[1] NOVOSELOV K S,FAL′KO V I,COLOMBO L,et al. A roadmap for grapheme[J].Nature,2012,490(7419):192-200. [2] JELMY E J,RAMAKRISHNAN S,RANGARAJAN M,et al.Effect of different carbon fillers and dopant acids on electrical properties of polyaniline nanocomposites[J].Bulletin of materials science,2013,36(1):37-44. [3] ACIK M,DARLING S B.Graphene in perovskite solar cells:Device design,characterization and implementation[J].Journal of materials chemistry A,2016,4(17):6185-6235. [4] KOSTARELOS K,NOVOSELOV K S.Exploring the interface of graphene and biology[J].Science,2014,344(6181):261-263. [5] ZHAO J,CAO X S,WANG Z Y,et al.Mechanistic understanding toward the toxicity of graphene-family materials to freshwater algae[J].Water research,2017,111:18-27. [6] GHODAKE G,SEO Y D,PARK D,et al.Phytotoxicity of carbon nanotubes assessed by brassica juncea and phaseolus mungo[J].Journal of nanoelectronics & optoelectronics,2010,5(5):157-160. [7] 朱小山,朱琳,郎宇鹏,等.富勒烯及其衍生物对斑马鱼胚胎发育毒性的比较[J].中国环境科学,2008,28(2):173-177. [8] LI B,YANG J,HUANG Q,et al.Biodistribution and pulmonary toxicity of intratracheally instilled graphene oxide in mice[J].Npg Asia Materials,2013,5(5):237-239. [9] PIKULA K S,ZAKHARENKO A M,CHAIKA V V,et al.Effects of carbon and silicon nanotubes and carbon nanofibers on marine microalgae,Heterosigma akashiwo[J].Environmental research,2018,166:473-480. [10] MUELLER N C,NOWACK B.Exposure modeling of engineered nanoparticles in the environment[J].Environmental science & technology,2008,42(12):4447-4453. [11] GOTTSCHALK F,SONDERER T,SCHOLZ R W,et al.Modeled environmental concentrations of engineered nanomaterials(TiO2,ZnO,Ag,CNT,fullerenes) for different regions[J].Environmental science & technology,2009,43(24):9216-9222. [12] SUN T Y,GOTTSCHALK F,HUNGERBÜHLER K,et al. Comprehensive probabilistic modelling of environmental emissions of engineered nanomaterials[J].Environmental pollution,2014, 185(4):69-76. [13] CARBONI A,HELMUS R,EMKE E,et al.Analysis of fullerenes in soils samples collected in The Netherlands[J].Environmental pollution,2016,219:47-55. [14] KOLOSNJAJ-TABI J,SZWARC H,MOUSSA F.Carbon nanotubes:Culprit or witness of air pollution?[J].Nanotoday,2017,15:11-14. [15] LIANG T B,YIN Q S,ZHANG Y L,et al.Effects of carbon nanoparticles application on the growth, physiological characteristics and nutrient accumulation in tobacco plants[J].Journal of food agriculture environment,2013,11(3):954-958. [16] PALAPARTHY V S,HEMEN K,SURYA S G,et al.Graphene oxide based soil moisture microsensor for in situ agriculture applications[J].Sensors and actuators B:chemical,2018,273:1660-1669. [17] SHAABAN M,VAN ZWIETEN L,BASHIR S,et al.A concise review of biochar application to agricultural soils to improve soil conditions and fight pollution[J].Journal of environmental management,2018,228(15):429-440. [18] XIONG T,YUAN X,WANG H,et al.Implication of graphene oxide in Cd-contaminated soil:A case study of bacterial communities[J].Journal of environmental management,2018,205:99-106. [19] WANG Y,WESTERHOFF P,HRISTOVSKi K D. Fate and biological effects of silver,titanium dioxide,and C60(fullerene) nanomaterials during simulated wastewater treatment processes[J].Journal of hazardous materials,2012,201-202:16-22. [20] CHEN M,ZHOU S,ZHU Y,et al.Toxicity of carbon nanomaterials to liants,animals and microbes:Recent progress from 2015-present[J].Chemosphere,2018,206:255-264. [21] NAVARRO D A,KOOKANA R S,MCLAUGHLIN M J,et al.Fate of radiolabeled C60 fullerenes in aged soils[J].Environmental pollution,2017,221:293-300. [22] BEGUM P,IKHTIARI R,FUGETSU B.Graphene phytotoxicity in the seedling stage of cabbage,tomato,red spinach,and lettuce[J].Carbon,2011,49(12):3907-3919. [23] BEGUM P,FUGETSU B.Induction of cell death by graphene in Arabidopsis thaliana,(Columbia ecotype) T87 cell suspensions[J].Journal of hazardous materials,2013,260(18):1032-1041. [24] GHODAKE G,SEO Y D,PARK D,et al.Phytotoxicity of carbon nanotubes assessed by Brassica juncea and Phaseolus mungo[J].Journal of nanoelectronics & optoelectronics,2010,5(5):157-160. [25] BEGUM P,FUGETSU B.Phytotoxicity of multi-walled carbon nanotubes on red spinach (Amaranthus tricolor L.) and the role of ascorbic acid as an antioxidant[J].Journal of hazardous materials,2012,243(4):212-222. [26] NOGUEIRA P F M,NAKABAYASHI D,ZUCOLOTTO V. The effects of graphene oxide on green algae Raphidocelis subcapitata[J].Aquatic toxicology,2015,166(8):29-35. [27] CHANG X P,SONG Z G,XU Y L,et al.Effects of carbon nanotubes on growth of wheat seedlings and Cd uptake[J].Chemosphere,2020,240:124931. [28] 袁刚强,龚继来,曾光明.单壁碳纳米管材料对水稻幼苗的毒性效应[J].环境科学学报,2015,35(12):4143-4149. [29] LAHIANI M H,CHEN J,IRIN F,et al.Interaction of carbon nanohorns with plants:Uptake and biological effects[J].Carbon,2015,81(1):607-619. [30] ZHANG P,ZHANG R,FANG X,et al.Toxic effects of graphene on the growth and nutritional levels of wheat (Triticum aestivum L.):Short-and long-term exposure studies[J].Journal of hazardous materials,2016,317:543-551. [31] OLESZCZUK P,JOSKO I,XING B.The toxicity to plants of the sewage sludges containing multiwalled carbon nanotubes[J].Journal of hazardous materials,2011,186(1):436-442. [32] WANG X P,HAN H,LIU X Q,et al.Multi-walled carbon nanotubes can enhance root elongation of wheat (Triticum aestivum) plants[J].Journal of nanoparticle research,2012,14(6):841. [33] MONDAL A,BASU R,DAS S,et al.Beneficial role of carbon nanotubes on mustard plant growth:An agricultural prospect[J].Journal of nanoparticle research,2011,13(10):4519-4528. [34] HATAMI M,HADIAN J,GHORBANPOUR M.Mechanisms underlying toxicity and stimulatory role of single-walled carbon nanotubes in Hyoscyamus niger during drought stress simulated by polyethylene glycol[J].Journal of hazardous materials,2017, 324:306-320. [35] 李佳慧. 碳纳米管处理对文心兰类原球茎增殖、分化和无菌苗生长的影响及相关机理研究[D].南京:南京农业大学,2015. [36] PARK S,AHN Y J.Multi-walled carbon nanotubes and silver nanoparticles differentially affect seed germination,chlorophyll content,and hydrogen peroxide accumulation in carrot (Daucus carota L.)[J].Biocatalysis and agricultural biotechnology,2016,8:257-262. [37] KHODAKOVSKAYA M V,DERVISHI E,MAHMOOD M,et al.Carbon nanotubes are able to penetrate plant seed coat and dramatically affect seed germination and plant growth[J].Acs Nano,2012,6(8):3221-3227. [38] XIONG J L,LI J,WANG H C,et al.Fullerol improves seed germination,biomass accumulation,photosynthesis and antioxidant system in Brassica napus L. under water stress[J].Plant Physiol Biochem,2018,129:130-140. [39] RAO D P,SRIVASTAVA A.Enhancement of seed germination and plant growth of wheat,maize,peanut and garlic using multiwalled carbon nanotubes[J].European chemical bulletin,2014,3(5):502-504. [40] 来佳佳. ROS参与新型碳纳米材料促进玉米根系伸长并提高抗旱性的探索研究[D].郑州:河南农业大学,2018. [41] TORREROCHE R D L,HAWTHORNE J,DENG Y,et al. Fullerene-enhanced accumulation of p,p′-DDE in agricultural crop species[J].Environmental science & technology,2012,46(17):9315-9323. [42] KOLE C,KOLE P,RANDUNU K M,et al.Nanobiotechnology can boost crop production and quality:First evidence from increased plant biomass, fruit yield and phytomedicine content in bitter melon (Momordica charantia)[J].BMC Biotechnology,2013,13(1):37. [43] HAO Y,MA C X,ZHANG Z T,et al.Carbon nanomaterials alter plant physiology and soil bacterial community composition in a rice-soil-bacterial ecosystem[J].Environmental pollution,2017,232:123-136. [44] KHODAKOVSKAYA M V,KIM B S,KIM J N,et al.Carbon nanotubes as plant growth regulators:Effects on tomato growth,reproductive system,and soil microbial community[J].Small,2013,9(1):115-123. [45] AKHAVAN O,GHADERI E.Toxicity of graphene and graphene oxide nanowalls against bacteria[J].Acs Nano,2010,4(10):5731-5736. [46] SINGH Z.Applications and toxicity of graphene family nanomaterials and their composites[J].Nanotechnology science & applications,2016,9(1):15-28. [47] NOGUEIRA P F M,NAKABAYASHI D,ZUCOLOTTO V. The effects of graphene oxide on green algae Raphidocelis subcapitata[J].Aquatic toxicology,2015,166(8):29-35. [48] ERSHOVA E S,SERGEEVA V A,CHAUSHEVA A I,et al.Toxic and DNA damaging effects of a functionalized fullerene in human embryonic lung fibroblasts[J].Mutation research-genetic toxicology and environmental mutagenesis,2016,805:46-57. [49] WANG F,YAO J,LIU H,et al.Cu and Cr enhanced the effect of various carbon nanotubes on microbial communities in an aquatic environment[J].Journal of hazardous materials,2015, 292:137-145. [50] 诸晓丹,唐子圣.氧化石墨烯抗菌作用及其生物安全性的研究进展[J].上海交通大学学报(医学版),2016,36(3):447-450. [51] 曹际玲,冯有智,林先贵.人工纳米材料对植物-微生物影响的研究进展[J].土壤学报,2016,53(1):1-11. [52] LIU Q,ZHANG X,ZHAO Y,et al.Fullerene-induced increase of glycosyl residue on living plant cell wall[J].Environmental science & technology,2013,47(13):7490-7498. [53] 李婷,张超智,沈丹,等.石墨烯和氧化石墨烯的生物体毒性研究进展[J].南京大学学报(自然科学版),2016,52(2):235-243. [54] LIANG J,XIA X,ZAMAN W Q,et al.Bioaccumulation and toxic effects of decabromodiphenyl ether in the presence of nanoscale zero-valent iron in an earthworm-soil system[J].Chemosphere,2017,169:78-88. [55] RONG H,WANG C R,YU X R,et al.Carboxylated multi-walled carbon nanotubes exacerbated oxidative damage in roots of Vicia faba L. seedlings under combined stress of lead and cadmium[J].Ecotoxicology & environmental safety,2018,161:616-623. [56] HU X,LU K,MU L,et al.Interactions between graphene oxide and plant cells:Regulation of cell morphology,uptake,organelle damage,oxidative effects and metabolic disorders[J].Carbon,2014,80(1):665-676. [57] 牟凤伟. 不同类型的碳纳米管对斜生栅藻的毒性效应研究[D].长沙:中南林业科技大学,2013. [58] KHODAKOVSKAYA M V,DE SILVA K,BIRIS A S,et al.Carbon nanotubes induce growth enhancement of tobacco cells[J].ACS Nano,2012,6(3):2128-2135. [59] 胡献刚,康佳,卢凯成,等.氧化石墨烯联合砷对小麦生态毒性[J].中国药理学与毒理学杂志,2013,27(S1):63. |