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Two teams from State Key Laboratory of Superhard Materials of Jilin University and Center for High Pressure Science and Technology Advanced Research have gained insight into the structure transformation, the coordination change of vanadium, and electrical transport property under high pressure. Their research has been published on December 7th, 2016 in Scientific Reports.
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Recently, a new AABB type thiophene copolymer, poly[5,5′-bis(2-butyloctyl)- (2,2′-bithiophene)-4,4′-dicarboxylate-alt-5,5′-2,2′-bithiophene] (PDCBT), was synthesized and had shown superior electric properties in organic solar cell applications. A systematic investigation on the structural transitions of solution-cast PDCBT film was carried out by a team from the Institute of Chemistry, the Chinese Academy of...
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Phases of fluids under nanoconfinement are the structural basis of physical properties of soft matter confined in nanospace. However, existing state of the molecules, phases and phase changes of the nanoconfined fluids may be very different in bulk referred to. In the case, the freezing and melting in nanospace can be very complicated, which becomes a heated topic in this field. A team from College of Chemistry an...
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Room temperature ionic liquids (RTILs) represent a new class of solvents with ionic and liquid character at or around room temperature, showing ever-increasing potential applications in radiochemical separation, in particular, in liquid/liquid extraction of nuclear fuel associated radionuclides from aqueous solutions. The related coordination chemistry and related extraction mechanisms, however, are still not well...

Uranyl coordination chemistry as well as its speciation is of great significance in the nuclear industry in terms of nuclear waste separation and disposal, meanwhile the intensive study on it will help to explore novel uranyl-organic frameworks with intriguing structure or function, i.e. uranyl-organic interpenetrating networks. However, the design and synthesis of uranyl-organic interpene+trating networks bearing...

As an extremely external driven and kinetics controlled process, flow-induced crystallization (FIC) of polymer is of vital importance not only in scientific research but also in industrial application. Over past decades, great efforts have been dedicated to understand the formations of precursor and shish-kebab, the roles of molecular and flow parameters on nucleation, and other aspects related to FIC. However, th...
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