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NTIS 바로가기Chemistry of materials : a publication of the American Chemical Society, v.32 no.16, 2020년, pp.6990 - 6997
Na, Moony (Department of Chemistry , Korea Advanced Institute of Science and Technology (KAIST) , 291 Daehak-ro , Yuseong-gu, Daejeon 34141 , Republic of Korea) , Oh, Yusik (Department of Chemistry , Korea Advanced Institute of Science and Technology (KAIST) , 291 Daehak-ro , Yuseong-gu, Daejeon 34141 , Republic of Korea) , Byon, Hye Ryung
Organic electrodes have been extensively developed to enhance cycling performance in aqueous zinc (Zn)-ion cells. However, little is known about an ion-association process, which caused insufficient diagnoses of various cyclability results. Protons (H+) are charge carriers alongside Zn2+ ions in mil...
Liu, Jilei, Xu, Chaohe, Chen, Zhen, Ni, Shibing, Shen, Ze Xiang. Progress in aqueous rechargeable batteries. Green energy & environment, vol.3, no.1, 20-41.
Wang, Jianhui, Yamada, Yuki, Sodeyama, Keitaro, Watanabe, Eriko, Takada, Koji, Tateyama, Yoshitaka, Yamada, Atsuo. Fire-extinguishing organic electrolytes for safe batteries. Nature energy, vol.3, no.1, 22-29.
Demir-Cakan, Rezan, Palacin, M. Rosa, Croguennec, Laurence. Rechargeable aqueous electrolyte batteries: from univalent to multivalent cation chemistry. Journal of materials chemistry. A, Materials for energy and sustainability, vol.7, no.36, 20519-20539.
Parker, Joseph F., Chervin, Christopher N., Pala, Irina R., Machler, Meinrad, Burz, Michael F., Long, Jeffrey W., Rolison, Debra R.. Rechargeable nickel–3D zinc batteries: An energy-dense, safer alternative to lithium-ion. Science, vol.356, no.6336, 415-418.
Shin, Jaeho, Lee, Jimin, Park, Youngbin, Choi, Jang Wook. Aqueous zinc ion batteries: focus on zinc metal anodes. Chemical science, vol.11, no.8, 2028-2044.
Xu, Chengjun, Li, Baohua, Du, Hongda, Kang, Feiyu. Energetic Zinc Ion Chemistry: The Rechargeable Zinc Ion Battery. Angewandte Chemie. international edition, vol.51, no.4, 933-935.
Sun, Wei, Wang, Fei, Hou, Singyuk, Yang, Chongyin, Fan, Xiulin, Ma, Zhaohui, Gao, Tao, Han, Fudong, Hu, Renzong, Zhu, Min, Wang, Chunsheng. Zn/MnO2 Battery Chemistry With H+ and Zn2+ Coinsertion. Journal of the American Chemical Society, vol.139, no.29, 9775-9778.
Pan, Huilin, Shao, Yuyan, Yan, Pengfei, Cheng, Yingwen, Han, Kee Sung, Nie, Zimin, Wang, Chongmin, Yang, Jihui, Li, Xiaolin, Bhattacharya, Priyanka, Mueller, Karl T., Liu, Jun. Reversible aqueous zinc/manganese oxide energy storage from conversion reactions. Nature energy, vol.1, 16039-.
Wu, Xianyong, Hong, Jessica J., Shin, Woochul, Ma, Lu, Liu, Tongchao, Bi, Xuanxuan, Yuan, Yifei, Qi, Yitong, Surta, T. Wesley, Huang, Wenxi, Neuefeind, Joerg, Wu, Tianpin, Greaney, P. Alex, Lu, Jun, Ji, Xiulei. Diffusion-free Grotthuss topochemistry for high-rate and long-life proton batteries. Nature energy, vol.4, no.2, 123-130.
Fang, Guozhao, Zhou, Jiang, Pan, Anqiang, Liang, Shuquan. Recent Advances in Aqueous Zinc-Ion Batteries. ACS energy letters, vol.3, 2480-2501.
Shea, John J., Luo, Chao. Organic Electrode Materials for Metal Ion Batteries. ACS applied materials & interfaces, vol.12, no.5, 5361-5380.
Zhao, Qing, Huang, Weiwei, Luo, Zhiqiang, Liu, Luojia, Lu, Yong, Li, Yixin, Li, Lin, Hu, Jinyan, Ma, Hua, Chen, Jun. High-capacity aqueous zinc batteries using sustainable quinone electrodes. Science advances, vol.4, no.3, eaao1761-.
Guo, Zhaowei, Ma, Yuanyuan, Dong, Xiaoli, Huang, Jianhang, Wang, Yonggang, Xia, Yongyao. An Environmentally Friendly and Flexible Aqueous Zinc Battery Using an Organic Cathode. Angewandte Chemie. international edition, vol.57, no.36, 11737-11741.
Nam, Kwan Woo, Kim, Heejin, Beldjoudi, Yassine, Kwon, Tae-woo, Kim, Dong Jun, Stoddart, J. Fraser. Redox-Active Phenanthrenequinone Triangles in Aqueous Rechargeable Zinc Batteries. Journal of the American Chemical Society, vol.142, no.5, 2541-2548.
NamK. W. Nam and H. Kim contributed equally to this work., Kwan Woo, Kim, Heejin, Choi, Jin Hyeok, Choi, Jang Wook. Crystal water for high performance layered manganese oxide cathodes in aqueous rechargeable zinc batteries. Energy & environmental science, vol.12, no.6, 1999-2009.
Yan, Mengyu, He, Pan, Chen, Ying, Wang, Shanyu, Wei, Qiulong, Zhao, Kangning, Xu, Xu, An, Qinyou, Shuang, Yi, Shao, Yuyan, Mueller, Karl T., Mai, Liqiang, Liu, Jun, Yang, Jihui. Water‐Lubricated Intercalation in V2O5·nH2O for High‐Capacity and High‐Rate Aqueous Rechargeable Zinc Batteries. Advanced materials, vol.30, no.1, 1703725-.
Guin, Partha Sarathi, Das, Saurabh, Mandal, P. C.. Electrochemical Reduction of Quinones in Different Media: A Review. International journal of electrochemistry, vol.2011, 1-22.
Shi, Hua‐Yu, Ye, Yin‐Jian, Liu, Kuan, Song, Yu, Sun, Xiaoqi. A Long‐Cycle‐Life Self‐Doped Polyaniline Cathode for Rechargeable Aqueous Zinc Batteries. Angewandte Chemie. international edition, vol.57, no.50, 16359-16363.
Tie, Zhiwei, Liu, Luojia, Deng, Shenzhen, Zhao, Dongbing, Niu, Zhiqiang. Proton Insertion Chemistry of a Zinc–Organic Battery. Angewandte Chemie. international edition, vol.59, no.12, 4920-4924.
Huang, Jianhang, Wang, Zhuo, Hou, Mengyan, Dong, Xiaoli, Liu, Yao, Wang, Yonggang, Xia, Yongyao. Polyaniline-intercalated manganese dioxide nanolayers as a high-performance cathode material for an aqueous zinc-ion battery. Nature communications, vol.9, no.1, 2906-.
Katz, H. E., Lovinger, A. J., Johnson, J., Kloc, C., Siegrist, T., Li, W., Lin, Y.-Y., Dodabalapur, A.. A soluble and air-stable organic semiconductor with high electron mobility. Nature, vol.404, no.6777, 478-481.
Seydou, Mahamadou, Teyssandier, Joan, Battaglini, Nicolas, Kenfack, Ghislain Tsague, Lang, Philippe, Tielens, Frederik, Maurel, François, Diawara, Boubakar. Characterization of NTCDI supra-molecular networks on Au(111); combining STM, IR and DFT calculations. RSC advances, vol.4, no.49, 25698-25708.
Quantitative Chemical Analysis Harris D. C. 2015
Peover, M.E., Davies, J.D.. The influence of ion-association on the polarography of quinones in dimethylformamide. Journal of electroanalytical chemistry, vol.6, no.1, 46-53.
DeBlase, Catherine R., Hernández‐Burgos, Kenneth, Rotter, Julian M., Fortman, David J., dos S. Abreu, Dieric, Timm, Ronaldo A., Diógenes, Izaura C. N., Kubota, Lauro T., Abruña, Héctor D., Dichtel, William R.. Cation‐Dependent Stabilization of Electrogenerated Naphthalene Diimide Dianions in Porous Polymer Thin Films and Their Application to Electrical Energy Storage. Angewandte Chemie. international edition, vol.54, no.45, 13225-13229.
Yao, Xuhui, Ke, Yajie, Ren, Wenhao, Wang, Xuanpeng, Xiong, Fangyu, Yang, Wei, Qin, Mingsheng, Li, Qi, Mai, Liqiang. Defect‐Rich Soft Carbon Porous Nanosheets for Fast and High‐Capacity Sodium‐Ion Storage. Advanced energy materials, vol.9, no.6, 1803260-.
Ding, Yuanfei, Zhang, Feng, Xu, Jiacong, Miao, Yanqin, Yang, Yongzhen, Liu, Xuguang, Xu, Bingshe. Synthesis of short-chain passivated carbon quantum dots as the light emitting layer towards electroluminescence. RSC advances, vol.7, no.46, 28754-28762.
Ferraria, Ana Maria, Lopes da Silva, José Dias, Botelho do Rego, Ana Maria. XPS studies of directly fluorinated HDPE: problems and solutions. Polymer, vol.44, no.23, 7241-7249.
Oh, Y.J., Yoo, J.J., Kim, Y.I., Yoon, J.K., Yoon, H.N., Kim, J.H., Park, S.B.. Oxygen functional groups and electrochemical capacitive behavior of incompletely reduced graphene oxides as a thin-film electrode of supercapacitor. Electrochimica acta, vol.116, 118-128.
Pan, Dengyu, Wang, Lijun, Li, Zhen, Geng, Bijiang, Zhang, Chen, Zhan, Jing, Yin, Luqiao, Wang, Liang. Synthesis of graphene quantum dot/metal-organic framework nanocomposites as yellow phosphors for white light-emitting diodes. New journal of chemistry = Nouveau journal de chimie, vol.42, no.7, 5083-5089.
Al-Gaashani, R., Radiman, S., Daud, A.R., Tabet, N., Al-Douri, Y.. XPS and optical studies of different morphologies of ZnO nanostructures prepared by microwave methods. Ceramics international, vol.39, no.3, 2283-2292.
Stanimirova, Tsveta, Kerestedjian, Thomas, Kirov, Georgi. Dehydration and rehydration of Zn-hydroxy sulfate minerals with interrupted decorated hydroxide sheets. Applied clay science, vol.135, 16-26.
Zabolotskii, V I, Shel'deshov, N V, Gnusin, N P. Dissociation of Water Molecules in Systems with Ion-exchange Membranes. Russian chemical reviews, vol.57, no.8, 801-808.
Simons, R.. Water splitting in ion exchange membranes. Electrochimica acta, vol.30, no.3, 275-282.
Tanaka, Yoshinobu. Water dissociation in ion-exchange membrane electrodialysis. Journal of membrane science, vol.203, no.1, 227-244.
Albery, W. J.. Effect of the dissociation of water on electrochemical studies involving hydrogen ions. Transactions of the Faraday Society, vol.62, 1575-1582.
Wang, Xingfeng, Bommier, Clement, Jian, Zelang, Li, Zhifei, Chandrabose, Raghu S., Rodríguez‐Pérez, Ismael A., Greaney, P. Alex, Ji, Xiulei. Hydronium‐Ion Batteries with Perylenetetracarboxylic Dianhydride Crystals as an Electrode. Angewandte Chemie. international edition, vol.56, no.11, 2909-2913.
Shi, Yang, Tang, Hanmei, Jiang, Shengli, Kayser, Laure V., Li, Mingqian, Liu, Fang, Ji, Fei, Lipomi, Darren J., Ong, Shyue Ping, Chen, Zheng. Understanding the Electrochemical Properties of Naphthalene Diimide: Implication for Stable and High-Rate Lithium-Ion Battery Electrodes. Chemistry of materials : a publication of the American Chemical Society, vol.30, no.10, 3508-3517.
Rodríguez-Pérez, Ismael A., Yuan, Yifei, Bommier, Clement, Wang, Xingfeng, Ma, Lu, Leonard, Daniel P., Lerner, Michael M., Carter, Rich G., Wu, Tianpin, Greaney, P. Alex, Lu, Jun, Ji, Xiulei. Mg-Ion Battery Electrode: An Organic Solid’s Herringbone Structure Squeezed upon Mg-Ion Insertion. Journal of the American Chemical Society, vol.139, no.37, 13031-13037.
Wilson, Hannah, Byrne, Sean, Bampos, Nick, Mullen, Kathleen M.. ‘Click’ functionalised polymer resins: a new approach to the synthesis of surface attached bipyridinium and naphthalene diimide [2]rotaxanes. Organic & biomolecular chemistry, vol.11, no.13, 2105-2115.
Ando, Shinji, Harris, Robin K., Holstein, Peter, Reinsberg, Stefan A., Yamauchi, Kazuo. Solid-state 1H-static, 1H-MAS, and 1H→19F/19F→1H CP/MAS NMR study of poly(vinyl fluoride). Polymer, vol.42, no.19, 8137-8151.
Bastow, T.J., Hodge, R.M., Hill, A.J.. 1H and 13C NMR studies of water and heavy water absorption in poly(vinyl alcohol) hydrogels. Journal of membrane science, vol.131, no.1, 207-215.
Eftekhari, Ali, Fang, Baizeng. Electrochemical hydrogen storage: Opportunities for fuel storage, batteries, fuel cells, and supercapacitors. International journal of hydrogen energy, vol.42, no.40, 25143-25165.
Sotiriou‐Leventis, Chariklia, Mao, Zhan. A facile synthesis of 2,7‐diazapyrene. Journal of heterocyclic chemistry, vol.37, no.6, 1665-1667.
Keeling, D. L., Oxtoby, N. S., Wilson, C., Humphry, M. J., Champness, N. R., Beton, P. H.. Assembly and Processing of Hydrogen Bond Induced Supramolecular Nanostructures. Nano letters : a journal dedicated to nanoscience and nanotechnology, vol.3, no.1, 9-12.
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