화학공학소재연구정보센터
검색결과 : 15건
No. Article
1 CADM1 promotes malignant features of small-cell lung cancer by recruiting 4.1R to the plasma membrane
Funaki T, Ito T, Tanei Z, Goto A, Niki T, Matsubara D, Murakami Y
Biochemical and Biophysical Research Communications, 534, 172, 2021
2 An Alkyloxyphenyl Group as a Sterically Hindered Substituent on a Triphenylamine Donor Dye for Effective Recombination Inhibition in Dye-Sensitized Solar Cells
Murakami TN, Koumura N, Yoshida E, Funaki T, Takano S, Kimura M, Mori S
Langmuir, 32(4), 1178, 2016
3 The Arf GTPase-activating protein SMAP1 promotes transferrin receptor endocytosis and interacts with SMAP2
Kobayashi N, Kon S, Henmi Y, Funaki T, Satake M, Tanabe K
Biochemical and Biophysical Research Communications, 453(3), 473, 2014
4 Synthetic generation of high temporal resolution solar radiation data using Markov models
Ngoko BO, Sugihara H, Funaki T
Solar Energy, 103, 160, 2014
5 Cosensitization of Cyclometalated Ruthenium Complex and Organic Dyes for High-efficiency Dye-sensitized Solar Cells
Funaki T, Koumura N, Sayama K
Chemistry Letters, 42(11), 1371, 2013
6 New Class of Thiocyanate-free Ruthenium(II) Complex as a Near-IR Sensitizer for Dye-sensitized Solar Cells
Funaki T, Funakoshi H, Onozawa-Komatsuzaki N, Kasuga K, Sayama K, Sugihara H
Chemistry Letters, 41(6), 647, 2012
7 Integrating the cold load pickup effect of reserve supplying demand response resource in social cost minimization based system scheduling
Behrangrad M, Sugihara H, Funaki T
Energy, 45(1), 1034, 2012
8 Effect of optimal spinning reserve requirement on system pollution emission considering reserve supplying demand response in the electricity market
Behrangrad M, Sugihara H, Funaki T
Applied Energy, 88(7), 2548, 2011
9 Near-IR dye-sensitized solar cells using a new type of ruthenium complexes having 2,6-bis(quinolin-2-yl)pyridine derivatives
Onozawa-Komatsuzaki N, Yanagida M, Funaki T, Kasuga K, Sayama K, Sugihara H
Solar Energy Materials and Solar Cells, 95(1), 310, 2011
10 Efficient Panchromatic Sensitization of Nanocrystalline TiO2-based Solar Cells Using 2-Pyridinecarboxylate-substituted Ruthenium(II) Complexes
Funaki T, Yanagida M, Onozawa-Komatsuzaki N, Kasuga K, Kawanishi Y, Sugihara H
Chemistry Letters, 38(1), 62, 2009