1.
Loading Actinides in Multilayered Structures for Nuclear Waste Tre..
[686]
|
2.
Introduction of amino groups into acid-resistant MOFs for enhanced..
[586]
|
3.
MOF-76: from a luminescent probe to highly efficient U-VI sorption..
[577]
|
4.
An Unprecedented Two-Fold Nested Super-Polyrotaxane: SulfateDirect..
[544]
|
5.
New Insight of Coordination and Extraction of Uranium(VI) with N-D..
[539]
|
6.
磁性功能性介孔硅基材料的构筑及其对U(Ⅵ)的吸附研究
[501]
|
7.
Thermodynamic and electrochemical properties of holmium and HoxAly..
[488]
|
8.
Electrochemical Properties of Lanthanum on the Liquid Gallium Elec..
[486]
|
9.
UiO-66及其羧基衍生物对U(Ⅵ)的吸附与机理研究
[465]
|
10.
Easily prepared and stable functionalized magnetic ordered mesopor..
[453]
|
11.
离子液体萃取锕系元素的相关配位化学
[450]
|
12.
Electroreduction of Gd3+ on W and Zn Electrodes in LiCl-KCl Eutect..
[448]
|
13.
Efficient removal of uranium from aqueous solution by zero-valent ..
[447]
|
14.
Excellent Selectivity for Actinides with a Tetradentate 2,9-Diamid..
[446]
|
15.
离子液体在核燃料后处理中的应用
[444]
|
16.
U(VI) capture from aqueous solution by highly porous and stable MO..
[436]
|
17.
First three-dimensional actinide polyrotaxane framework mediated b..
[435]
|
18.
High selectivity towards small copper ions by a preorganized phena..
[434]
|
19.
铀氧化物微米球及其制备方法
[433]
|
20.
A new solvent system containing N,N '-diethyl-N,N '-ditolyl-2,9-di..
[432]
|
21.
A high efficient sorption of U(VI) from aqueous solution using ami..
[427]
|
22.
Exploring Actinide Materials Through Synchrotron Radiation Techniq..
[426]
|
23.
Size-tunable synthesis of monodisperse thorium dioxide nanoparticl..
[422]
|
24.
Adsorption of U(Ⅵ) by amino-functionalized magnetic ordered mesop..
[419]
|
25.
Estimation of the composition of intermetallic compounds in LiCl-K..
[418]
|
26.
First principles modeling of zirconium solution in bulk UO2
[413]
|
27.
Mesoporous silica SBA-15 functionalized with phosphonate and amino..
[411]
|
28.
Recent advances in computational modeling and simulations on the A..
[411]
|
29.
Solvent extraction of uranium(VI) by a dipicolinamide using a room..
[409]
|
30.
Nanomaterials and nanotechnologies in nuclear energy chemistry
[407]
|
31.
Solvent extraction of U(VI) by trioctylphosphine oxide using a roo..
[405]
|
32.
Supramolecular inclusion-based molecular integral rigidity: a feas..
[401]
|
33.
Electrochemical Extraction of Cerium by Forming Ce-Zn Alloys in Li..
[401]
|
34.
2,9-二酰胺-1,10-邻菲罗啉对U(Ⅵ)的萃取行为与机理研究
[401]
|
35.
Extraction of thorium from LiCl-KCl molten salts by forming Al-Th ..
[399]
|
36.
Electroseparation of thorium from ThO2 and La2O3 by forming Th-Al ..
[397]
|
37.
Electrochemical behavior of La(III) on the zinc-coated W electrode..
[397]
|
38.
Electrochemical behavior of uranyl in ionic liquid 1-butyl-3-methy..
[391]
|
39.
Interactions between Th(IV) and graphene oxide: experimental and d..
[391]
|
40.
Introduction of Bifunctional Groups into Mesoporous Silica for Enh..
[386]
|
41.
Template-Free Synthesis and Mechanistic Study of Porous Three-Dime..
[382]
|
42.
磷酸酯功能化介孔硅材料对钍(Ⅳ)的吸附性能
[380]
|
43.
Electroextraction of samarium from Sm2O3 in chloride melts
[379]
|
44.
Synthesis of ordered mesoporous U3O8 by a nanocasting route
[376]
|
45.
Selective separation of Am(III) from Eu(III) by 2,9-Bis(dialkyl-1,..
[376]
|
46.
X射线吸收谱学在锕系环境放射化学中的应用
[376]
|
47.
Electrochemical reactions of the Th4+/Th couple on the tungsten, a..
[375]
|
48.
Diffusion Coefficient of Ho3+ at Liquid zinc Electrode and Co-redu..
[370]
|
49.
Electrochemical and thermodynamic properties of Nd (III)/Nd (0) co..
[370]
|
50.
Thermodynamic Study on the Complexation of Am(III) and Eu(III) wit..
[362]
|
51.
A novel mesoporous material for uranium extraction, dihydroimidazo..
[360]
|
52.
Co-reduction behaviors of lanthanum and aluminium ions in LiCI-KCI..
[352]
|
53.
Efficient U(VI) Reduction and Sequestration by Ti2CTx MXene
[328]
|
54.
Towards understanding the correlation between UO_2~(2+) extraction..
[316]
|
55.
A neptunium(v)-mediated interwoven transuranium-rotaxane network i..
[267]
|
56.
Raman and Electrochemical Study of Zirconium in LiCl-KCl-LiF-ZrCl4
[227]
|
57.
纳米技术与核能发展
[216]
|
58.
Defect engineering in metal-organic frameworks: a new strategy to ..
[215]
|
59.
Large-Pore 3D Cubic Mesoporous (KIT-6) Hybrid Bearing a Hard-Soft ..
[210]
|
60.
Direct separation of uranium from lanthanides (La, Nd, Ce, Sm) in ..
[205]
|
61.
羧基纤维介孔硅对Th(Ⅳ)的高效去除
[193]
|
62.
Electrochemical properties of gadolinium on liquid gallium electro..
[178]
|
63.
Interactions between uranium(VI) and phosphopeptide: experimental ..
[175]
|
64.
A particularly simple NH4Cl-based method for the dissolution of UO..
[175]
|
65.
Kinetics process of Tb(III)/Tb couple at liquid Zn electrode and t..
[173]
|
66.
Supramolecular Host-Guest Inclusion for Distinguishing Cucurbit[7]..
[165]
|
67.
Extending the Use of Highly Porous and Functionalized MOFs to Th(I..
[160]
|
68.
U(VI) Extraction by 8-hydroxyquinoline: a comparison study in ioni..
[148]
|
69.
咪唑离子液体及其萃取体系的辐射效应研究
[147]
|
70.
Electrochemical extraction of samarium from LiCl-KCl melt by formi..
[145]
|
71.
Direct Electrochemical Preparation of Ni-Zr Alloy from Mixture Oxi..
[144]
|
72.
Electrochemical extraction of cerium from CeO2 assisted by AlCl3 i..
[141]
|
73.
Electroreduction-based Tb extraction from Tb4O7 on different subst..
[137]
|
74.
Electrochemical formation of erbium-aluminum alloys from erbia in ..
[133]
|
75.
A facile additive-free method for tunable fabrication of UO2 and U..
[132]
|
76.
Electroextraction of gadolinium from Gd2O3 in LiCl-KCl-AlCl3 molte..
[128]
|
77.
Incorporation of magnetism into the dihydroimidazole functionalize..
[123]
|
78.
Electrochemical separation of Th from ThO2 and Eu2O3 assisted by A..
[114]
|
79.
The radiolytic behavior and mechanism of calixarene crown ether un..
[113]
|
80.
Condition dependence of Zr electrochemical reactions and morpholog..
[107]
|
81.
The radiolytic behavior and mechanism of calixarene crown ether un..
[105]
|
82.
Incorporation of magnetism into the dihydroimidazole functionalize..
[79]
|
83.
咪唑功能化磁性介孔硅及其制备方法和应用
[24]
|
84.
一种邻菲罗啉衍生的萃取剂及其制法和应用
[10]
|
85.
一种可见光催化还原去除六价铀的催化剂和方法及应用
[6]
|
86.
Porous Cationic Electrospun Fibers with Sufficient Adsorption Site..
[5]
|
87.
A Hybrid Amorphous/Crystalline TiO2 Material with Enhanced Photoca..
[5]
|
88.
Controllable photomechanical bending of metal-organic rotaxane cry..
[4]
|
89.
LiCl-KCl熔盐体系中稀土氧化物辅助溶解的方法
[3]
|
90.
Superhydrophobic Phosphonium Modified Robust 3D Covalent Organic F..
[3]
|
91.
Graphene oxide/chitosan/potassium copper hexacyanoferrate(II) comp..
[3]
|
92.
Theoretical Insights into Phenanthroline-Based Ligands toward the ..
[3]
|
93.
Lipophilic phenanthroline diamide ligands in 1-octanol for separat..
[3]
|
94.
从二氧化铀与镧系元素氧化物的混合物中分离铀的方法
[2]
|
95.
高温熔盐电化学原位同步辐射研究装置
[2]
|
96.
铀-铝合金及其熔盐电解制备方法
[2]
|
97.
Theoretical study on the extraction behaviors of MoO22+ with organ..
[1]
|
98.
Theoretical insights into the substitution effect of phenanthrolin..
[1]
|
99.
Enhanced photo-reduction of chromium(VI) from aqueous solution by ..
[1]
|