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Search for "photosensitizer" in Full Text gives 72 result(s) in Beilstein Journal of Organic Chemistry.

Constrained thermoresponsive polymers – new insights into fundamentals and applications

  • Patricia Flemming,
  • Alexander S. Münch,
  • Andreas Fery and
  • Petra Uhlmann

Beilstein J. Org. Chem. 2021, 17, 2123–2163, doi:10.3762/bjoc.17.138

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Published 20 Aug 2021

Towards new NIR dyes for free radical photopolymerization processes

  • Haifaa Mokbel,
  • Guillaume Noirbent,
  • Didier Gigmes,
  • Frédéric Dumur and
  • Jacques Lalevée

Beilstein J. Org. Chem. 2021, 17, 2067–2076, doi:10.3762/bjoc.17.133

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  • ][9]. NIR dyes, and more especially cyanine dyes, have been studied in NIR photosensitive systems [5][6][7][9][10][11][12][13][14][15]. The cyanine acts as a photosensitizer: it absorbs the light emitted in the NIR range and then acts with a combination of additives (oxidant agents and reducing agents
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Published 16 Aug 2021

On the application of 3d metals for C–H activation toward bioactive compounds: The key step for the synthesis of silver bullets

  • Renato L. Carvalho,
  • Amanda S. de Miranda,
  • Mateus P. Nunes,
  • Roberto S. Gomes,
  • Guilherme A. M. Jardim and
  • Eufrânio N. da Silva Júnior

Beilstein J. Org. Chem. 2021, 17, 1849–1938, doi:10.3762/bjoc.17.126

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Published 30 Jul 2021

A comprehensive review of flow chemistry techniques tailored to the flavours and fragrances industries

  • Guido Gambacorta,
  • James S. Sharley and
  • Ian R. Baxendale

Beilstein J. Org. Chem. 2021, 17, 1181–1312, doi:10.3762/bjoc.17.90

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Published 18 May 2021

Insight into functionalized-macrocycles-guided supramolecular photocatalysis

  • Minzan Zuo,
  • Krishnasamy Velmurugan,
  • Kaiya Wang,
  • Xueqi Tian and
  • Xiao-Yu Hu

Beilstein J. Org. Chem. 2021, 17, 139–155, doi:10.3762/bjoc.17.15

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  • explained as follows: the zinc(II)–cyclen complex can absorb light and facilitate the intramolecular electron transfer from benzyl alcohol to the excited flavin, and thus the benzaldehyde and the photoreduced flavin were produced. The study indicates the significance of connecting a photosensitizer and a
  • ], the [Co(dmgH)2(4-ppy)2]NO3 (27, dmgH2 = dimethylglyoxime, 4-ppy = 4-phenylpyridine) guest, and the EY photosensitizer, respectively (Figure 16) [49]. When mixed with the sacrificial electron donor TEOA in an anaerobic H2O/CH3CN 1:1 solution, this supramolecular system 27@CB[7]/EY could realize an
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Published 18 Jan 2021

Synthesis and characterization of S,N-heterotetracenes

  • Astrid Vogt,
  • Florian Henne,
  • Christoph Wetzel,
  • Elena Mena-Osteritz and
  • Peter Bäuerle

Beilstein J. Org. Chem. 2020, 16, 2636–2644, doi:10.3762/bjoc.16.214

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  • complementing the series, but did not yet describe synthetic details [7]. Xue et al. published a donor–acceptor photosensitizer for dye-sensitized solar cells, in which the N-phenylated SN4 unit serves as bridge between donor and acceptor moieties [34]. Further replacement of sulfur by nitrogen can lead to
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Published 26 Oct 2020

Dawn of a new era in industrial photochemistry: the scale-up of micro- and mesostructured photoreactors

  • Emine Kayahan,
  • Mathias Jacobs,
  • Leen Braeken,
  • Leen C.J. Thomassen,
  • Simon Kuhn,
  • Tom van Gerven and
  • M. Enis Leblebici

Beilstein J. Org. Chem. 2020, 16, 2484–2504, doi:10.3762/bjoc.16.202

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  • with a length of 11.5 m and an inner diameter of 0.8 mm were wrapped around two Pyrex® glass columns. UV lamps were placed inside the glass columns. A representative setup is given in Figure 3a. The addition of isopropanol to 2(5H)-furanone in the presence of the photosensitizer 4,4’-dimethoxy
  • this paper. This was because the large reactor volume (10 × 5 mL) was illuminated effectively by two low-power lamps (2 × 18 W). In addition, several photosensitizer and reactant concentrations were screened before the reaction was scaled up. With the selected photosensitizer concentration (10 mM), the
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Published 08 Oct 2020

Photosensitized direct C–H fluorination and trifluoromethylation in organic synthesis

  • Shahboz Yakubov and
  • Joshua P. Barham

Beilstein J. Org. Chem. 2020, 16, 2151–2192, doi:10.3762/bjoc.16.183

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  • absorption of radiation by another molecular entity called a photosensitizer. In mechanistic photochemistry, the term is limited to cases in which the photosensitizer is not consumed in the reaction” [89]. One can appreciate the close connection of this definition to that of photocatalysis, defined by the
  • principle, the photosensitizer is regenerated and therefore functions in a very similar way to a catalyst and can be deemed a photocatalyst. A common example of this concept is triplet photosensitization. The excited photocatalyst has a relatively high triplet-state energy and a long lifetime, such that it
  • deemed to proceed via SET. 2 Principles of photosensitization; selection of the photosensitizer and fluorinating reagent in C–H fluorinations 2.1 Photosensitization and appropriate photosensitizer The general mechanism of photosensitization is described in Figure 3 [86]. Initially, the PS absorbs visible
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Published 03 Sep 2020

When metal-catalyzed C–H functionalization meets visible-light photocatalysis

  • Lucas Guillemard and
  • Joanna Wencel-Delord

Beilstein J. Org. Chem. 2020, 16, 1754–1804, doi:10.3762/bjoc.16.147

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  • reaction media in order to transfer electrons from the low-valent metal complex formed in situ after reductive elimination of the product (Figure 4, right). In this way, the metalacyclic intermediate is reoxidized while the photosensitizer is reduced, thus completing the C–H activation catalytic cycle. By
  • described the combination of rhodium and photoredox catalysis for the direct C–H ortho-olefination of arylamides (Figure 7) [74]. The procedure was performed under air at 80 °C and turned out to be efficient using a low loading of a Ru-based photosensitizer. A broad range of DGs could be installed on the
  • of the photocatalyst in the absence of oxygen, suggesting that a direct electron transfer from the photosensitizer allowed the reoxidation of the active catalyst. However, the participation of molecular oxygen cannot be excluded. Rueping further demonstrated the capacity of the dual catalytic systems
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Published 21 Jul 2020

Photocatalysis with organic dyes: facile access to reactive intermediates for synthesis

  • Stephanie G. E. Amos,
  • Marion Garreau,
  • Luca Buzzetti and
  • Jerome Waser

Beilstein J. Org. Chem. 2020, 16, 1163–1187, doi:10.3762/bjoc.16.103

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Published 29 May 2020

Fluorinated phenylalanines: synthesis and pharmaceutical applications

  • Laila F. Awad and
  • Mohammed Salah Ayoup

Beilstein J. Org. Chem. 2020, 16, 1022–1050, doi:10.3762/bjoc.16.91

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  • ] (Scheme 33). 2.7. Photocatalyzed benzylic fluorination of N-phthalimido phenylalanine The photocatalyzed benzylic fluorination of phthalimide-protected phenylalanine methyl ester 145, using the photosensitizer 1,2,4,5-tetracyanobenzene (TCB), and Selectfluor in acetonitrile was carried out using a pen
  • lamp (λmax = 302 nm). By this route, the β-fluoro derivative 146 was obtained in 62% yield as racemic mixture [71] (Scheme 34). Recently, Egami and coworker also synthesized compound 146 in 43% yield (dr = 1:1) via the fluorination of 145, however without TCB as photosensitizer, but instead using an
  • using photosensitizer TCB. Synthesis of β-fluorophenylalanine derivatives using Selectflour and dibenzosuberenone. Synthesis of protected β-fluorophenylalanine via aziridinium intermediate 150. Synthesis of β-fluorophenylalanine derivatives via fluorination of α-hydroxy-β-aminophenylalanine derivatives
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Published 15 May 2020

Recent applications of porphyrins as photocatalysts in organic synthesis: batch and continuous flow approaches

  • Rodrigo Costa e Silva,
  • Luely Oliveira da Silva,
  • Aloisio de Andrade Bartolomeu,
  • Timothy John Brocksom and
  • Kleber Thiago de Oliveira

Beilstein J. Org. Chem. 2020, 16, 917–955, doi:10.3762/bjoc.16.83

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  • catalysts in both oxidative and reductive quenching. The use of porphyrins as a photosensitizer for singlet oxygen generation is presented in the second topic, which was subdivided into two sections: pericyclic reactions and heteroatom oxidations. The first section describes the use of singlet oxygen in
  • novelty (Scheme 33) [81]. They have also used TPP (immobilized acidic form) as photosensitizer and were able to produce up to 2.4 g of artemisinin per batch. The importance of artemisinin for Big Pharma has been confirmed during the last 20–30 years with many relevant publications. As mentioned before
  • amides (71–99% yields) and with 5–66% ee (Scheme 42). In 2018, Meng and co-workers developed a bifunctional photo-organocatalyst combining both the photosensitizer and the chirality inducer. Relevant enantiomeric excesses were observed (up to 86% ee) in the oxidation of both β-keto esters and β-keto
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Published 06 May 2020

Aldehydes as powerful initiators for photochemical transformations

  • Maria A. Theodoropoulou,
  • Nikolaos F. Nikitas and
  • Christoforos G. Kokotos

Beilstein J. Org. Chem. 2020, 16, 833–857, doi:10.3762/bjoc.16.76

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  • , proved to be completely inactive as the photosensitizer. Also, no reaction was observed when salicylaldehyde (68) was employed as a photosensitizer, despite of a triplet state energy of ≈70 kcal/mol, most probably due to an internal hydrogen bond (Scheme 16). As mentioned before, in the section on the
  • precatalyst, 4,4’-di-tert-butyl-2,2’-bipyridyl (dtbbpy) as the ligand for the nickel catalyst, benzaldehyde (8) as the photosensitizer and hydrogen abstractor, K2HPO4 as the base, and UV-A light for the excitation of 8. The reaction mixture was placed under a N2 atmosphere and irradiated for 72 h. Their
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Published 23 Apr 2020

Photophysics and photochemistry of NIR absorbers derived from cyanines: key to new technologies based on chemistry 4.0

  • Bernd Strehmel,
  • Christian Schmitz,
  • Ceren Kütahya,
  • Yulian Pang,
  • Anke Drewitz and
  • Heinz Mustroph

Beilstein J. Org. Chem. 2020, 16, 415–444, doi:10.3762/bjoc.16.40

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Published 18 Mar 2020

Visible-light-induced addition of carboxymethanide to styrene from monochloroacetic acid

  • Kaj M. van Vliet,
  • Nicole S. van Leeuwen,
  • Albert M. Brouwer and
  • Bas de Bruin

Beilstein J. Org. Chem. 2020, 16, 398–408, doi:10.3762/bjoc.16.38

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  • photosensitizer. Because the use of polar solvents did not lead to the desired reactivity, we turned to nonpolar solvents. Since [Cu(dap)2]Cl is insoluble in nonpolar solvents, we continued with the more reducing fac-[Ir(ppy)3] photocatalyst. The choice of benzene as a solvent led to a significant formation of
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Published 16 Mar 2020

p-Pyridinyl oxime carbamates: synthesis, DNA binding, DNA photocleaving activity and theoretical photodegradation studies

  • Panagiotis S. Gritzapis,
  • Panayiotis C. Varras,
  • Nikolaos-Panagiotis Andreou,
  • Katerina R. Katsani,
  • Konstantinos Dafnopoulos,
  • George Psomas,
  • Zisis V. Peitsinis,
  • Alexandros E. Koumbis and
  • Konstantina C. Fylaktakidou

Beilstein J. Org. Chem. 2020, 16, 337–350, doi:10.3762/bjoc.16.33

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  • action via its combination with the photosensitizer. It is worth mentioning that, mainly in dermatology, even UVB irradiation is considered of therapeutic use [16][17][18]. Besides the anticancer activities of photosensitizers [19][20][21], “post-antibiotic era” is experimenting with photosensitizers as
  • at 365 nm in the absence of AP (wells 3–7), nevertheless in the presence of the photosensitizer they are able to cause DNA photocleavage around 50% (wells 9–13). AP itself is inactive towards DNA, under the experimental conditions (well 8). Finally, we have used triplet energy quenchers such as
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Published 09 Mar 2020

Excited state dynamics for visible-light sensitization of a photochromic benzil-subsituted phenoxyl-imidazolyl radical complex

  • Yoichi Kobayashi,
  • Yukie Mamiya,
  • Katsuya Mutoh,
  • Hikaru Sotome,
  • Masafumi Koga,
  • Hiroshi Miyasaka and
  • Jiro Abe

Beilstein J. Org. Chem. 2019, 15, 2369–2379, doi:10.3762/bjoc.15.229

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  • acts as a singlet photosensitizer for PIC by the Dexter-type energy transfer. Visible-light sensitized photochromic reactions of PIC are important for expanding the versatility of potential applications to life sciences and materials science. Keywords: biradical; energy transfer; photochromism
  • similar to other radical dissociation-type photochromic molecules such as HABI and pentaarylbiimidazole (PABI) [33][34][35]. Therefore, if we could substitute a singlet photosensitizer unit to PIC, the visible-light sensitivity could be achieved by singlet–singlet energy transfer. The visible-light
  • sensitization of PIC expands the versatility of the rate-tunable photoswitches of PIC systems. In this study, we synthesized a novel PIC derivative conjugated with a visible-light photosensitizer (Benzil-PIC, Scheme 1) and investigated the excited state dynamics. We used a benzil framework as a photosensitizer
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Published 04 Oct 2019

Fluorescent phosphorus dendrimers excited by two photons: synthesis, two-photon absorption properties and biological uses

  • Anne-Marie Caminade,
  • Artem Zibarov,
  • Eduardo Cueto Diaz,
  • Aurélien Hameau,
  • Maxime Klausen,
  • Kathleen Moineau-Chane Ching,
  • Jean-Pierre Majoral,
  • Jean-Baptiste Verlhac,
  • Olivier Mongin and
  • Mireille Blanchard-Desce

Beilstein J. Org. Chem. 2019, 15, 2287–2303, doi:10.3762/bjoc.15.221

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  • photosensitizer injection. Conclusion The modularity of the synthesis of phosphorhydrazone dendrimers enables the incorporation of TPA fluorophores everywhere in their structure. Classically, the TPA fluorophores can be used as terminal functions of the dendrimers. Less classically, they can be used as core of
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Published 24 Sep 2019

α-Photooxygenation of chiral aldehydes with singlet oxygen

  • Dominika J. Walaszek,
  • Magdalena Jawiczuk,
  • Jakub Durka,
  • Olga Drapała and
  • Dorota Gryko

Beilstein J. Org. Chem. 2019, 15, 2076–2084, doi:10.3762/bjoc.15.205

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  • , 4) as an organocatalyst and meso-tetraphenylporphyrin (H2TPP, 5) as a photosensitizer followed by in situ reduction with NaBH4, proceeded similarly to the reported results for simple, achiral aldehydes giving the desired diols 6–8 in 31–41% yields with moderate conversion and alcohols 9–11 as
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Published 30 Aug 2019

Synthesis, photophysical and electrochemical properties of pyridine, pyrazine and triazine-based (D–π–)2A fluorescent dyes

  • Keiichi Imato,
  • Toshiaki Enoki,
  • Koji Uenaka and
  • Yousuke Ooyama

Beilstein J. Org. Chem. 2019, 15, 1712–1721, doi:10.3762/bjoc.15.167

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  • ][18][19][20][21][22][23][24], and a promising photosensitizer for dye-sensitized solar cells (DSSCs) [25][26][27][28][29][30][31][32][33][34]. Thus, in this work, to gain insight into the photophysical and electrochemical properties of D–π–A fluorescent dyes with an azine ring as electron-withdrawing
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Published 22 Jul 2019

Complexation of a guanidinium-modified calixarene with diverse dyes and investigation of the corresponding photophysical response

  • Yu-Ying Wang,
  • Yong Kong,
  • Zhe Zheng,
  • Wen-Chao Geng,
  • Zi-Yi Zhao,
  • Hongwei Sun and
  • Dong-Sheng Guo

Beilstein J. Org. Chem. 2019, 15, 1394–1406, doi:10.3762/bjoc.15.139

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  • photosensitizer and thus improve the photovoltaic conversion efficiency [65]. Conclusion In summary, we have investigated the complexation behavior of GC5A with several classical luminescent dyes and analyzed their complexation-induced photophysical changes. GC5A affords strong binding (106–108 M−1) to all dyes
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Published 25 Jun 2019

Synthesis and biological investigation of (+)-3-hydroxymethylartemisinin

  • Toni Smeilus,
  • Farnoush Mousavizadeh,
  • Johannes Krieger,
  • Xingzhao Tu,
  • Marcel Kaiser and
  • Athanassios Giannis

Beilstein J. Org. Chem. 2019, 15, 567–570, doi:10.3762/bjoc.15.51

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  • containing methylene blue as photosensitizer was exposed to sunlight and oxygen. The treatment of the resulting intermediate hydroperoxide with a small amount of trifluoroacetic acid as previously described [17][18], afforded in the frame of a Hock cleavage (+)-3-hydroxymethyl-9-desmethylartemisinin (16) in
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Published 27 Feb 2019

Organometallic vs organic photoredox catalysts for photocuring reactions in the visible region

  • Aude-Héloise Bonardi,
  • Frédéric Dumur,
  • Guillaume Noirbent,
  • Jacques Lalevée and
  • Didier Gigmes

Beilstein J. Org. Chem. 2018, 14, 3025–3046, doi:10.3762/bjoc.14.282

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  • species are produced, a wide range of monomers can be polymerized via a free radical or a cationic mechanism (anionic mechanisms are still rare) [8]. A PI can also be used in combination with a photosensitizer (PS) to extend the spectral sensitivity to longer wavelengths. The development of new
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Published 12 Dec 2018

Learning from B12 enzymes: biomimetic and bioinspired catalysts for eco-friendly organic synthesis

  • Keishiro Tahara,
  • Ling Pan,
  • Toshikazu Ono and
  • Yoshio Hisaeda

Beilstein J. Org. Chem. 2018, 14, 2553–2567, doi:10.3762/bjoc.14.232

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  • also described, with a focus on radical-involved reactions in terms of organic synthesis. Keywords: dehalogenation; electrolysis; green chemistry; heptamethyl cobyrinate; methyl transfer; 1,2-migration; photosensitizer; vitamin B12; Review 1. Introduction 1-1. Redox and coordination chemistry of B12
  • reaction of H2bpdc, Ru(bpy)2Cl2, and a zinc source under solvothermal conditions (bpy = 2,2′-bipyridine, Scheme 5) [41]. The molecular photosensitizer [Ru(bpy)3]2+ was incorporated into the MOF through adsorption to form Ru@MOF, accompanied by a color change. Furthermore, 1 was effectively immobilized on
  • water) could reduce 1 to form Co(I) species upon irradiation with ultraviolet (UV) light. We also reported a visible-light-driven system with a molecular photosensitizer such as Ru(bpy)32+ [39][40][102][103], cyclometalated iridium(III) complexes [104], and organic red dyes [105][106][107]. 4-2
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Published 02 Oct 2018

Bioinspired cobalt cubanes with tunable redox potentials for photocatalytic water oxidation and CO2 reduction

  • Zhishan Luo,
  • Yidong Hou,
  • Jinshui Zhang,
  • Sibo Wang and
  • Xinchen Wang

Beilstein J. Org. Chem. 2018, 14, 2331–2339, doi:10.3762/bjoc.14.208

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  • . Besides the CO2 reduction performance of the molecular complexes was evaluated by cooperation with a ruthenium photosensitizer Ru(bpy)32+ (bpy = 2’,2-bipyridine) with visible light irradiation [61][62][63][64][65][66][67]. As shown in Figure 5b, the activity of the CO2 reaction is reduced with the
  • after 3 h reaction in each case is due to photobleaching of the used dye photosensitizer. Moreover, after water oxidation and CO2 reduction reactions, the structures of 1-CN and 1-OMe were studied by 1H NMR spectroscopy, and no obvious changes were observed compared with the fresh samples (Supporting
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Published 05 Sep 2018
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