moosavi-Movahedi, Ali Akbar, Xiao, Bao-Lin, Hong, Jun“…In this study, bovine serum albumin (BSA) was used to cross-link glucose oxidase (GOD) on a glassy carbon electrode (GCE) modified by a composite of hydroxy fullerene (HFs) and multi-walled carbon nanotubes (MWCNTs) and protected with a glutaraldehyde (GLA)/Nafion (NF) composite membrane to prepare a novel glucose biosensor. …”
Publicado 2023
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1438por Del Sole, Regina, Lo Porto, Chiara, Lotito, Sara, Ingrosso, Chiara, Comparelli, Roberto, Curri, Maria Lucia, Barucca, Gianni, Fracassi, Francesco, Palumbo, Fabio, Milella, Antonella“…A strategy to overcome these limitations relies on the realization of a nanocomposite that combines TiO(2) nanoparticles with carbon-based nanomaterials, such as rGO (reduced graphene oxide) and fullerene (C(60)). On the other hand, the design and realization of coatings formed of such TiO(2)-based nanocomposite coatings are essential to make them suitable for their technological applications, including those in the environmental field. …”
Publicado 2023
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1439por Hong, Soonil, Park, Byoungwook, Balamurugan, Chandran, Lee, Jinho, Kwon, Sooncheol“…We were able to form a uniform thin BCP film (∼10 nm) on a non-fullerene based organic photoactive layer using the doctor bladed coating method. …”
Publicado 2023
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1440por Qi, Shi-Chao, Sun, Zhen, Yang, Zhi-Hui, Zhao, Yun-Jie, Li, Jia-Xin, Liu, Xiao-Qin, Sun, Lin-Bing“…Here, a methodology to fabricate nondeforming photo-responsive sorbents is successfully exploited. With C(60)-fullerene doping in metalloporphyrin metal-organic frameworks (PCN-M, M = Fe, Co, or Ni) and intensively interacting with the metalloporphyrin sites, effective charge-transfer can be achieved over the metalloporphyrin-C(60) architectures once excited by the light at 350 to 780 nm. …”
Publicado 2023
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