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合作作者[TOP 5]

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  总访问量
 532

  访问来源
    内部: 0
    外部: 532
    国内: 344
    国外: 188

  年访问量
 68

  访问来源
    内部: 0
    外部: 68
    国内: 48
    国外: 20

  月访问量
 6

  访问来源
    内部: 0
    外部: 6
    国内: 2
    国外: 4

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访问量

1. Amorphous Structure of Diboron Trioxide and Sodium Pentaborate Hyd.. [688]
2. Polyborates in aqueous borate solution: A Raman and DFT theoryinve.. [676]
3. Structure of aqueous sodium metaborate solutions: X-ray diffractio.. [591]
4. Polyborates in aqueous borate solution: A Raman and DFT theory inv.. [503]
5. Polyborates in Aqueous Sodium Borate Solution at 298.15 K [442]
6. Structure of Aqueous Potassium Tetraborate Solutions [409]
7. 热障涂层高温失效的研究进展 [340]
8. 纳米氧化镁制备方法与进展 [338]
9. 硼酸钾溶液性质与结构 [310]
10. Ab Initio Investigation of the Microspecies and Energy in Hydrated.. [189]
11. Raman spectroscopy and ab initio quantum chemical calculations of .. [180]
12. Preparation and thermal energy storage studies of CH3COONa center .. [175]
13. 浅谈高校工科专业实验教学的现状和改革措施 [170]
14. Preparation and Electrochemical Performance of Composite Electrode.. [165]
15. Hydrogen generation mechanism of BH4- spontaneous hydrolysis: A si.. [164]
16. Micro-hydration and acid dissociation mechanism of B(OH)(3) [162]
17. EXAFS Study of the Structure of Amorphous Nickel Borate [158]
18. Characterizing Ni(II) hydration in aqueous solution using DFT and .. [158]
19. Phase change performance assessment of salt mixtures for thermal e.. [158]
20. Electrodeposited Nickel Hydroxide on the Reduced Graphene Oxide wi.. [156]
21. Investigation on species distribution and EXAFS structure of aqueo.. [156]
22. Cs~+水合结构的密度泛函理论计算研究 [152]
23. Reconsideration on Hydration of Sodium Ion: From Micro-Hydration t.. [150]
24. 纳米稀土添加剂对WC/12Co涂层盐雾腐蚀性能的影响 [148]
25. The investigation of structure and IR spectra for hydrated potassi.. [145]
26. Structure of Aqueous Lithium Tetraborate Solution [142]
27. Density, Electrical Conductivity, pH, and Polyborate Distribution .. [141]
28. Solution Structure of Energy Stored System I: Aqua-B(OH)(4)(-): A .. [140]
29. Structure of aqueous potassium metaborate solution [138]
30. Density, Electrical Conductivity, Acidity, Viscosity and Raman Spe.. [136]
31. Structure of aqueous potassium pentaborate solution [135]
32. Structure of aqueous potassium tetraborate solutions by X-ray scat.. [132]
33. 添加剂对储能材料CaCl_2·6H_2O+Ca(NO_3)_2·4H_2O相变温度和过冷温度.. [126]
34. SO_4~(2-)微观水合结构DFT研究 [125]
35. DFT对Rb~+水合团簇及其相关性质的分析 [124]
36. Modified Calcium Chloride Hexahydrate Lotus Root Starch_Expanded G.. [113]
37. X射线及中子散射在溶液结构研究中的应用 [109]
38. Modified Calcium Chloride Hexahydrate Lotus Root Starch_Expanded G.. [101]
39. 温度对液态水结构的影响:中子及X射线散射研究 [100]
40. 氯化钙溶液的分子动力学模拟研究(英文) [98]
41. Volumetric and Transport Properties of Aqueous NaB(OH)(4) Solution.. [93]
42. Raman and ab initio analyses of ion pairs in concentrated K[B(OH)(.. [91]
43. A Study of the Structure of Aqueous Rubidium Tetraborate Solutions [90]
44. Solubility Phase Diagram of the Ternary System LiCl-MgCl2-H2O and .. [90]
45. Dihydrogen Bonds in Aqueous NaBD4 Solution by Neutron and X-ray Di.. [89]
46. The structural elucidation of aqueous H(3)BO(3)solutions by DFT an.. [86]
47. Ion association in lithium metaborate solution a Raman and ab init.. [86]
48. Mechanism for hydrolysis of double six-membered ring tetraborate a.. [85]
49. Structure of aqueous sodium acetate solutions by X-Ray scattering .. [85]
50. Micro-Raman and density functional theory analyses of ion pairs in.. [83]
51. Ion hydration and association in aqueous potassium tetrahydroxybor.. [82]
52. Ab-initio investigation on ion-associated species and association .. [79]
53. Structure of alkaline aqueous NaBH4 solutions by X-ray scattering .. [78]
54. Structure analysis of aqueous Mg(NO3)(2) solutions [76]
55. Microstructure for aqueous cesium tetraborate and rubidium tetrabo.. [67]
56. Selectivity of 18-crown-6 ether to alkali ions by density function.. [65]
57. Raman and ab initio analyses of ion pairs in concentrated K[B(OH)(.. [59]
58. Hydrolysis mechanism of double six-membered ring pentaborate anion [57]
59. EFFECT OF NANO RARE EARTH ON CORROSION RESISTANCE OF THERMAL SPRAY.. [46]