Page 96 - 《精细化工》2023年第3期
P. 96
·552· 精细化工 FINE CHEMICALS 第 40 卷
6761-6770. mesoporous, and multifunctional carbon aerogel by a dual-activation
[54] ZHOU X H, YIN L, YANG B S, et al. Programmable local strategy from cellulose[J]. ACS Sustainable Chemistry & Engineering,
orientation of micropores by mold-assisted ice templating[J]. Small 2020, 8(30): 11114-11122.
Methods, 2021, 5(2): 2000963. [67] SHI C, HU L, GUO K, et al. Highly porous carbon with graphene
[55] BO H (柏浩). Preparation of nacre-mimetic structural composites by nanoplatelet microstructure derived from biomass waste for high-
ice template method[C]//National Symposium on Polymer Materials performance supercapacitors in universal electrolyte[J]. Advanced
Science and Engineering (全国高分子材料科学与工程研讨会), Sustainable Systems, 2017, 1(1/2): 1600011.
2016: 478. [68] LIAO S C, ZHAI T L, XIA H S. Highly adsorptive graphene aerogel
[56] ZHAO N F, LI M, GONG H X, et al. Controlling ice formation on microspheres with center-diverging microchannel structures[J].
gradient wettability surface for high-performance bioinspired Journal of Materials Chemistry A, 2016, 4(3): 1068-1077.
materials[J]. Science Advances, 2020, 6(31): eabb4712. [69] YU R M, SHI Y Z, YANG D Z, et al. Graphene oxide/chitosan
[57] BAI H, CHEN Y, DELATTRE B, et al. Bioinspired large-scale aerogel microspheres with honeycomb cobweb and radially oriented
aligned porous materials assembled with dual temperature microchannel structures for broad spectrum and rapid adsorption of
gradients[J]. Science Advances, 2015, 1(11): e1500849. water contaminants[J]. ACS Applied Materials & Interfaces, 2017,
[58] YEON J S, GUPTA N, BHATTACHARYA P, et al. A new era of 9(26): 21809-21819.
integrative ice frozen assembly into multiscale architecturing of energy [70] HE M, FEI G X, ZHENG Z, et al. Pt nanoparticle-loaded graphene
materials[J]. Advanced Functional Materials, 2022, 32(19): 2112509. aerogel microspheres with excellent methanol electro-oxidation
[59] GAO H L (高怀岭), YU S H (俞书宏). Macroscopic three performance[J]. Langmuir, 2019, 35(10): 3694-3700.
dimensional architectures assembled from low dimensional [71] GUO Q F, AMENDOLA E, LAVORGNA M, et al. Robust and
nano-building blocks by ice templating[C]//The 29th Annual recyclable graphene/chitosan composite aerogel microspheres for
Conference of Chinese Chemical Society (中国化学会第 29 届学术 adsorption of oil pollutants from water[J]. Carbohydrate Polymers,
年会), 2014: 162. 2022, 290: 119416.
[60] MA C Y (马春彦), WANG J (王军), BAI J W (白军伟), et al. [72] SHUAI Y J (帅亚俊). Construction of micro/nano topographical
Preparation and dynamic mechanical properties of boron carbide and silk-based scaffolds for bone repair[D].Hangzhou: Zhejiang
organosilicon two-dimensional laminated composites[J]. Acta University (浙江大学), 2017.
Materiae Compositae Sinica (复合材料学报), 2022, 39(3): 1091-1101. [73] CUI Y, GONG H X, WANG Y J, et al. A thermally insulating textile
[61] NAKHANIVEJ P, PARK S K, SHIN K H, et al. Hierarchically inspired by polar bear hair[J]. Advanced Materials, 2018, 30(14):
structured vanadium pentoxide/reduced graphene oxide composite 1706807.
microballs for lithium ion battery cathodes[J]. Journal of Power [74] ZHANG W H, YIN M J, ZHAO Q, et al. Graphene oxide membranes
Sources, 2019, 436: 226854. with stable porous structure for ultrafast water transport[J]. Nature
[62] XU Z, ZHANG Y, LI P, et al. Strong, conductive, lightweight, neat Nanotechnology, 2021, 16(3): 337-343.
graphene aerogel fibers with aligned pores[J]. ACS Nano, 2012, 6(8): [75] ZHANG P P, LI J, LV L X, et al. Vertically aligned graphene sheets
7103-7113. membrane for highly efficient solar thermal generation of clean
[63] LI J, CHEN D, WU Q, et al. FeOOH nanorod arrays aligned on water[J]. ACS Nano, 2017, 11(5): 5087-5093.
eggplant derived super long carbon tube networks as negative [76] YANG J K (杨建奎). Research on preparation of ordered layered
electrodes for supercapacitors[J]. New Journal of Chemistry, 2018, porous graphene based on ice template method and its sensing
42(6): 4513-4519. application[D]. Hangzhou: Zhejiang University of Technology (浙江工
[64] LIU Q, JING S, WANG S, et al. Flexible nanocomposites with 业大学), 2020.
ultrahigh specific areal capacitance and tunable properties based on a [77] QI C, JIANG F, YANG S. Advanced honeycomb designs for
cellulose derived nanofiber-carbon sheet framework coated with improving mechanical properties: A review[J]. Composites Part B:
polyaniline[J]. Journal of Materials Chemistry A, 2016, 4(34): Engineering, 2021, 227: 109393.
13352-13362. [78] ZHANG Y J, CREMER P S. Interactions between macromolecules
[65] JIANG S, ITHISUPHALAP K, ZENG X, et al. 3D porous cellular and ions: The Hofmeister series[J]. Current Opinion in Chemical
NiCoO 2/graphene network as a durable bifunctional electrocatalyst Biology, 2006, 10(6): 658-663.
for oxygen evolution and reduction reactions[J]. Journal of Power [79] HUA M T, WU S W, MA Y F, et al. Strong tough hydrogels via the
Sources, 2018, 399: 66-75. synergy of freeze-casting and salting out[J]. Nature, 2021, 590(7847):
[66] SUN J, HUANG J, LEI E, et al. Wood-inspired compressible, 594-599.