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2016. V. 7. 10444 (1-7).53. Ziqi Sun, Ting Liao, Yuhai Dou, Soo Min Hwang, Min-Sik Park, Lei Jiang, JungHo Kim, Shi Xue Dou. Generalized self-assembly of scalable two-dimensionaltransition metal oxide nanosheets // Nat. Commun. 2014. V. 5. 3813 (1-9).54. Nugroho P. Ariyanto, Huda Abdullah, Sahbuddin Shaari, Yarif Junaidi, BrianYuliarto. Preparation and characterisation of porous nanosheets zinc oxide films; basedon chemical bath deposition // World Applied Sciences Journal.
2009. V. 6. P. 764-768.55. Surendra Shinde, Haridas Dhaygude, Dae-Young Kim, Gajanan Ghodake,Prashant Bhagwat, Padma Dandge, Vijay Fulari. Improved synthesis of copper oxidenanosheets and its application in development of supercapacitor and antimicrobialagents // J.
Ind. and Eng. Chem. 2016. V. 36 P. 116-120.56. Fangze Deng, Lin Yu, Gao Cheng, Ting Lin, Ming Sun, Fei Ye, Yongfe Li.Synthesis of ultrathinmesoporousNiCo2O4nanosheets on carbonfiberpaper asintegrated high-performance electrodes for supercapacitors // J.
Power Sources.2014. V. 251. P. 202-207.57. Daoping Cai, Bin Liu, Dandan Wang, Yuan Liu, Lingling Wang, Han Li, YanrongWang,Chenxia Wang, Qiuhong Li, Taihong Wang Taihong Wang. Enhancedperformance of supercapacitors with ultrathin mesoporous NiMoO4 nanosheets //Electroch.
Act. 2014. V. 125. P. 294-301.58. Jawayria Mujtaba, Hongyu Sun, Guoyong Huang, Kristian Mølhave, Yanguo Liu,Yanyan Zhao, Xun Wang, Shengming Xu. Nanosheets as hierarchical Co3O4nanostructures for lithium ion battery anode materials // Scientific Reports. 2016. V. 620592 (1-8).12459. Yongfu Sun, Fengcai Lei, Shan Gao, Bicai Pan, Jingfang Zhou, Yi Xie.
Atomicallythin SnO2 sheets realizing efficient CO oxidation // Angew. Chem. Int. Ed. 2013. V. 52.P. 10569-10572.60. Yongfu Sun, Qinghua Liu, Shan Gao, Hao Cheng, Fengcai Lei, Zhihu Sun, YongJiang, Haibin Su, Shiqiang Wei, Yi Xie. Pits confined in ultrathin cerium (IV) oxide forstudying catalytic centers in carbon monoxide oxidation // Nat. Commun. 2013. V. 4.2899 (1-8).61.
Youqi Zhu, Chuanbao Cao, Shi Tao, Wangsheng Chu, Ziyu Wu, Yadong Li.Ultrathin nickel hydroxide and oxide nanosheets: Synthesis, characterizations andexcellent supercapacitor performances // Scientific Reports. 2014. V. 4. 5787 (1-7).62. Yajie Wang, Jianjun Tian, Chengbin Fei, Lili Lv, Xiaoguang Liu, Zhenxuan Zhao,Guozhong Cao. Microwave-assisted synthesis of SnO2 nanosheets photoanodes for dyesensitized solar cells // J. Phys. Chem.
C. 2014. V. 118. P. 25931−25938.63. Wei-Wei Wang, Ying-Jie Zhu, Guo-Feng Cheng, Yue-Hong Huang. Microwaveassisted synthesis of cupric oxide nanosheets and nanowhiskers // Mater. Lett. 2006. V.60. P. 609-612.64. Minoru Osada, Takayoshi Sasaki. Two-dimensional dielectric nanosheets: novelnanoelectronics from nanocrystal building blocks // Adv. Mater. 2012. V. 24 P. 210228.65. Shi He, Yuanyuan Huang, Junheng Huang, Wei Liu, Tao Yao, Shan Jiang, FuminTang, Jinkun Liu, Fengchun Hu, Zhiyun Pan.
Ultrathin CoOOH oxides nanosheetsrealizing efficient photocatalytic hydrogen evolution // J. Phys. Chem. C. 2015. V. 119.P. 26362-26366.66. Karla R. Reyes-Gil, Enrique A. Reyes-García, Daniel Raftery. Doped In2O3 thinfilm electrodes for photocatalytic water splitting // J. Phys. Chem. C. 2007. V. 111. P.14579-14588.67. Yong Ge Lv, Yong Li, Na Ta, Wen Jie Shen. Co3O4 nanosheets: Synthesis andcatalytic application for CO oxidation at room temperature // Science China Chemistry.2014. V.
57. P. 873-880.12568. Zhongkui Zhao, Jinhan Lin, Guiru Wang, Turghun Muhammad. Novel Co-Mn-Onanosheet catalyst for CO preferential oxidation toward hydrogen purification //American Institute of Chemical Engineers. 2015. V. 61. P. 239-252.69. Chen X. Y., Yong Zhou, Qi Liu, Zhengdao Li, Jianguo Liu, Zhigang Zou. Ultrathin,single-crystal WO3 nanosheets by two-dimensional oriented attachment towardenhanced photocatalystic reduction of CO2 into hydrocarbon fuels under visible light //ACS Appl. Mater. Interfaces. 2012. V.
4. P. 3372-3377.70. Jiao Yang, Yi-Lin Jiang, Lin-Jie Li, Elisée Muhirea, Mei-Zhen Gao. Highperformancephotodetectorsandenhanced photocatalysts of two-dimensionalTiO2 nanosheets under UV light excitation // Nanoscale. 2016. V. 8. P. 8170-8177.71. Sheng-Joue Young, Yi-Hsing Liu. Ultraviolet photodetectors with Ga-doped ZnOnanosheets structure // Microelectronic Engineering. 2015.
V. 148. P. 14-16.72. Jianzhe Liu, Mianzeng Zhong, Jingbo Li, Anlian Pan, Xiaoli Zhu. Few-layer WO3nanosheets for high-performance UV-photodetectors // Mater. Lett. 2015. V. 148.P. 184-187.73. Raghavender Tummala, Ramesh K. Guduru, Pravansu S. Mohanty. NanostructuredCo3O4 electrodes for supercapacitor applications from plasma spray technique // J.Power Sources. 2012. V.
209. P. 44-51.74. Xiaoying Xie, Chen Zhang, Ming-Bo Wu, Ying Tao, Wei Lv, Quan-Hong Yang.Quan-Hong Yang. Porous MnO2 for use in a high performance supercapacitor:replication of a 3D graphene network as a reactive template // Chem. Commun. 2013.V. 49. P. 11092-11094.75. Zhenyu Luo, Enhui Liu, Tiantian Hu, Zengpeng Li, Tiantian Liu. Effect of syntheticmethods on electrochemical performances of VOPO4·2H2O supercapacitor // Ionics2015. V. 21. P. 289-294.76.
Anjon Kumar Mondal, Dawei Su, Ying Wang, Shuangqiang Chen, and GuoxiuWang Chem. Hydrothermal synthesis of nickel oxide nanosheets for lithium-ionbatteries and supercapacitors with excellent performance // Asian J. 2013. V. 8. P.
28282832.12677. Fengcai Lei, Yongfu Sun, Katong Liu, Shan Gao, Liang Liang, Bicai Pan, Yi Xie.Oxygen vacancies confined in ultrathin indium oxide porous sheets for promotedvisible-light water splitting // J. Am. Chem. Soc. 2014. V. 136. P. 6826-6829.78.
Gao S., Sun Y., Lei F., Liang L., Liu J., Bi W., Pan B., Xie Y. Ultrahigh energydensity realized by a single-layer β-Co(OH)2. All-solid-state asymmetric supercapacitor// Angew. Chem. Int. Ed. 2014. V. 53. P. 12789-12793.79. Bitao Dong, Xue Zhang, Xin Xu, Guoxin Gao, Shujiang Ding, Jun Li, Beibei Li.Preparation of scale-like nickel cobaltite nanosheets assembled on nitrogen-dopedreduced graphene oxide for high-performance supercapacitors // Carbon. 2014. V.
80. P.222-228.80. Алесковский В.Б. Стехиометрия и синтез твердых соединений // АлесковскийВ.Б. Л.: Наука, 1976.81. Алесковский В.Б., Кольцов С.И. Изучение взаимодействия четыреххлористоготитана с силикагелем // Ж. приклад. химии. 1967. Т. 40. С. 907.82. Кольцов С.И., Алесковский В.Б. Получение и исследование продуктоввзаимодействия четыреххлористого германия с силикагелем // Ж.
приклад. химии.1969. Т. 42. С. 1950-1956.83. Suntola T. Atomic layer epitaxy // Mater. Sci. Rep. 1989. V. 4. P. 261-312.84. Алесковский В.Б. Стехиометрия и синтез твердых соединений // АлесковскийВ.Б. Л.: Наука, Т. 2. 1976.85. Алесковский В.Б. Химия надмолекулярных соединений // Алесковский В.Б.СПб.: Изд. СПбГУ, 1996.86. Nicolau Y.F., Dupuy M., Brunel M. ZnS, CdS, and Zn1−xCdxS Thin films depositedby the successive ionic layer adsorption and reaction process // J. Electrochem.
Soc.1990. V. 137. P. 2915-2924.87. Гулина Л.Б., Толстой. В.П. Синтез нанослоев In2S3 на поверхности кремнеземаметодом ионного наслаивания // Ж. общей химии. 1999. Т. 69. С. 1593-1597.88. Толстой В.П. Реакции ионного наслаивания. Применение в нанотехнологии //Успехи химии, 2006. Т. 75. С. 183-199.12789. Jler R.K. Multilayers of colloidal particles // J. Coll. Interf. Sci., 1966. V. 21. P.569-594.90. Патент US N 4675207A, data of prior.
13.08.1985. Publ. 23.06.1987.91. Авт. свид. № 1386600 СССР; Бюлл. изобр. дата приор. 06.01. 1986. Опубл.Бюл. изобр. 1988. № 3, C. 114.92. Shrikant S. Raut, Babasaheb R. Sankapal First report on synthesis of ZnFe2O4 thinfilm using successive ionic layer adsorption and reaction: Approach towards solid-statesymmetric supercapacitor device // Electrochim. Act. 2016. V. 198. P. 203-211.93. Толстой В.П. Синтез методом ионного наслаивания сверхтонких слоевSnO2·H2O на поверхности кремния // Ж. неорг.
химии. 1993. Т. 38, С. 1146-1148.94. Толстой В.П. Синтез нанослоев FeOOH на поверхности кремнезема пометодике “слой-за-слоем” // Ж. приклад. химии. 1999. Т. 72. С. 1259-1262.95. Толстой В.П., Толстобров Е.В., Мурин И.В. Синтез на поверхностикремнезема Ce(IV)-O- и Ce(IV)-La-O- содержащих нанослоев методом ионногонаслаивания // Изв. РАН. Неорг. матер. 2000. Т. 32. С.
1082-1086.96. В.П. Толстой, Е.В. Молотилкина. Синтез методом ионного наслаивания наповерхности кремния и плавленого кварца нанослоев пероксида меди // Ж. неорг.химии. 1994. Т. 39. С. 388-391.97. Толстобров Е.В., Толстой В.П. Синтез методом ионного наслаивания наповерхности кремния нанослоев ZnO1+x // Ж. приклад. химии. 1995. Т. 68. С. 10181020.98. Mangesh A. Desai, Sartale S. D.