104
5 Synthesis of Three-Dimensional Nanomaterials
Lim E, Jo C, Kim H, Kim MH, Mun Y, Chun J et al (2015b) Facile synthesis of Nb 2 O 5 @Carbon
core-shell nanocrystals with controlled crystalline structure for high-power anodes in hybrid
supercapacitors. ACS Nano 9:7497–7505
Ma F-X, Yu L, Xu C-Y, Lou XW (David) (2016) Self-supported formation of hierarchical NiCo 2 O 4
tetragonal microtubes with enhanced electrochemical properties. Energy Environ Sci 9:862–866
Ma J, Wu Y, Zuo J, Jiang C, Khan DF, Zhang H, Zhu J (2017) Effects of temperature on the capacitive
performance of Ti/40%RuO 2 -60%ZrO 2 electrodes prepared by thermal decomposition method.
J Electroanal Chem 789:133–139
Meng F, Fang Z, Li Z, Xu W, Wang M, Liu Y et al (2013) Porous Co 3 O 4 materials prepared by
solid-state thermolysis of a novel Co-MOF crystal and their superior energy storage performances
for supercapacitors. J Mater Chem A 1:7235
Mishra RK, Baek GW, Kim K, Kwon HI, Jin SH (2017) One-step solvothermal synthesis of carnation
flower-like SnS 2 as superior electrodes for supercapacitor applications. Appl Surf Sci 425:923–
931
Ngo Y-LT, Sui L, Ahn W, Chung JS, Hur SH (2017) NiMn 2 O 4 spinel binary nanostructure
decorated on three-dimensional reduced graphene oxide hydrogel for bifunctional materials in
non-enzymatic glucose sensor. Nanoscale 9:19318–19327
Pang H, Yan Z, Wang W, Chen J, Zhang J, Zheng H (2012) Facile fabrication of
NH 4 CoPO 4 ·H 2 O nano/microstructures and their primarily application as electrochemical supercapacitor. Nanoscale 4:5946
Ramadoss A, Yoon KY, Kwak MJ, Kim SI, Ryu ST, Jang JH (2017) Fully flexible, lightweight, high
performance all-solid-state supercapacitor based on 3-Dimensional-graphene/graphite-paper. J
Power Sources 337:159–165
Rengaraj A, Haldorai Y, Kwak CH, Ahn S, Jeon K-J, Park SH, Han Y-K, Huh YS (2015) Electrodeposition of flower-like nickel oxide on CVD-grown graphene to develop an electrochemical
non-enzymatic biosensor. J Mater Chem B 3:6301–6309
Sasikala SP, Poulin P, Aymonier C (2017) Advances in subcritical hydro-/solvothermal processing
of graphene materials. Adv Mater. https://doi.org/10.1002/adma.201605473
She Z, Ghosh D, Pope MA (2017) Decorating graphene oxide with ionic liquid nanodroplets: an
approach leading to energy-dense, high-voltage supercapacitors. ACS Nano 11:10077–10087
Tian G, Liu L, Meng Q, Cao B (2015) Facile synthesis of laminated graphene for advanced
supercapacitor electrode material via simultaneous reduction and N-doping. J Power Sources
274:851–861
Wang W, Guo S, Penchev M, Ruiz I, Bozhilov KN, Yan D, Ozkan M, Ozkan CS (2013a)
Three dimensional few layer graphene and carbon nanotube foam architectures for high fidelity
supercapacitors. Nano Energy 2:294–303
Wang L, Ji H, Wang S, Kong L, Jiang X, Yang G (2013b) Preparation of Fe 3 O 4 with high specific
surface area and improved capacitance as a supercapacitor. Nanoscale 5:3793
Wang S, Liu R, Han C, Wang J, Li M, Yao J, Li H, Wang Y (2014) A novel strategy to synthesize
hierarchical, porous carbohydrate-derived carbon with tunable properties. Nanoscale 6:13510–
13517
Wang J, Feng S, Song Y, Li W, Gao W, Elzatahry AA, Aldhayan D, Xia Y, Zhao D (2015)
Synthesis of hierarchically porous carbon spheres with yolk-shell structure for high performance
supercapacitors. Catal Today 243:199–208
Wang J, Zhang X, Wei Q, Lv H, Tian Y, Tong Z et al (2016) 3D self-supported nanopine forestlike Co 3 O 4 @CoMoO 4 core-shell architectures for high-energy solid state supercapacitors. Nano
Energy 19:222–233
Wang J, Ran R, Sunarso J, Yin C, Zou H, Feng Y, Li X, Zheng X, Yao J (2017a) Nanocelluloseassisted low-temperature synthesis and supercapacitor performance of reduced graphene oxide
aerogels. J Power Sources 347:259–269
Wang N, Zhao P, Liang K, Yao M, Yang Y, Hu W (2017b) CVD-grown polypyrrole nanofilms
on highly mesoporous structure MnO 2 for high performance asymmetric supercapacitors. Chem
Eng J 307:105–112
5 Synthesis of Three-Dimensional Nanomaterials
Lim E, Jo C, Kim H, Kim MH, Mun Y, Chun J et al (2015b) Facile synthesis of Nb 2 O 5 @Carbon
core-shell nanocrystals with controlled crystalline structure for high-power anodes in hybrid
supercapacitors. ACS Nano 9:7497–7505
Ma F-X, Yu L, Xu C-Y, Lou XW (David) (2016) Self-supported formation of hierarchical NiCo 2 O 4
tetragonal microtubes with enhanced electrochemical properties. Energy Environ Sci 9:862–866
Ma J, Wu Y, Zuo J, Jiang C, Khan DF, Zhang H, Zhu J (2017) Effects of temperature on the capacitive
performance of Ti/40%RuO 2 -60%ZrO 2 electrodes prepared by thermal decomposition method.
J Electroanal Chem 789:133–139
Meng F, Fang Z, Li Z, Xu W, Wang M, Liu Y et al (2013) Porous Co 3 O 4 materials prepared by
solid-state thermolysis of a novel Co-MOF crystal and their superior energy storage performances
for supercapacitors. J Mater Chem A 1:7235
Mishra RK, Baek GW, Kim K, Kwon HI, Jin SH (2017) One-step solvothermal synthesis of carnation
flower-like SnS 2 as superior electrodes for supercapacitor applications. Appl Surf Sci 425:923–
931
Ngo Y-LT, Sui L, Ahn W, Chung JS, Hur SH (2017) NiMn 2 O 4 spinel binary nanostructure
decorated on three-dimensional reduced graphene oxide hydrogel for bifunctional materials in
non-enzymatic glucose sensor. Nanoscale 9:19318–19327
Pang H, Yan Z, Wang W, Chen J, Zhang J, Zheng H (2012) Facile fabrication of
NH 4 CoPO 4 ·H 2 O nano/microstructures and their primarily application as electrochemical supercapacitor. Nanoscale 4:5946
Ramadoss A, Yoon KY, Kwak MJ, Kim SI, Ryu ST, Jang JH (2017) Fully flexible, lightweight, high
performance all-solid-state supercapacitor based on 3-Dimensional-graphene/graphite-paper. J
Power Sources 337:159–165
Rengaraj A, Haldorai Y, Kwak CH, Ahn S, Jeon K-J, Park SH, Han Y-K, Huh YS (2015) Electrodeposition of flower-like nickel oxide on CVD-grown graphene to develop an electrochemical
non-enzymatic biosensor. J Mater Chem B 3:6301–6309
Sasikala SP, Poulin P, Aymonier C (2017) Advances in subcritical hydro-/solvothermal processing
of graphene materials. Adv Mater. https://doi.org/10.1002/adma.201605473
She Z, Ghosh D, Pope MA (2017) Decorating graphene oxide with ionic liquid nanodroplets: an
approach leading to energy-dense, high-voltage supercapacitors. ACS Nano 11:10077–10087
Tian G, Liu L, Meng Q, Cao B (2015) Facile synthesis of laminated graphene for advanced
supercapacitor electrode material via simultaneous reduction and N-doping. J Power Sources
274:851–861
Wang W, Guo S, Penchev M, Ruiz I, Bozhilov KN, Yan D, Ozkan M, Ozkan CS (2013a)
Three dimensional few layer graphene and carbon nanotube foam architectures for high fidelity
supercapacitors. Nano Energy 2:294–303
Wang L, Ji H, Wang S, Kong L, Jiang X, Yang G (2013b) Preparation of Fe 3 O 4 with high specific
surface area and improved capacitance as a supercapacitor. Nanoscale 5:3793
Wang S, Liu R, Han C, Wang J, Li M, Yao J, Li H, Wang Y (2014) A novel strategy to synthesize
hierarchical, porous carbohydrate-derived carbon with tunable properties. Nanoscale 6:13510–
13517
Wang J, Feng S, Song Y, Li W, Gao W, Elzatahry AA, Aldhayan D, Xia Y, Zhao D (2015)
Synthesis of hierarchically porous carbon spheres with yolk-shell structure for high performance
supercapacitors. Catal Today 243:199–208
Wang J, Zhang X, Wei Q, Lv H, Tian Y, Tong Z et al (2016) 3D self-supported nanopine forestlike Co 3 O 4 @CoMoO 4 core-shell architectures for high-energy solid state supercapacitors. Nano
Energy 19:222–233
Wang J, Ran R, Sunarso J, Yin C, Zou H, Feng Y, Li X, Zheng X, Yao J (2017a) Nanocelluloseassisted low-temperature synthesis and supercapacitor performance of reduced graphene oxide
aerogels. J Power Sources 347:259–269
Wang N, Zhao P, Liang K, Yao M, Yang Y, Hu W (2017b) CVD-grown polypyrrole nanofilms
on highly mesoporous structure MnO 2 for high performance asymmetric supercapacitors. Chem
Eng J 307:105–112
