Recently, coordination polymers (CPs) with nanoscale porosity and unique property have demonstrated great potential in many applications. Encouraged by significant progress in the controlled synthesis of nanomaterials, such as metals and semiconductors, the morphologically controlled synthesis of CPs has been considered a potential way to further enhance the inherent properties and develop new functions. In particular, hollow-based CPs are promising nanoarchitectures that can bring several properties derived from crystalline thin shells and interior cavities. Here we demonstrate an exquisite construction method to synthesize CPs with multiple hollow-based nanoarchitectures. Through step-by-step CP crystal growth and subsequent etching proce...
Molecules are architectures of atoms, while crystal engineering of crystalline solids deals with tar...
Coordination polymeric (CP) materials are of interest due their versatile applications in various fi...
Sphere of destiny: Metal–organic spheres with remarkable encapsulation properties are readily prepar...
Recently, coordination polymers (CPs) with nanoscale porosity and unique property have demonstrated ...
Development of a new method to synthesize nanoporous metal oxides with highly crystallized framework...
Coordination polymers have many attractive properties but the development of applications has been h...
This dissertation endeavors to delineate practical paradigms for crystal engineering based upon the ...
Dear Colleagues, The assembly of organic ligands and metal centres yields coordination polymers, man...
Precise control over size, morphology and composition of coordination polymers (CPs) is challenging ...
The synthesis of a novel family of cyano-bridged trimetallic coordination polymers (CPs) with variou...
Small cyano anions, and their derivatives, have proved to be remarkably versatile building blocks fo...
The coordination-directed assembly of metal ions and organic bridging ligands has afforded a variety...
Coordination polymers with large surface areas and uniform but tunable cavities have attracted exten...
A new series of coordination polymers, namely, <b>CP2</b> [{(H<sub>2</sub>O)Co<sub>1.5</sub>(μ-3-bp...
Following our recent work on the first crystallographically characterized coordination polymers base...
Molecules are architectures of atoms, while crystal engineering of crystalline solids deals with tar...
Coordination polymeric (CP) materials are of interest due their versatile applications in various fi...
Sphere of destiny: Metal–organic spheres with remarkable encapsulation properties are readily prepar...
Recently, coordination polymers (CPs) with nanoscale porosity and unique property have demonstrated ...
Development of a new method to synthesize nanoporous metal oxides with highly crystallized framework...
Coordination polymers have many attractive properties but the development of applications has been h...
This dissertation endeavors to delineate practical paradigms for crystal engineering based upon the ...
Dear Colleagues, The assembly of organic ligands and metal centres yields coordination polymers, man...
Precise control over size, morphology and composition of coordination polymers (CPs) is challenging ...
The synthesis of a novel family of cyano-bridged trimetallic coordination polymers (CPs) with variou...
Small cyano anions, and their derivatives, have proved to be remarkably versatile building blocks fo...
The coordination-directed assembly of metal ions and organic bridging ligands has afforded a variety...
Coordination polymers with large surface areas and uniform but tunable cavities have attracted exten...
A new series of coordination polymers, namely, <b>CP2</b> [{(H<sub>2</sub>O)Co<sub>1.5</sub>(μ-3-bp...
Following our recent work on the first crystallographically characterized coordination polymers base...
Molecules are architectures of atoms, while crystal engineering of crystalline solids deals with tar...
Coordination polymeric (CP) materials are of interest due their versatile applications in various fi...
Sphere of destiny: Metal–organic spheres with remarkable encapsulation properties are readily prepar...