52
3 Synthesis of One-Dimensional Nanomaterials
Pachfule P, Shinde D, Majumder M, Xu Q (2016) Fabrication of carbon nanorods and graphene
nanoribbons from a metal–organic framework. Nat Chem 8(7):718–724
Pang M, Cairns AJ, Liu Y, Belmabkhout Y, Zeng HC, Eddaoudi M (2013) Synthesis and integration
of Fe-soc-MOF cubes into colloidosomes via a single-step emulsion-based approach. J Am Chem
Soc 135(28):10234–10237
Pang X, He Y, Jung J, Lin Z (2016) 1D nanocrystals with precisely controlled dimensions,
compositions, and architectures. Science 353(6305):1268
Paracchino A, Laporte V, Sivula K, Grätzel M, Thimsen E (2011) Highly active oxide photocathode
for photoelectrochemical water reduction. Nat Mater 10(6):456
Park J, Joo J, Kwon SG, Jang Y, Hyeon T (2010) Synthesis of monodisperse spherical nanocrystals.
Angew Chem Int Ed Engl 46(25):4630–4660
Ren W, Zheng Z, Luo Y, Chen W, Niu C, Zhao K, Yan M, Zhang L, Meng J, Mai L (2015)
An electrospun hierarchical LiV 3 O 8 nanowire-in-network for high-rate and long-life lithium
batteries. J Mater Chem A 3(39):19850–19856
Ricky JT, Chunglin T, Liping M, Jianyong O, Cengiz SO, Yang Y (2006) Digital memory device
based on tobacco mosaic virus conjugated with nanoparticles. Nat Nanotechnol 1(1):72–77
Sauvage F, Bodenez V, Tarascon JM, Poeppelmeier KR (2010) Room-temperature synthesis leading
to nanocrystalline Ag (2) V (4) O (11) . J Am Chem Soc 132(19):6778–6782
Shaoyan Z, Weiyang L, Chunsheng L, Jun C (2010) Synthesis, characterization, and electrochemical
properties of Ag 2 V 4 O 11 and AgVO 3 1-D nano/microstructures. ChemInform 38(18):24855–
24863
Shim HW, Jin YH, Seo SD, Lee SH, Kim DW (2011) Highly reversible lithium storage in Bacillus
subtilis-directed porous Co 3 O 4 nanostructures. ACS Nano 5(1):443
Shi J, Li Z, Kvit A, Krylyuk S, Davydov AV, Wang X (2013) Electron microscopy observation of
TiO 2 nanocrystal evolution in high-temperature atomic layer deposition. Nano Lett 13(11):5727–
5734
Tan Y, Xue X, Peng Q, Zhao H, Wang T, Li Y (2007) Controllable fabrication and electrical
performance of single crystalline Cu2O nanowires with high aspect ratios. Nano Lett 7(12):3723–
3728
Wang X, Li Y (2002) Selected-control hydrothermal synthesis of alpha- and beta-MnO (2) single
crystal nanowires. J Am Chem Soc 124(12):2880–2881
Wang J, Neaton JB, Zheng H, Nagarajan V, Ogale SB, Liu B, Viehland D, Vaithyanathan V, Schlom
DG, Waghmare UV, Spaldin NA, Rabe KM, Wuttig M, Ramesh R (2003) Epitaxial BiFeO3
multiferroic thin film heterostructures. Science 299(5613):1719–1722
Weiner S, Sagi I, Addadi L (2005) Choosing the crystallization path less traveled. Science
309(5737):1027–1028
Wu F, Myung Y, Banerjee P (2014) Rayleigh instability driven nodular Cu 2 O nanowires via
carbothermal reduction of CuO nanowires. Cryst Growth Des 15(4):1588–1595
Wu R, Wang DP, Rui X, Liu B, Zhou K, Law AW, Yan Q, Wei J, Chen Z (2015) In-situ formation of
hollow hybrids composed of cobalt sulfides embedded within porous carbon polyhedra/carbon
nanotubes for high-performance lithium-ion batteries. Adv Mater 27(19):3038–3044
Xu G, Ren Z, Du P, Weng W, Shen G, Han G (2005) Polymer-assisted hydrothermal synthesis of
single-crystalline tetragonal perovskite PbZr 0.52 Ti 0.48 O 3 nanowires. Adv Mater 17(7):907–910
Xu X, Zhang Z, Xun W (2015) Well-defined metal-organic-framework hollow nanostructures for
catalytic reactions involving gases. Adv Mater 27(36):5365–5371
Yan W, Kim JY, Xing W, Donavan KC, Ayvazian T, Penner RM (2012) Lithographically patterned
gold/manganese dioxide core/shell nanowires for high capacity, high rate, and high cyclability
hybrid electrical energy storage. Chem Mater 24(12):2382–2390
Yan W, Thai ML, Dutta R, Li X, Xing W, Penner RM (2014) A lithographically patterned capacitor
with horizontal nanowires of length 2.5 mm. Acs Appl Mater Interfaces 6(7):5018–5025
Yang J, Zhang F, Lu H, Hong X, Jiang H, Wu Y, Li Y (2015) Hollow Zn/Co ZIF particles derived
from core-shell ZIF-67@ZIF-8 as selective catalyst for the semi-hydrogenation of acetylene.
Angew Chem Int Ed Engl 127(37):11039–11043
3 Synthesis of One-Dimensional Nanomaterials
Pachfule P, Shinde D, Majumder M, Xu Q (2016) Fabrication of carbon nanorods and graphene
nanoribbons from a metal–organic framework. Nat Chem 8(7):718–724
Pang M, Cairns AJ, Liu Y, Belmabkhout Y, Zeng HC, Eddaoudi M (2013) Synthesis and integration
of Fe-soc-MOF cubes into colloidosomes via a single-step emulsion-based approach. J Am Chem
Soc 135(28):10234–10237
Pang X, He Y, Jung J, Lin Z (2016) 1D nanocrystals with precisely controlled dimensions,
compositions, and architectures. Science 353(6305):1268
Paracchino A, Laporte V, Sivula K, Grätzel M, Thimsen E (2011) Highly active oxide photocathode
for photoelectrochemical water reduction. Nat Mater 10(6):456
Park J, Joo J, Kwon SG, Jang Y, Hyeon T (2010) Synthesis of monodisperse spherical nanocrystals.
Angew Chem Int Ed Engl 46(25):4630–4660
Ren W, Zheng Z, Luo Y, Chen W, Niu C, Zhao K, Yan M, Zhang L, Meng J, Mai L (2015)
An electrospun hierarchical LiV 3 O 8 nanowire-in-network for high-rate and long-life lithium
batteries. J Mater Chem A 3(39):19850–19856
Ricky JT, Chunglin T, Liping M, Jianyong O, Cengiz SO, Yang Y (2006) Digital memory device
based on tobacco mosaic virus conjugated with nanoparticles. Nat Nanotechnol 1(1):72–77
Sauvage F, Bodenez V, Tarascon JM, Poeppelmeier KR (2010) Room-temperature synthesis leading
to nanocrystalline Ag (2) V (4) O (11) . J Am Chem Soc 132(19):6778–6782
Shaoyan Z, Weiyang L, Chunsheng L, Jun C (2010) Synthesis, characterization, and electrochemical
properties of Ag 2 V 4 O 11 and AgVO 3 1-D nano/microstructures. ChemInform 38(18):24855–
24863
Shim HW, Jin YH, Seo SD, Lee SH, Kim DW (2011) Highly reversible lithium storage in Bacillus
subtilis-directed porous Co 3 O 4 nanostructures. ACS Nano 5(1):443
Shi J, Li Z, Kvit A, Krylyuk S, Davydov AV, Wang X (2013) Electron microscopy observation of
TiO 2 nanocrystal evolution in high-temperature atomic layer deposition. Nano Lett 13(11):5727–
5734
Tan Y, Xue X, Peng Q, Zhao H, Wang T, Li Y (2007) Controllable fabrication and electrical
performance of single crystalline Cu2O nanowires with high aspect ratios. Nano Lett 7(12):3723–
3728
Wang X, Li Y (2002) Selected-control hydrothermal synthesis of alpha- and beta-MnO (2) single
crystal nanowires. J Am Chem Soc 124(12):2880–2881
Wang J, Neaton JB, Zheng H, Nagarajan V, Ogale SB, Liu B, Viehland D, Vaithyanathan V, Schlom
DG, Waghmare UV, Spaldin NA, Rabe KM, Wuttig M, Ramesh R (2003) Epitaxial BiFeO3
multiferroic thin film heterostructures. Science 299(5613):1719–1722
Weiner S, Sagi I, Addadi L (2005) Choosing the crystallization path less traveled. Science
309(5737):1027–1028
Wu F, Myung Y, Banerjee P (2014) Rayleigh instability driven nodular Cu 2 O nanowires via
carbothermal reduction of CuO nanowires. Cryst Growth Des 15(4):1588–1595
Wu R, Wang DP, Rui X, Liu B, Zhou K, Law AW, Yan Q, Wei J, Chen Z (2015) In-situ formation of
hollow hybrids composed of cobalt sulfides embedded within porous carbon polyhedra/carbon
nanotubes for high-performance lithium-ion batteries. Adv Mater 27(19):3038–3044
Xu G, Ren Z, Du P, Weng W, Shen G, Han G (2005) Polymer-assisted hydrothermal synthesis of
single-crystalline tetragonal perovskite PbZr 0.52 Ti 0.48 O 3 nanowires. Adv Mater 17(7):907–910
Xu X, Zhang Z, Xun W (2015) Well-defined metal-organic-framework hollow nanostructures for
catalytic reactions involving gases. Adv Mater 27(36):5365–5371
Yan W, Kim JY, Xing W, Donavan KC, Ayvazian T, Penner RM (2012) Lithographically patterned
gold/manganese dioxide core/shell nanowires for high capacity, high rate, and high cyclability
hybrid electrical energy storage. Chem Mater 24(12):2382–2390
Yan W, Thai ML, Dutta R, Li X, Xing W, Penner RM (2014) A lithographically patterned capacitor
with horizontal nanowires of length 2.5 mm. Acs Appl Mater Interfaces 6(7):5018–5025
Yang J, Zhang F, Lu H, Hong X, Jiang H, Wu Y, Li Y (2015) Hollow Zn/Co ZIF particles derived
from core-shell ZIF-67@ZIF-8 as selective catalyst for the semi-hydrogenation of acetylene.
Angew Chem Int Ed Engl 127(37):11039–11043
