Designing an ultrahigh density linear superlattice array consisting of periodic blocks of different semiconductors in the strong confinement regime via a direct synthetic route remains an unachieved challenge in nanotechnology. We report a general synthesis route for the formulation of a large-area ultrahigh density superlattice array that involves adjoining multiple units of ZnS rods by prolate US particles at the tips. A single one-dimensional wire is 300-500 nm long and consists of periodic quantum wells with a barrier width of 5 nm provided by ZnS and a well width of 1-2 nm provided by CdS, defining a superlattice structure. The synthesis route allows for tailoring of ultranarrow laserlike emissions (fwhm approximate to 125 meV) origi...
We demonstrate the feasibility and flexibility of artificial shape engineering of epitaxial semicond...
The interest in nanoscale materials stems from the fact that new properties are acquired at this sca...
International audienceWe demonstrate the feasibility and flexibility of artificial shape engineering...
Designing an ultrahigh density linear superlattice array consisting of periodic blocks of differen...
Designing an ultrahigh density linear superlattice array consisting of periodic blocks of different ...
Abstract: Semiconductor superlattice micro-/nanowires could greatly increase the versatility and pow...
We describe a general method for producing ultrahigh-density arrays of aligned metal and semiconduct...
We describe a general method for producing ultrahigh-density arrays of aligned metal and semiconduct...
The fabrication of semiconductor structures with precisely controlled nanomeLer scale compositional ...
By combining colloidal nanocrystal synthesis, self-assembly, and solution phase epitaxial growth tec...
Ordered arrays of quantum dots in two-dimensional (2D) materials would make promising optical materi...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Chemistry, 1995.Includes bibliograp...
Abstract Bottom-up grown nanomaterials play an integral role in the development of quantum technolog...
Heterostructure formation in one-dimensional nanostructures is equally important for their unique ph...
honors thesisCollege of ScienceChemistryMichael H. BartlThis thesis provides a platform to experimen...
We demonstrate the feasibility and flexibility of artificial shape engineering of epitaxial semicond...
The interest in nanoscale materials stems from the fact that new properties are acquired at this sca...
International audienceWe demonstrate the feasibility and flexibility of artificial shape engineering...
Designing an ultrahigh density linear superlattice array consisting of periodic blocks of differen...
Designing an ultrahigh density linear superlattice array consisting of periodic blocks of different ...
Abstract: Semiconductor superlattice micro-/nanowires could greatly increase the versatility and pow...
We describe a general method for producing ultrahigh-density arrays of aligned metal and semiconduct...
We describe a general method for producing ultrahigh-density arrays of aligned metal and semiconduct...
The fabrication of semiconductor structures with precisely controlled nanomeLer scale compositional ...
By combining colloidal nanocrystal synthesis, self-assembly, and solution phase epitaxial growth tec...
Ordered arrays of quantum dots in two-dimensional (2D) materials would make promising optical materi...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Chemistry, 1995.Includes bibliograp...
Abstract Bottom-up grown nanomaterials play an integral role in the development of quantum technolog...
Heterostructure formation in one-dimensional nanostructures is equally important for their unique ph...
honors thesisCollege of ScienceChemistryMichael H. BartlThis thesis provides a platform to experimen...
We demonstrate the feasibility and flexibility of artificial shape engineering of epitaxial semicond...
The interest in nanoscale materials stems from the fact that new properties are acquired at this sca...
International audienceWe demonstrate the feasibility and flexibility of artificial shape engineering...