131 results on '"Sheng, Daopeng"'
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2. Regioselective 1,4-/1,3-Difunctionalization of 1,3-Enynes with Selenosulfonates in Water
3. Nickel(II)‐Catalyzed Reductive Coupling of Xanthate Esters with Sulfur‐Containing and Selenium‐Containing Compounds: Synthesis of Unsymmetric Sulfides and Selenides.
4. Copper-Catalyzed Chemoselective Coupling of N‑Dithiophthalimides and Alkyl Halides: Synthesis of Unsymmetrical Disulfides and Sulfides.
5. Visible-light-promoted synthesis of α,α-difluoro-β-keto-thio(seleno)ethers from thio(seleno)sulfonates and difluoroenoxysilanes
6. Access to disulfides through ligand-controlled nickel-catalyzed dithiosulfonate and alkyl halides
7. Regioselective Thiol-yne Reaction of Thiol with ((Methyl-d3)sulfonyl)ethyne: Synthesis of (2-((Methyl-d3)sulfonyl)vinyl)sulfides
8. Rational design of a cationic polymer network towards record high uptake of 99TcO4− in nuclear waste
9. A uranyl based coordination polymer showing response to low-dosage ionizing radiations down to 10−5 Gy
10. Nickel-Catalyzed Acid Chlorides with Tetrasulfides for the Synthesis of Thioesters and Acyl Disulfides
11. Regioselective Thiol-yne Reaction of Thiol with ((Methyl‑d3)sulfonyl)ethyne: Synthesis of (2-((Methyl‑d3)sulfonyl)vinyl)sulfides.
12. Visible-light-mediated selenylation/cyclization reactions of diselenide with acrylimide derivatives: synthesis of selenosubstituted pyrrolidine-2,5-diones.
13. Lesson Learned from a Case of Radioactive Contamination
14. Photoinduced Reaction of α‐Bromoacetophenone with Thiosulfonate: Synthesis of β‐Keto Thiosulfone
15. Copper-Catalyzed Synthesis of S–S Bond-Containing Silanols from SCBs and Trisulfide-1,1-dioxides
16. Synthesis of 1,3-Dibenzenesulfonylpolysulfane (DBSPS) and Its Application in the Preparation of Aryl Thiosulfonates from Boronic Acids
17. Regioselective Thiol-yne Reaction of Thiol with ((Methyl-d3)sulfonyl)ethyne: Synthesis of (2-((Methyl-d3)sulfonyl)vinyl)sulfides
18. Photoinduced Construction of Thieno[3,4-c]quinolin-4(5H)-ones/Selenopheno[3,4-c]quinolin-4(5H)-ones Using Diphenyl Disulfide or Diphenyl Diselenide as Sulfur or Selenium Sources
19. Photoinduced Construction of Thieno[3,4‑c]quinolin-4(5H)‑ones/Selenopheno[3,4‑c]quinolin-4(5H)‑ones Using Diphenyl Disulfide or Diphenyl Diselenide as Sulfur or Selenium Sources.
20. Nickel(ii)/TPMPP catalyzed reductive coupling of oxalates and tetrasulfides: synthesis of unsymmetric disulfides
21. A convenient catalytic approach to synthesize straight boron nitride nanotubes using synergic nitrogen source
22. Stabilization of Plutonium(V) Within a Crown Ether Inclusion Complex
23. Successful Decontamination of 99 TcO 4 − in Groundwater at Legacy Nuclear Sites by a Cationic Metal‐Organic Framework with Hydrophobic Pockets
24. Competing Crystallization between Lanthanide and Actinide in Acidic Solution Leading to Their Efficient Separation
25. Highly In‐Plane Anisotropic 2D GeAs 2 for Polarization‐Sensitive Photodetection
26. Rational design of a cationic polymer network towards record high uptake of 99TcO4−in nuclear waste
27. Mild Periodic Acid Flux and Hydrothermal Methods for the Synthesis of Crystalline f-Element-Bearing Iodate Compounds
28. Innenrücktitelbild: Emergence of Uranium as a Distinct Metal Center for Building Intrinsic X-ray Scintillators (Angew. Chem. 26/2018)
29. Inside Back Cover: Emergence of Uranium as a Distinct Metal Center for Building Intrinsic X-ray Scintillators (Angew. Chem. Int. Ed. 26/2018)
30. Emergence of Uranium as a Distinct Metal Center for Building Intrinsic X‐ray Scintillators
31. Identifying the Recognition Site for Selective Trapping of 99TcO4– in a Hydrolytically Stable and Radiation Resistant Cationic Metal–Organic Framework
32. Mild Periodic Acid Flux and Hydrothermal Methods for the Synthesis of Crystalline f-Element-Bearing Iodate Compounds
33. Selenium Sequestration in a Cationic Layered Rare Earth Hydroxide: A Combined Batch Experiments and EXAFS Investigation
34. Exceptional Perrhenate/Pertechnetate Uptake and Subsequent Immobilization by a Low-Dimensional Cationic Coordination Polymer: Overcoming the Hofmeister Bias Selectivity
35. Significant Proton Conductivity Enhancement through Rapid Water-Induced Structural Transformation from a Cationic Framework to a Water-Rich Neutral Chain
36. Overcoming the crystallization and designability issues in the ultrastable zirconium phosphonate framework system
37. Substitutional Disorder of SeO32–/IO3– in the Crystalline Solid Matrix: Insights into the Fate of Radionuclides 79Se and 129I in the Environment
38. Efficient and Selective Uptake of TcO4– by a Cationic Metal–Organic Framework Material with Open Ag+ Sites
39. Successful Decontamination of 99TcO4− in Groundwater at Legacy Nuclear Sites by a Cationic Metal‐Organic Framework with Hydrophobic Pockets.
40. Competing Crystallization between Lanthanide and Actinide in Acidic Solution Leading to Their Efficient Separation.
41. First Cationic Uranyl–Organic Framework with Anion-Exchange Capabilities
42. Hydrolytically Stable Nanoporous Thorium Mixed Phosphite and Pyrophosphate Framework Generated from Redox-Active Ionothermal Reactions
43. ChemInform Abstract: Boosting Proton Conductivity in Highly Robust 3D Inorganic Cationic Extended Frameworks Through Ion Exchange with Dihydrogen Phosphate Anions.
44. Atypical temperature-dependence of symmetry transformation observed in a uranyl phosphonate
45. Surprising coordination for low-valent actinides resembling uranyl(vi) in thorium(iv) organic hybrid layered and framework structures based on a graphene-like (6,3) sheet topology
46. ChemInform Abstract: Unravelling the Proton Conduction Mechanism from Room Temperature to 553 K in a 3D Inorganic Coordination Framework.
47. Boosting Proton Conductivity in Highly Robust 3D Inorganic Cationic Extended Frameworks through Ion Exchange with Dihydrogen Phosphate Anions
48. Unravelling the Proton Conduction Mechanism from Room Temperature to 553 K in a 3D Inorganic Coordination Framework
49. Insertion of Trivalent Lanthanides into Uranyl Vanadate Layers and Frameworks
50. Emergence of Uranium as a Distinct Metal Center for Building Intrinsic X‐ray Scintillators.
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