Παρακολούθηση
Cindy Tang
Cindy Tang
Η διεύθυνση ηλεκτρονικού ταχυδρομείου έχει επαληθευτεί στον τομέα ntu.edu.sg
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Παρατίθεται από
Παρατίθεται από
Έτος
Doped polymer semiconductors with ultrahigh and ultralow work functions for ohmic contacts
CG Tang, MCY Ang, KK Choo, V Keerthi, JK Tan, MN Syafiqah, T Kugler, ...
Nature 539 (7630), 536-540, 2016
2052016
Madelung and Hubbard interactions in polaron band model of doped organic semiconductors
RQ Png, MCY Ang, MH Teo, KK Choo, CG Tang, D Belaineh, LL Chua, ...
Nature communications 7 (1), 11948, 2016
792016
Multivalent anions as universal latent electron donors
CG Tang, MN Syafiqah, QM Koh, C Zhao, J Zaini, QJ Seah, MJ Cass, ...
Nature 573, 519-525, 2019
562019
Biocompatible ionic liquids in high-performing organic electrochemical transistors for ion detection and electrophysiological monitoring
T Li, JY Cheryl Koh, A Moudgil, H Cao, X Wu, S Chen, K Hou, ...
ACS nano 16 (8), 12049-12060, 2022
322022
Interface Doping for Ohmic Organic Semiconductor Contacts Using Self‐Aligned Polyelectrolyte Counterion Monolayer
WL Seah, CG Tang, RQ Png, V Keerthi, C Zhao, H Guo, JG Yang, M Zhou, ...
Advanced Functional Materials 27 (18), 1606291, 2017
302017
Improving organic photovoltaic cells by forcing electrode work function well beyond onset of Ohmic transition
C Zhao, CG Tang, ZL Seah, QM Koh, LL Chua, RQ Png, PKH Ho
Nature Communications 12 (1), 2250, 2021
252021
Surface Doping of Organic Single‐Crystal Semiconductors to Produce Strain‐Sensitive Conductive Nanosheets
S Watanabe, R Hakamatani, K Yaegashi, Y Yamashita, H Nozawa, ...
Advanced Science 8 (3), 2002065, 2021
102021
Bulk ion-clustering and surface ion-layering effects on work function of self-compensated charged-doped polymer semiconductors
MCY Ang, CG Tang, QM Koh, C Zhao, QJ Seah, Y Wang, M Callsen, ...
Materials Horizons 7 (4), 1073-1082, 2020
92020
Nearly 100% Photocrosslinking Efficiency in Ultrahigh Work Function Hole-Doped Conjugated Polymers Using Bis (fluorophenyl azide) Additives
DWY Teo, Z Jamal, HY Phua, CG Tang, RQ Png, LL Chua
ACS applied materials & interfaces 11 (51), 48103-48112, 2019
92019
Overcoming the water oxidative limit for ultra-high-workfunction hole-doped polymers
PKHH Qi-Mian Koh, Cindy Guanyu Tang, Mervin Chun-Yi Ang, Kim-Kian Choo, Qiu ...
Nature communications 12, 3345, 2021
82021
Double-type-I charge-injection heterostructure for quantum-dot light-emitting diodes
LX Wang, CG Tang, ZS Tan, HY Phua, J Chen, W Lei, RQ Png, LL Chua, ...
Materials Horizons 9 (8), 2147-2159, 2022
62022
Spectator cation size effect on the work function and stability of self-compensated hole-doped polymers
MCY Ang, QM Koh, CG Tang, QJ Seah, Y Wang, M Callsen, YP Feng, ...
Journal of Materials Chemistry C 8 (1), 124-131, 2020
62020
Water binding and hygroscopicity in π-conjugated polyelectrolytes
CG Tang, MN Syafiqah, QM Koh, MCY Ang, KK Choo, MM Sun, M Callsen, ...
Nature Communications 14 (1), 3978, 2023
32023
Highly Stable Ladder‐Type Conjugated Polymer Based Organic Electrochemical Transistors for Low Power and Signal Processing‐Free Surface Electromyogram Triggered Robotic Hand …
Z Zhou, X Wu, TLD Tam, CG Tang, S Chen, K Hou, T Li, Q He, JJ Sit, J Xu, ...
Advanced Functional Materials 34 (1), 2305780, 2024
22024
The Quest for Air Stability in Organic Semiconductors
CG Tang, K Hou, WL Leong
Chemistry of Materials 36 (1), 28-53, 2023
12023
n-Doped electrically conductive polymeric material
LL Chua, PKH Ho, RQ Png, MCY Ang, KK Choo, CGY Tang
US Patent 10,763,438, 2020
12020
Stable n‐type perylene derivative ladder polymer with antiambipolarity for electrically reconfigurable organic logic gates
X Wu, Q He, Z Zhou, TLD Tam, C Tang, M Lin, M Moser, S Griggs, ...
Advanced Materials, 2308823, 2024
2024
Mechanoreceptor-inspired in-ear triboelectric sensor for unconstrained physiological monitoring and human–machine interaction
Q He, Z Zhou, S Chen, CG Tang, WL Leong
Nano Energy 117, 108900, 2023
2023
n-Doped Electrically Conductive Organic Materials
PKH Ho, LL Chua, RQ Png, CGY Tang
US Patent US20220059769A1, 2022
2022
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