화학공학소재연구정보센터
검색결과 : 10건
No. Article
1 Paracrine orchestration of intestinal tumorigenesis by a mesenchymal niche
Roulis M, Kaklamanos A, Schernthanner M, Bielecki P, Zhao J, Kaffe E, Frommelt LS, Qu RH, Knapp MS, Henriques A, Chalkidi N, Koliaraki V, Jiao J, Brewer JR, Bacher M, Blackburn HN, Zhao XY, Breyer RM, Aidinis V, Jain D, Su B, Herschman HR, Kluger Y, Kollias G, Flavell RA
Nature, 580(7804), 524, 2020
2 Distinct modes of mitochondrial metabolism uncouple T cell differentiation and function
Bailis W, Shyer JA, Zhao J, Canaveras JCG, Al Khazal FJ, Qu RH, Steach HR, Bielecki P, Khan O, Jackson R, Kluger Y, Maher LJ, Rabinowitz J, Craft J, Flavell RA
Nature, 571(7765), 403, 2019
3 Distinct modes of mitochondrial metabolism uncouple T cell differentiation and function (vol 571, pg 403, 2019)
Bailis W, Shyer JA, Zhao J, Canaveras JCG, Al Khazal FJ, Qu RH, Steach HR, Bielecki P, Khan O, Jackson R, Kluger Y, Maher LJ, Rabinowitz J, Craft J, Flavell RA
Nature, 573(7773), E2, 2019
4 Vibration Suppression for Flux-Switching PM Machines
Fang HY, Li DW, Qu RH, Li J, Liang DL
IEEE Transactions on Energy Conversion, 33(3), 959, 2018
5 Investigation of Spoke Array Permanent Magnet Vernier Machine With Alternate Flux Bridges
Ren X, Li DW, Qu RH, Yu ZX, Gao YT
IEEE Transactions on Energy Conversion, 33(4), 2112, 2018
6 Analysis of Thrust Performance of a Dual-Mover Linear Vernier Machine With Horizontal-Magnetized PM Arrays
Zhou Y, Qu RH, Shi CJ, Gao YT
IEEE Transactions on Energy Conversion, 33(4), 2143, 2018
7 Analysis of a Novel Consequent-Pole Flux Switching Permanent Magnet Machine With Flux Bridges in Stator Core
Gao YT, Li DW, Qu RH, Fang HY, Ding H, Jing LB
IEEE Transactions on Energy Conversion, 33(4), 2153, 2018
8 Synthesis of Flux Switching Permanent Magnet Machines
Li DW, Qu RH, Li J, Xu W, Wu LL
IEEE Transactions on Energy Conversion, 31(1), 106, 2016
9 Principles of Stator DC Winding Excited Vernier Reluctance Machines
Jia SF, Qu RH, Li J, Li DW
IEEE Transactions on Energy Conversion, 31(3), 935, 2016
10 Selective removal of polycyclic aromatic hydrocarbons (PAHs) from soil washing effluents using biochars produced at different pyrolytic temperatures
Li HL, Qu RH, Li C, Guo WL, Han XM, He F, Ma YB, Xing BS
Bioresource Technology, 163, 193, 2014