Page 223 - 《精细化工》2021年第12期
P. 223
第 12 期 温玉鑫,等: 重氮化直接灰 D 共价改性石墨烯的水分散性及其用于织物的抗辐射整理 ·2585·
mobility in suspended graphene[J]. Solid State Communications, fabric achieved via layer-by-layer self-assembly by consecutive
2008, 146(9/10): 351-355. adsorption of graphene doped PEDOT: PSS and chitosan[J]. Carbon,
[4] STOLLER M D, PARK S, ZHU Y, et al. Graphene-based 2016, 96: 1166-1174.
ultracapacitors[J]. Nano Letters, 2008, 8(10): 3498-3502. [15] UPADHYAY R K, DUBEY A, WAGHMARE P, et al. Multifunctional
[5] HE P, SUN J, TIAN S Y, et al. Processable aqueous dispersions of reduced graphene oxide coated cloths for oil/water separation and
graphene stabilized by graphene quantum dots[J]. Chemistry of antibacterial application[J]. RSC Advances, 2016, 6: 62760-62767.
Materials, 2015, 27(1): 218-226. [16] ZHOU F Q (周福芹), ZHANG Z B (张志斌), YANG H F (杨海
[6] MA J K, WANG X R, LIU Y, et al. Reduction of graphene oxide with 峰). Preparation of graphene modified cotton fabric and its UV and
L-lysine to prepare reduced graphene oxide stabilized with antibacterial properties[J]. Textile Auxliaries (印染助剂), 2019,
polysaccharide polyelectrolyte[J]. Journal of Materials Chemistry A, 36(11): 16-19.
2013, 1(6): 2192-2201. [17] GOLPARVAR A J, YAPICI M K. Toward graphene textiles in
[7] LIN J X (林菊香) DONG J (董菁), CHEN D Q (陈丹青), et al. wearable eye tracking systems for human-machine interaction[J].
Synthesis of hydrophilic sulfonated graphene based on diazonium Beilstein Journal of Nanotechnology, 2021, 12(1): 180-189.
salt of 4-aminobenzenesulfonic acid functionalized graphene[J]. [18] XU Z, GAO C. Graphene chiral liquid crystals and macroscopic
Scientia Sinica Chimica(中国科学: 化学), 2016, 46(8): 791-799. assembled fibres[J]. Nat Commun, 2011, 2: 571-579.
[8] WANG A J, YU W, HUANG Z P, et al. Covalent functionalization of [19] FANG J (方婧), GAO X H (高晓红), CAI X B (蔡小斌), et al.
reduced graphene oxide with porphyrin by means of diazonium Preparation and properties of reduced graphene oxide/wool composite
chemistry for nonlinear optical performance[J]. Scientific Reports, material[J]. China Dyeing & Finishing (印染), 2020, 46(12): 37-40.
2016, 6(1): 1-12. [20] KASPRZAK A, ZUCHOWSKA A, POPLAWSKA M. Functionalization
[9] ZENG Y (曾尤), WANG H (王函), CHENG H M (成会明). of graphene: Does the organic chemistry matter[J]. Beilstein Journal
Research progress and potential applications for graphene/polymer of Organic Chemistry, 2018, 14(1): 2018-2026.
composites[J]. New Carbon Materials (新型炭材料), 2016, 31(6): [21] SUN Z Z, KOHAMA S, ZHANG Z X, et al. Soluble graphene
555-567. through edge-selective functionalization[J]. Nano Research, 2010,
[10] CHEN Z L (陈震雷), DONG Y C (董永春), WANG P (王鹏), et al. 3(2): 117-125.
Preparation of nano-TiO 2/SiO 2-loaded cotton fabrics and its photocatalytic [22] RAMESH K, SIBORO S A P, KIM D W, et al. Ultrasound-
performance for dyes degradation[J]. Materials Review (材料导报), accelerated covalent-functionalization of reduced graphene oxide
2016, 30(14): 34-38. with imidazolium-based poly (ionic liquid)s by Diels-Alder click
[11] CAO J L, WANG C X. Multifunctional surface modification of silk reaction for supercapacitors[J]. Reactive and Functional Polymers,
fabric via graphene oxide repeatedly coating and chemical reduction 2020, 152: 104605.
method[J]. Applied Surface Science, 2017, 405: 380-388. [23] YU D S, KUILA T, KIM N H, et al. Effects of covalent surface
[12] CHEN J J, GAO X H. Thermal and electrical anisotropy of polymer modifications on the electrical and electrochemical properties of
matrix composite materials reinforced with graphene nanoplatelets graphene using sodium 4-aminoazobenzene-4′-sulfonate[J]. Carbon,
and aluminum-based particles[J]. Diamond and Related Materials, 2013, 54: 310-322.
2019, 100: 107571. [24] CHENG Z W (承志伟), SHEN J Q (沈建清). Research on fabric's
[13] YAGHOUBIDOUST F, SALIMI E. A simple method for the conductivity and electromagnetic wave shielding performance[J].
preparation of antibacterial cotton fabrics by coating graphene oxide Jiangsu Textile (江苏纺织), 2007, 5: 54-56.
nanosheets[J]. Fibers and Polymers, 2019, 20(6): 1155-1160. [25] CHUNG D D L. Materials for electromagnetic interference shielding[J].
[14] TIAN M W, HU X L, QU L Q, et al. Versatile and ductile cotton Materials Chemistry and Physics, 2020, 255: 123587.
2+
(上接第 2572 页) functionalized Al-magadiite for Hg adsorption[J]. Inorganic Chemicals
[14] GAO X (高翔), XIE S B (谢水波), LIU Y J (刘迎久), et al. Industry (无机盐工业), 2020, 52(8): 40-45.
Experimental investigation on adsorption of U(Ⅵ) by chitosan- [21] SUN J, CHEN Z M, GE M Y, et al. Selective adsorption of Hg(Ⅱ)
biochar composite[J]. Atomic Energy Science and Technology (原子 by radiation synthesized silica-graft-vinyl imidazole adsorbent[J].
能科学技术), 2019, 53(8): 1350-1358. Journal of Hazardous Materials, 2013, 244/245: 94-101.
[15] LEI Z J (雷增江), YANG B (杨斌), YANG J H (杨金辉), et al. [22] BELGACEM A, REBIAI R, HADOUN H, et al. The removal of
Adsorption performance and mechanism of Cr(Ⅵ) by aluminum uranium(Ⅵ) from aqueous solutions onto activated carbon developed
sludge composite gel spheres[J]. Fine Chemicals (精细化工), 2021, from grinded used tire[J]. Environmental Science and Pollution
38(7): 1450-1458. Research, 2014, 21(1): 684-694.
[16] MO G H (莫官海), XIE S B (谢水波), ZENG T T (曾涛涛), et al. [23] JIN J, LI S W, PENG X Q, et al. HNO 3 modified biochars for
The efficiency and mechanism of U( Ⅵ ) removal from acidic uranium(Ⅵ) removal from aqueous solution[J]. Bioresource Technology,
wastewater by sewage sludge-derived biochar[J]. CIESC Journal (化 2018, 256: 247-253.
工学报), 2020, 71(5): 2352-2362. [24] ZHANG C L (张晨璐), LENG R (冷然), ZHANG Y H (张一阚), et al.
[17] ZHANG W, ZHANG S L, WANG J, et al. Hybrid functionalized Interaction of U( Ⅵ ) with MnAl and MnFeAl layered double
chitosan-Al 2O 3@SiO 2 composite for enhanced Cr(Ⅵ) adsorption[J]. hydroxides: Batch and spectroscopy study[J]. Scientia Sinica
Chemosphere, 2018, 203: 188-198 Chimica (中国科学: 化学), 2019, 49(1): 133-144.
[18] HU H, ZHANG X, WANG T, et al. Bamboo (acidosasa longiligula) [25] SHI H Z (施华珍), LIU K (刘坤), TANG R (汤睿), et al. Organically
shoot shell biochar: Its potential application to isolation of uranium modification of magnetic alkaline Ca-bentonite and its adsorption for
(Ⅵ) from aqueous solution[J]. Journal of Radioanalytical and Nuclear Cu(Ⅱ) and Mn(Ⅱ)[J]. Chemical Industry and Engineering Progress
Chemistry, 2018, 11: 11-14. (化工进展), 2018, 37(11): 4509-4521.
[19] SALEHA A S, LEEA J Y. Uranium (Ⅵ) sorption complexes on silica [26] XIAO Y (肖昱), GUO Y (郭宇), WU H M (吴红梅), et al.
in the presence of calcium and carbonate[J]. Journal of Environmental Adsorption of chromium( Ⅲ ) ions with amino functionalized
Radioactivity, 2018,182: 63-69. mesoporous silica adsorbent[J]. Chemical Industry and Engineering
[20] TANG Q Y (汤钦元), AN Y(安燕), SUN Q(孙琦), et al. Amino- Progress (化工进展), 2020, 39(1): 257-266.