PbS nanocrystals were synthesized directly in the conducting polymer, poly(3-hexylthiophene-2,5-diyl). Transmission electron microscopy shows that the PbS nanocrystals are faceted and relatively uniform in size with a mean size of 10 nm. FFT analysis of the atomic lattice planes observed in TEM and selected area electron diffraction confirm that the nanocrystals have the PbS rock salt structure. The synthesis conditions are explored to show control over the aggregation of PbS nanocrystals in the thiophene conducting polymer
The authors developed a simple solvothermal route to synthesis of PbS nanocrystals in the mild binar...
Many research efforts are focused toward significant improvements of polymeric solar cells efficienc...
In this paper we report an electron microscopic observation of crystal shape development when PbSe n...
PbS nanocrystals were synthesized directly in the conducting polymer, poly (3 -hexylthiophene-2,5-di...
A novel method for synthesizing monodisperse 10 nm Lead Sulphide (PbS) nanocrystals in the conductin...
We describe a single step method to synthesise lead sulphide (PbS) nanocrystals directly in the conj...
A study was carried out to demonstrate that PbS nanorods can be directly assembled in a conducting p...
Lead sulfide has been grown from single molecular precursors within a polymer matrix to form network...
We report on the synthesis and characterization of rod-shaped PbS nanocrystals dispersed in a polyme...
A novel one pot process has been developed for the preparation of PbS nanocrystals in the conjugated...
A novel method for removing the surface-capping ligand, oleic acid, from PbS nanocrystals synthesize...
A novel technique is presented for preparing PbS nanorods with all spatial dimensions comparable to ...
A one-step colloidal process was adopted to prepare face-centered-cubic PbS nanocrystals with differ...
Despite being studied for the past 40 years, the chemistry and photophysics of colloidal nanocrystal...
Poly(methyl methacrylate-co-methacrylic acid) lead(II) salt ionomer [P(MMA-co-MAA)-Pb-II] has been p...
The authors developed a simple solvothermal route to synthesis of PbS nanocrystals in the mild binar...
Many research efforts are focused toward significant improvements of polymeric solar cells efficienc...
In this paper we report an electron microscopic observation of crystal shape development when PbSe n...
PbS nanocrystals were synthesized directly in the conducting polymer, poly (3 -hexylthiophene-2,5-di...
A novel method for synthesizing monodisperse 10 nm Lead Sulphide (PbS) nanocrystals in the conductin...
We describe a single step method to synthesise lead sulphide (PbS) nanocrystals directly in the conj...
A study was carried out to demonstrate that PbS nanorods can be directly assembled in a conducting p...
Lead sulfide has been grown from single molecular precursors within a polymer matrix to form network...
We report on the synthesis and characterization of rod-shaped PbS nanocrystals dispersed in a polyme...
A novel one pot process has been developed for the preparation of PbS nanocrystals in the conjugated...
A novel method for removing the surface-capping ligand, oleic acid, from PbS nanocrystals synthesize...
A novel technique is presented for preparing PbS nanorods with all spatial dimensions comparable to ...
A one-step colloidal process was adopted to prepare face-centered-cubic PbS nanocrystals with differ...
Despite being studied for the past 40 years, the chemistry and photophysics of colloidal nanocrystal...
Poly(methyl methacrylate-co-methacrylic acid) lead(II) salt ionomer [P(MMA-co-MAA)-Pb-II] has been p...
The authors developed a simple solvothermal route to synthesis of PbS nanocrystals in the mild binar...
Many research efforts are focused toward significant improvements of polymeric solar cells efficienc...
In this paper we report an electron microscopic observation of crystal shape development when PbSe n...