Codoping n-and p-type impurities in colloidal silicon nanocrystals: Controlling luminescence energy from below bulk band gap to visible range H Sugimoto, M Fujii, K Imakita, S Hayashi, K Akamatsu The Journal of Physical Chemistry C 117 (22), 11850-11857, 2013 | 147 | 2013 |
All-inorganic near-infrared luminescent colloidal silicon nanocrystals: high dispersibility in polar liquid by phosphorus and boron codoping H Sugimoto, M Fujii, K Imakita, S Hayashi, K Akamatsu The Journal of Physical Chemistry C 116 (33), 17969-17974, 2012 | 119 | 2012 |
All-inorganic water-dispersible silicon quantum dots: highly efficient near-infrared luminescence in a wide pH range H Sugimoto, M Fujii, Y Fukuda, K Imakita, K Akamatsu Nanoscale 6 (1), 122-126, 2014 | 82 | 2014 |
Mie Resonator Color Inks of Monodispersed and Perfectly Spherical Crystalline Silicon Nanoparticles H Sugimoto, T Okazaki, M Fujii Advanced Optical Materials, 2000033, 2020 | 79 | 2020 |
All-inorganic colloidal silicon nanocrystals—surface modification by boron and phosphorus co-doping KI Minoru Fujii, Hiroshi Sugimoto Nanotechnology 27 (26), 2016 | 76 | 2016 |
Size-dependence of acceptor and donor levels of boron and phosphorus codoped colloidal silicon nanocrystals Y Hori, S Kano, H Sugimoto, K Imakita, M Fujii Nano Letters 16 (4), 2615-2620, 2016 | 75 | 2016 |
Phosphorus and boron codoped colloidal silicon nanocrystals with inorganic atomic ligands H Sugimoto, M Fujii, K Imakita, S Hayashi, K Akamatsu The Journal of Physical Chemistry C 117 (13), 6807-6813, 2013 | 75 | 2013 |
Broadband dielectric–metal hybrid nanoantenna: Silicon nanoparticle on a mirror H Sugimoto, M Fujii Acs Photonics 5 (5), 1986-1993, 2018 | 74 | 2018 |
Atom probe tomography analysis of boron and/or phosphorus distribution in doped silicon nanocrystals K Nomoto, H Sugimoto, A Breen, AV Ceguerra, T Kanno, SP Ringer, ... The Journal of Physical Chemistry C 120 (31), 17845-17852, 2016 | 69 | 2016 |
Hybridized plasmonic gap mode of gold nanorod on mirror nanoantenna for spectrally tailored fluorescence enhancement H Sugimoto, S Yashima, M Fujii Acs Photonics 5 (8), 3421-3427, 2018 | 64 | 2018 |
Excitation of nonradiating anapoles in dielectric nanospheres JA Parker, H Sugimoto, B Coe, D Eggena, M Fujii, NF Scherer, SK Gray, ... | 62* | |
Silicon nanocrystals with high boron and phosphorus concentration hydrophilic shell—Raman scattering and X-ray photoelectron spectroscopic studies M Fujii, H Sugimoto, M Hasegawa, K Imakita Journal of Applied Physics 115 (8), 2014 | 58 | 2014 |
Colloidal Dispersion of Subquarter Micrometer Silicon Spheres for Low‐Loss Antenna in Visible Regime Hiroshi Sugimoto, Minoru Fujii Advanced Optical Materials, 2017 | 57 | 2017 |
Quantitative Understanding of Charge-Transfer-Mediated Fe3+ Sensing and Fast Photoresponse by N-Doped Graphene Quantum Dots Decorated on Plasmonic … R Das, H Sugimoto, M Fujii, PK Giri ACS applied materials & interfaces 12 (4), 4755-4768, 2020 | 54 | 2020 |
Evidence for plasmonic hot electron injection induced superior visible light photocatalysis by g-C3N4 nanosheets decorated with Ag–TiO2 (B) and Au–TiO2 (B) nanorods KK Paul, PK Giri, H Sugimoto, M Fujii, B Choudhury Solar Energy Materials and Solar Cells 201, 110053, 2019 | 42 | 2019 |
Surfactant-free solution-dispersible Si nanocrystals surface modification by impurity control M Fukuda, M Fujii, H Sugimoto, K Imakita, S Hayashi Optics letters 36 (20), 4026-4028, 2011 | 40 | 2011 |
Synthesis of boron and phosphorus codoped all-inorganic colloidal silicon nanocrystals from hydrogen silsesquioxane H Sugimoto, M Fujii, K Imakita Nanoscale 6 (21), 12354-12359, 2014 | 39 | 2014 |
Triplex glass laminates with silicon quantum dots for luminescent solar concentrators J Huang, J Zhou, T Haraldsson, A Clemments, M Fujii, H Sugimoto, B Xu, ... Solar RRL 4 (9), 2000195, 2020 | 38 | 2020 |
The impact of doped silicon quantum dots on human osteoblasts L Ostrovska, A Broz, A Fucikova, T Belinova, H Sugimoto, T Kanno, M Fujii, ... Rsc Advances 6 (68), 63403-63413, 2016 | 36 | 2016 |
Energy Transfer in Silicon Nanocrystal Solids Made from All-Inorganic Colloidal Silicon Nanocrystals KI Kenta Furuta, Minoru Fujii, Hiroshi Sugimoto The Journal of Physical Chemistry Letters 6, 2761, 2015 | 35 | 2015 |