Follow
XIN LIU
Title
Cited by
Cited by
Year
Construction of DNA-based molecular circuits using normally open and normally closed switches driven by lambda exonuclease
X Liu, X Zhang, Y Yao, P Shi, C Zeng, Q Zhang
Nanoscale 15 (17), 7755-7764, 2023
52023
Programmable Molecular Signal Transmission Architecture and Reactant Regeneration Strategy Driven by EXO λ for DNA Circuits
X Zhang, X Liu, Y Yao, Y Liu, C Zeng, Q Zhang
ACS Synthetic Biology 12 (7), 2107-2117, 2023
32023
Multifunctional Exo III-assisted scalability strategy for constructing DNA molecular logic circuits
C Zeng, X Liu, B Wang, R Qin, Q Zhang
Analyst 148 (9), 1954-1960, 2023
12023
Arbitrary Digital DNA Computing: A Programmable Molecular Perceptron Driven by Lambda Exonuclease for Lighting up Concatenated Circuits
X Zhang, X Liu, X Zhang, S Cui, Y Yao, B Wang, Q Zhang
ACS Applied Materials & Interfaces, 2024
2024
Engineering Modular DNA Reaction Networks for Signal Processing
S Cui, X Liu, X Zhang, P Shi, Y Zheng, B Wang, Q Zhang
Chemistry–A European Journal, e202400740, 2024
2024
A signal transmission strategy driven by gap-regulated exonuclease hydrolysis for hierarchical molecular networks
X Liu, X Zhang, S Cui, S Xu, R Liu, B Wang, X Wei, Q Zhang
Communications Biology 7 (1), 335, 2024
2024
Bubble DNA tweezer: A triple-conformation sensor responsive to concentration-ratios
Y Yao, Y Liu, X Liu, X Zhang, P Shi, X Zhang, Q Zhang, X Wei
Iscience 27 (3), 2024
2024
Temporal logic circuits implementation using a dual cross-inhibition mechanism based on DNA strand displacement
Y Liu, X Zhang, X Zhang, X Liu, B Wang, Q Zhang, X Wei
RSC advances 13 (39), 27125-27134, 2023
2023
Construction of Multiple Logic Circuits Based on Allosteric DNAzymes
X Liu, Q Zhang, X Zhang, Y Liu, Y Yao, N Kasabov
Biomolecules 12 (4), 495, 2022
2022
An IGS Algorithm applied to DNA sequence design
K Liu, B Wang, Y Liu, R Wu, X Zhang, X Liu, Q Zhang, Z Yin
2019 IEEE Intl Conf on Dependable, Autonomic and Secure Computing, Intl Conf …, 2019
2019
The system can't perform the operation now. Try again later.
Articles 1–10