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1.at the service temperature(在环氧树脂的工作温度) 1. ultimately leading to asuperior(优秀的)flame retarding effect 2. A is a ongoing topics of research. 3. at elevated temperatures. 4. In some circumstances 5. this field has become quite promising 6. Taking in account these facts 7. The improved performance can also be ascribed to the 8. Graphene, first discovered in 2004 1, has attracted voluminous attention in the past decade. 9. To palliate this deficit(为了弥补这项空白) 10. and increasing mechanical interlocking between CFs and MPSR matrix 11. Meanwhile, the grafting processes did not result in any discernable (可辨别的,明显的)decrease in TS(拉伸强度). 12. Data from five measurements were averaged. 13. Cellulose nanowhiskers were not seen becauseof their small size in nanoscale 14. It was worth noting that the adhesive properties was mostly due to increases in displacement at failure on addition of NH2-rGO sheet 15. in this regard(就这一点而言) 16. For comparison purposes 17. The infiltration of PDMS does not introduce anydiscernable(可以辨 别的)deterioration or inhomogeneity to the structure of theRGO foams. 18. Electrical conductivity values are as expected . 19. when homogeneous dispersion and strong interfacial interactions are achieved. 20. Effective dispersion is the key requirement for maximizing the enhancement potential of graphene. 21. The electrochemical properties of porous SnO2 carbon yolkshell composites has been elaborated.(阐述) 22. Thus, relative contact angle of BT and BTSiO2were measured and the results are visualized(直观的) in Fig. 5. 23. Efforts are underway to improve the energy density. 24. To validate our argument(证实我们的观点) 25. Carboxylated MWCNTs(羧基化碳管 ) 26. but the high cost of the before mentioned electrodes(Since the aforementioned electrodes) 27. However, these electrode materials exhibited high corrosion in aqueous environment, which impeded(阻碍) the durability performances of the composite. 28. a significant portion of the graphene -electronic network is destroyed in the formation of GOs. 29. In the Raman spectra of GOs and SWNTs separately for reference and comparison. 30. Our preliminary experiments(初步的) 31.In order to get some hints (暗示 )on the electric conduction mechanism, 32. Fig. 9 shows the linear relation between the logarithm of the conductivity and the filler content for the larger volume fractions of pristine CNT. 33. All the results reported are the average values of 6 samples. 34. Functionalization of MWCNTs with acid treatment was assigned as COOH-MWCNTs. 35.We postulate that this improvement originates from two main reasons 36.The electrical conductivity was improved by a factor of 413 after chemical reduction. 37. Therefore, control over the conformation of graphene is an important research goal. 38. However, further study is necessary to clearly elucidate (阐释)the detailed scrolling mechanism. 39. the HTVSR may be a potential candidate due to its remarkable elasticity 40. On the other hand, GnPs in lower magnification, the morphology resembles with EG. 41. The GnP particle size has a pronounced effect on the mechanical properties and thermal conductivity of the epoxy composites. 42. Scale bar equals 100 nm. 43. Given in Table 1, the MWNT10%/PANI ratio of (aNe)/(eNHe) declined from 0.123 to 0.049 with respect to pure PANI. 44. The experimental results indicated that 45. The strength of interlayer hydrogen bonding will be attenuated(减弱) 46. This method facilitates graphene processing for a range of applications 47. This reduction process is believed to be analogous to the H+-catalyzed dehydration of alcohol, where water acts as a source of H+ for the protonation of hydroxyl groups 48. Besides the above features of each method, these solvothermal reduction methods have the common merit that all can produce a stable dispersion of rGO sheets, which is valuable for applications. 48. As a merit, this could avoid the use of dangerous reductants (e.g. hydrazine) and eliminate byproducts 49. Tens of parts of carbon black or silica are needed for gaining acceptable mechanical strength in the composite. 50. and the GO content was controlled to be 1, 3, 5, or 7 phr (parts per one hundred parts of gum). 51. Compared with SGO, the reinforcement effect of GO is not so prominent. 52. The result is also in good agreement with the TEM observation 53. study the thermal, electrical and flow properties of the resultant composites. 54. 0.43 g (2 mmol) 2-bromopropionyl bromide was added dropwise. 55. Firstly a desired quantity of GnPs was gradually added to the matrix. 56. To shed light on the underlying mechanism regarding the liquid behavior of the G-NIM. 62. MWCNTs with SSAs of 4070 m2 g1, 40100 m2 g1, 90120 m2 g1, and 150250 m2 g1 were labeled as MWCNT-1, MWCNT-2, MWCNT-3, and MWCNT-4, respectively. 63. SEM micrographs of the fracture surface of various silicone rubber/ MWCNTs.

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