Jinlei Feng, Augustin Caillas, Ji Yang, Philippe Guyot‐Sionnest
HgTe quantum dots are synthesized as relatively monodispersed nanoparticles with spherical, partially spherical, and tetrahedral shapes. The colloidal stability is in the order spherical ≈ partially spherical > tetrahedral, and the first exciton strength is in the order tetrahedral ≈ partially spherical > spherical. Intrinsic films are made using nonpolar and polar ligand exchange and treated with a mild etching solution of HgCl 2 . They are tested as mid-IR photoconductors with a 4 μm cutoff. For all films, the carrier lifetime is geminate recombination-limited between 250 and 330 K. Partially spherical dots emerge with the longer carrier lifetime and higher signal-to-noise ratio. 200 nm thick films deposited on an optical resonant grating architecture with a 1.5 μm channel gap achieve a saturated external quantum efficiency of 65% at 2 V bias, for light polarized across the gap, with a room temperature detectivity of 0.8 × 10 10 Jones at 2450 cm –1, 10 kHz and 0.27 V bias, and response time of about 200 ns. This is the highest room temperature detectivity achieved for HgTe dots at 2450 cm –1 and below.