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Journal articles on the topic 'Doped POT'

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1

Bhat, Vighneshwar S., T. S. Tilakraj, Mallikarjun K. Patil, Vikram Pujari, and Sanjeev R. Inamdar. "One-Pot Synthesis of Biocompatible Glycine Protected Chromium Doped ZnS Nanoparticles and their Optical Properties." IOP Conference Series: Materials Science and Engineering 1221, no. 1 (2022): 012029. http://dx.doi.org/10.1088/1757-899x/1221/1/012029.

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Abstract Here in, we report the synthesis and characterization of Chromium doped Zinc Sulfide nanoparticles (ZnS NPs). Initially, ZnS NPs are synthesized by bio-compatible glycine cap using simple one-pot co-precipitate method, and further it is doped by Chromium. The structure and morphology of these ZnS NPs was confirmed by X-Ray Diffractometry (XRD) and Scanning Electron Microscope with Elementary Dispersive Spectrum (SEM with EDS) techniques. The optical characterization techniques reveal that the Chromium doping affected the absorption and photoluminescence properties of the NPs. Photolum
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2

Zhang, Hui, Ye Han, Limeng Yang, Xiaoling Guo, Hailiang Wu, and Ningtao Mao. "Photocatalytic Activities of PET Filaments Deposited with N-Doped TiO2 Nanoparticles Sensitized with Disperse Blue Dyes." Catalysts 10, no. 5 (2020): 531. http://dx.doi.org/10.3390/catal10050531.

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In this study, the enhanced photocatalytic activities of polyethylene terephthalate (PET) filaments deposited with N-doped Titanium dioxide (TiO2) nanoparticles sensitized with water insoluble disperse blue SE–2R dye were investigated. The PET filaments were loaded with two types of N-doped TiO2 nanoparticles, one with and the other without being sensitized with disperse blue SE–2R dye, in one-pot hydrothermal process respectively. The differences in photocatalytic activities between the N-doped TiO2 and the dye-sensitized N-doped TiO2 nanoparticles when exposed to both UV rays and visible lig
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3

Jabkhiro, Hajar, Mario Luigi Naitana, Eleonora Marconi, et al. "One-Pot Synthesis of Zinc-Doped Mesoporous Silica." Crystals 15, no. 2 (2025): 100. https://doi.org/10.3390/cryst15020100.

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This paper presents an original method for synthesizing Zn-doped mesoporous silica (KCC-1) via a one-pot microemulsion method followed by hydrothermal treatment. Zn incorporation into the silica matrix was achieved by varying Zn/Si molar ratios from 1% to 8%. The Zn-doping effect on KCC-1 morphological and structural properties was investigated using several characterization techniques, providing new insights into the Zn-doping behavior and coordination environment. X-ray fluorescence (XRF) spectra confirmed the stoichiometric doping of silica nanoparticles for samples obtained with a precurso
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4

Dhiman, Nitesh, Markandeya Markandeya, Faimy Fatima, et al. "Predictive modeling and validation of arsenite removal by a one pot synthesized bioceramic buttressed manganese doped iron oxide nanoplatform." RSC Advances 7, no. 52 (2017): 32866–76. http://dx.doi.org/10.1039/c7ra03736h.

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5

Gallego, García Daniel, Unai Iriarte-Velasco, ORTIZ MIGUEL ANGEL GUTIERREZ, and ARIZTI JOSE LUIS AYASTUY. "Nickel aluminate spinel-derived catalysts for aqueous-phase hydrogenolysis of glycerol with in-situ hydrogen production: Effect of molybdenum doping." Applied Catalysis B: Environment and Energy 344 (May 5, 2024): 123671. https://doi.org/10.1016/j.apcatb.2023.123671.

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The correlation between the physico-chemical properties of bare and Mo-doped nickel aluminate derived catalysts and product distribution during hydrogenolysis of glycerol with in situ produced hydrogen in continuous was investigated. Stoichiometric nickel aluminate spinel was synthesized via citrate sol-gel in a one-pot synthesis and subsequently doped it with 1 wt% Mo, using both sol-gel one-pot and impregnation methods. Catalytic runs were performed at 235 ºC/ 45 bar for 4 h TOS. The results indicate that Mo-doping increased the number of both metal and acid sit
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6

Hosseini, Morteza, Mustafa Aghazadeh, and Mohammad Reza Ganjali. "A facile one-pot synthesis of cobalt-doped magnetite/graphene nanocomposite as peroxidase mimetics in dopamine detection." New J. Chem. 41, no. 21 (2017): 12678–84. http://dx.doi.org/10.1039/c7nj02082a.

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7

Casco, Mirian Elizabeth, Sebastian Kirchhoff, Desirée Leistenschneider, Marcus Rauche, Eike Brunner, and Lars Borchardt. "Mechanochemical synthesis of N-doped porous carbon at room temperature." Nanoscale 11, no. 11 (2019): 4712–18. http://dx.doi.org/10.1039/c9nr01019j.

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8

Wang, Miao, Yu Zhang, Michael Ng, et al. "One-pot synthesis of theranostic nanocapsules with lanthanide doped nanoparticles." Chemical Science 11, no. 26 (2020): 6653–61. http://dx.doi.org/10.1039/d0sc01033b.

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9

Yan, Tinghua, Wang Zhong, Ruiming Yu, et al. "Nitrogen-doped fluorescent carbon dots used for the imaging and tracing of different cancer cells." RSC Advances 9, no. 43 (2019): 24852–57. http://dx.doi.org/10.1039/c9ra03170g.

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10

Feng, Zijuan, Deru Lian, Xue Wu, Yi Liu, Wen Jia, and Xiaoya Yuan. "The synergy of N-doped and SPR-promoted photocatalytic removal of NO with graphene/Bi nanocomposites." RSC Advances 10, no. 5 (2020): 2734–39. http://dx.doi.org/10.1039/c9ra10001f.

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11

Guo, Yaoping, Zequan Zeng, Yongjin Liu, Zhanggen Huang, Yan Cui, and Jieyang Yang. "One-pot synthesis of sulfur doped activated carbon as a superior metal-free catalyst for the adsorption and catalytic oxidation of aqueous organics." Journal of Materials Chemistry A 6, no. 9 (2018): 4055–67. http://dx.doi.org/10.1039/c7ta09814f.

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12

Zhou, Wan, Jianle Zhuang, Wei Li, Chaofan Hu, Bingfu Lei, and Yingliang Liu. "Towards efficient dual-emissive carbon dots through sulfur and nitrogen co-doped." Journal of Materials Chemistry C 5, no. 32 (2017): 8014–21. http://dx.doi.org/10.1039/c7tc01819c.

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13

Zhou, Yazhou, Clive Hsu Yen, Shaofang Fu, et al. "One-pot synthesis of B-doped three-dimensional reduced graphene oxide via supercritical fluid for oxygen reduction reaction." Green Chemistry 17, no. 6 (2015): 3552–60. http://dx.doi.org/10.1039/c5gc00617a.

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14

Li, Si, Feng Wang, Xi-Wen He, Wen-You Li, and Yu-Kui Zhang. "One-pot hydrothermal preparation of gadolinium-doped silicon nanoparticles as a dual-modal probe for multicolor fluorescence and magnetic resonance imaging." Journal of Materials Chemistry B 6, no. 20 (2018): 3358–65. http://dx.doi.org/10.1039/c8tb00415c.

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15

Zhang, Yulan, Longlong Ma, Tiejun Wang, and Xinjun Li. "Highly activated Ag-doped Fe-based catalysts designed for Fischer–Tropsch synthesis." RSC Advances 5, no. 56 (2015): 45426–30. http://dx.doi.org/10.1039/c5ra08444j.

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16

Shi, Lihong, Xiaorui Dong, Guomei Zhang, et al. "Lysosome targeting, Cr(vi) and l-AA sensing, and cell imaging based on N-doped blue-fluorescence carbon dots." Analytical Methods 13, no. 32 (2021): 3561–68. http://dx.doi.org/10.1039/d1ay00977j.

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17

Wu, Huali, Li Xia, Juan Ren, Qiaoji Zheng, Chenggang Xu, and Dunmin Lin. "A high-efficiency N/P co-doped graphene/CNT@porous carbon hybrid matrix as a cathode host for high performance lithium–sulfur batteries." Journal of Materials Chemistry A 5, no. 38 (2017): 20458–72. http://dx.doi.org/10.1039/c7ta06504c.

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18

He, Minyao, Jiaxing Guo, Xincheng Wang, et al. "Direct conversion of cellulose into isosorbide over Ni doped NbOPO4 catalysts in water." New Journal of Chemistry 44, no. 25 (2020): 10292–99. http://dx.doi.org/10.1039/d0nj01403f.

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19

Liao, Han, Ziyi Wang, Song Chen, Hao Wu, Xiaojun Ma, and Mingqian Tan. "One-pot synthesis of gadolinium(iii) doped carbon dots for fluorescence/magnetic resonance bimodal imaging." RSC Advances 5, no. 82 (2015): 66575–81. http://dx.doi.org/10.1039/c5ra09948j.

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20

Gao, Buhong, Yu Sun, Yingchun Miao, Li Xu, and Zhongxia Wang. "Fluorometric detection of pH and quercetin based on nitrogen and phosphorus co-doped highly luminescent graphene-analogous flakes." Analyst 145, no. 1 (2020): 115–21. http://dx.doi.org/10.1039/c9an02077b.

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21

Wang, Baogang, Yan Lin, Hui Tan, et al. "One-pot synthesis of N-doped carbon dots by pyrolyzing the gel composed of ethanolamine and 1-carboxyethyl-3-methylimidazolium chloride and their selective fluorescence sensing for Cr(vi) ions." Analyst 143, no. 8 (2018): 1906–15. http://dx.doi.org/10.1039/c8an00077h.

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22

Duraivel, Malarkodi, Saravanan Nagappan, B. Balamuralitharan, et al. "Superior one-pot synthesis of a doped graphene oxide electrode for a high power density supercapacitor." New Journal of Chemistry 42, no. 13 (2018): 11093–101. http://dx.doi.org/10.1039/c8nj01672k.

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23

Gunasekaran, Sivagaami Sundari, and Sushmee Badhulika. "N-Doped carbon as the anode and ZnCo2O4/N-doped carbon nanocomposite as the cathode for high-performance asymmetric supercapacitor application." New Journal of Chemistry 45, no. 21 (2021): 9550–60. http://dx.doi.org/10.1039/d1nj01526e.

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24

Nguyen-Le, Minh-Tri, and Byeong-Kyu Lee. "Novel fabrication of a nitrogen-doped mesoporous TiO2-nanorod titanate heterojunction to enhance the photocatalytic degradation of dyes under visible light." RSC Advances 6, no. 37 (2016): 31347–50. http://dx.doi.org/10.1039/c6ra02826h.

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25

Ang, Jia Ming, Bing Li, Shibo Xi, et al. "Mussel-inspired facile synthesis of Fe/Co-polydopamine complex nanospheres: complexation mechanism and application of the carbonized hybrid nanospheres as an efficient bifunctional electrocatalyst." New Journal of Chemistry 42, no. 24 (2018): 19494–504. http://dx.doi.org/10.1039/c8nj04243h.

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26

José da Silva, Márcio, Jonh Alexander Vergara Torres, and Castelo Bandane Vilanculo. "Vanadium-doped phosphomolybdic acids as catalysts for geraniol oxidation with hydrogen peroxide." RSC Advances 12, no. 19 (2022): 11796–806. http://dx.doi.org/10.1039/d2ra01258h.

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27

Suzuki, Tomiko M., Takamasa Nonaka, Akihiko Suda та ін. "Highly crystalline β-FeOOH(Cl) nanorod catalysts doped with transition metals for efficient water oxidation". Sustainable Energy & Fuels 1, № 3 (2017): 636–43. http://dx.doi.org/10.1039/c7se00043j.

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28

Wang, Jin, Peng Wang, Shuang Wang, and Jinping Li. "A metal-free catalyst: sulfur-doped and sulfur nanoparticle-modified CMK-3 as an electrocatalyst for enhanced N2-fixation." New Journal of Chemistry 44, no. 48 (2020): 20935–39. http://dx.doi.org/10.1039/d0nj04365f.

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29

Jing, Zhongxin, Qingyun Zhao, Dehua Zheng, et al. "Nickel-doped pyrrhotite iron sulfide nanosheets as a highly efficient electrocatalyst for water splitting." Journal of Materials Chemistry A 8, no. 39 (2020): 20323–30. http://dx.doi.org/10.1039/d0ta07624d.

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30

Zhang, Zhongzheng, Baodeng Wang, Chenming Zhu, et al. "Facile one-pot synthesis of mesoporous carbon and N-doped carbon for CO2 capture by a novel melting-assisted solvent-free method." Journal of Materials Chemistry A 3, no. 47 (2015): 23990–99. http://dx.doi.org/10.1039/c5ta06465a.

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31

Cao, Yueling, Hepeng Zhang, Kangkai Liu, and Kai-Jie Chen. "Water-assisted one-pot synthesis of N-doped carbon supported Ru catalysts for heterogeneous catalysis." Chemical Communications 56, no. 76 (2020): 11311–14. http://dx.doi.org/10.1039/d0cc04743k.

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32

Yang, Lang, Jialei Ying, Zhenzhong Liu, et al. "Synthesis of core/shell cobalt-doped rutile TiO2 nanorods for MB degradation under visible light." RSC Advances 15, no. 13 (2025): 10144–49. https://doi.org/10.1039/d4ra08773a.

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33

Ikram, Muhammad, Namra Abid, Ali Haider, et al. "Toward efficient dye degradation and the bactericidal behavior of Mo-doped La2O3 nanostructures." Nanoscale Advances 4, no. 3 (2022): 926–42. http://dx.doi.org/10.1039/d1na00802a.

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34

Zhao, Yifang, Jian Li, Cong Lin, et al. "One-pot synthesis of Cu-modified HNb3O8 nanobelts with enhanced photocatalytic hydrogen production." Journal of Materials Chemistry A 6, no. 23 (2018): 10769–75. http://dx.doi.org/10.1039/c8ta02766h.

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35

Ravi, Krishnan, Jacky H. Advani, Balasaheb D. Bankar, Amravati S. Singh, and Ankush V. Biradar. "Sustainable route for the synthesis of flower-like Ni@N-doped carbon nanosheets from bagasse and its catalytic activity towards reductive amination of nitroarenes with bio-derived aldehydes." New Journal of Chemistry 44, no. 43 (2020): 18714–23. http://dx.doi.org/10.1039/d0nj04673f.

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36

Lu, Nannan, Tingting Zhang, Xiaoyi Yan, et al. "Facile synthesis of 3D N-doped porous carbon nanosheets as highly active electrocatalysts toward the reduction of hydrogen peroxide." Nanoscale 10, no. 31 (2018): 14923–30. http://dx.doi.org/10.1039/c8nr02573h.

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37

Zhang, Haichuan, Yingjie Li, Tianhao Xu, et al. "Amorphous Co-doped MoS2 nanosheet coated metallic CoS2 nanocubes as an excellent electrocatalyst for hydrogen evolution." Journal of Materials Chemistry A 3, no. 29 (2015): 15020–23. http://dx.doi.org/10.1039/c5ta03410h.

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38

Cao, Sheng, Shengliang Zhang, Tianran Zhang, Adrian Fisher, and Jim Yang Lee. "Metal-doped TiO2 colloidal nanocrystals with broadly tunable plasmon resonance absorption." Journal of Materials Chemistry C 6, no. 15 (2018): 4007–14. http://dx.doi.org/10.1039/c8tc00185e.

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39

Mahashabde, J. P., S. N. Patel, A. M. Patil, and J. P. Sonawane. "Synthesis and characterization of copolymer Poly [(Thiophene-2, 5-diyl)-co-para methoxy benzylidene] doped with Cobalt acetate using Oxidative polymerization." Research Journal of Chemistry and Environment 26, no. 1 (2021): 75–81. http://dx.doi.org/10.25303/2601rjce75081.

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A one pot oxidative polymerization technique is used to synthesize copolymer Poly [(thiophene-2, 5-diyl)-copara methoxy benzylidene]. In this technique we used catalyst POCl3 and 1, 4 dioxane solvent for copolymerization of para methoxy benzaldehyde with thiophene. One pot method takes around 24 hours. Doped copolymer was synthesized in presence of 0.2gm cobalt acetate. Catalyst is removed using ammonia. Products are obtained using menthol. UV–Vis, FTIR, 1HNMR, 13CNMR, XRD, FE-SEM, EDX, BET and TGA are used to analyze physical properties of undoped and doped copolymers. The polycrystalline pha
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40

Zhang, Xuan, Nan Hao, Xiaoya Dong, et al. "One-pot hydrothermal synthesis of platinum nanoparticle-decorated three-dimensional nitrogen-doped graphene aerogel as a highly efficient electrocatalyst for methanol oxidation." RSC Advances 6, no. 74 (2016): 69973–76. http://dx.doi.org/10.1039/c6ra12562j.

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41

Liu, Haiyan, Mei Han, Jinzong Zuo, et al. "Heteroatom-doped hollow carbon spheres made from polyaniline as an electrode material for supercapacitors." RSC Advances 9, no. 28 (2019): 15868–73. http://dx.doi.org/10.1039/c9ra02685a.

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42

Li, Xiaoyi, Jianfeng Huang, Liangliang Feng, et al. "Molybdenum and cobalt co-doped VC nanoparticles encapsulated in nanocarbon as efficient electrocatalysts for the hydrogen evolution reaction." Inorganic Chemistry Frontiers 9, no. 5 (2022): 870–78. http://dx.doi.org/10.1039/d1qi01313k.

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Molybdenum and cobalt co-doped VC nanoparticles encapsulated in nanocarbon (Mo, Co-VC@C) are successfully synthesized via a one-pot calcination route, exhibiting excellent electrocatalytic HER performance.
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43

Zhou, Wei, Jinxian Wang, Feifei Zhang, et al. "SnO2 nanocrystals anchored on N-doped graphene for high-performance lithium storage." Chemical Communications 51, no. 17 (2015): 3660–62. http://dx.doi.org/10.1039/c4cc08650c.

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44

Zhang, Wei, Fushan Wang, Xinlin Li, Yansheng Liu, and Jiantai Ma. "Pd nanoparticles modified rod-like nitrogen-doped ordered mesoporous carbons for effective catalytic hydrodechlorination of chlorophenols." RSC Advances 6, no. 33 (2016): 27313–19. http://dx.doi.org/10.1039/c6ra00617e.

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45

Zhou, Dan, Liping Yang, Linghui Yu, et al. "Fe/N/C hollow nanospheres by Fe(iii)-dopamine complexation-assisted one-pot doping as nonprecious-metal electrocatalysts for oxygen reduction." Nanoscale 7, no. 4 (2015): 1501–9. http://dx.doi.org/10.1039/c4nr06366j.

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46

Ritter, Benjamin, Thoralf Krahl, Knut Rurack, and Erhard Kemnitz. "Nanoscale CaF2 doped with Eu3+ and Tb3+ through fluorolytic sol–gel synthesis." J. Mater. Chem. C 2, no. 40 (2014): 8607–13. http://dx.doi.org/10.1039/c4tc01073f.

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47

Liu, Guannan, Shan Li, Ming Cheng, et al. "Facile synthesis of nitrogen and sulfur co-doped carbon dots for multiple sensing capacities: alkaline fluorescence enhancement effect, temperature sensing, and selective detection of Fe3+ ions." New Journal of Chemistry 42, no. 15 (2018): 13147–56. http://dx.doi.org/10.1039/c8nj02086h.

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48

Shu, Fangpeng, Daojun Lv, Xian-Lu Song, et al. "Fabrication of a hyaluronic acid conjugated metal organic framework for targeted drug delivery and magnetic resonance imaging." RSC Advances 8, no. 12 (2018): 6581–89. http://dx.doi.org/10.1039/c7ra12969f.

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49

Yu, Qiyun, Jiali Bai, Jiamei Huang, et al. "One-Pot Synthesis of N-Rich Porous Carbon for Efficient CO2 Adsorption Performance." Molecules 27, no. 20 (2022): 6816. http://dx.doi.org/10.3390/molecules27206816.

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N-enriched porous carbons have played an important part in CO2 adsorption application thanks to their abundant porosity, high stability and tailorable surface properties while still suffering from a non-efficient and high-cost synthesis method. Herein, a series of N-doped porous carbons were prepared by a facile one-pot KOH activating strategy from commercial urea formaldehyde resin (UF). The textural properties and nitrogen content of the N-doped carbons were carefully controlled by the activating temperature and KOH/UF mass ratios. As-prepared N-doped carbons show 3D block-shaped morphology,
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50

Zhai, Yingying, Kefeng Pan, and Ende Zhang. "Anti-Corrosive Coating of Carbon-Steel Assisted by Polymer-Camphorsulfonic Acid Embedded within Graphene." Coatings 10, no. 9 (2020): 879. http://dx.doi.org/10.3390/coatings10090879.

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A novel, economic and environmentally friendly anticorrosion coating material for metals is introduced and investigated in this paper. For this purpose, camphor-sulfonic-acid/graphene-doped poly(o-toluidine) composites (MG/CSA@POT) were fabricated using in-situ polymerization with (NH4)2S2O8 as an oxidant. The structure and the morphology of MG/CSA@POT were analyzed using FTIR (Fourier-transform infrared spectroscopy), XRD (X-ray diffraction), and SEM (Scanning Electron Microscope). Multilayer graphene (MG)/CSA@POT-polyurethane composite coatings (MG/CSA@POT-WPU) were prepared on the surface o
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