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Physical Chemistry Chemical Physics : PCCP|February 4, 2017
Importance of polyelectrolyte modification for rectifying the ionic current in conically shaped nanochannelsJyh-Ping Hsu, Hou-Hsueh Wu, Chih-Yuan Lin, et al.
Physical Chemistry Chemical Physics : PCCP|March 29, 2019
Electrokinetic ion transport in an asymmetric double-gated nanochannel with a pH-tunable zwitterionic surfaceJyh-Ping Hsu, Yu-Min Chen, Chih-Yuan Lin, et al.
Journal of Colloid and Interface Science|November 20, 2018
Ion transport in a pH-regulated conical nanopore filled with a power-law fluidJyh-Ping Hsu, Yu-You Chu, Chih-Yuan Lin, et al.
Analytical Chemistry|March 11, 2017
Ion Current Rectification Behavior of Bioinspired Nanopores Having a pH-Tunable Zwitterionic SurfaceJyh-Ping Hsu, Hou-Hsueh Wu, Chih-Yuan Lin, et al.
Physical Chemistry Chemical Physics : PCCP|November 3, 2016
Salt gradient driven ion transport in solid-state nanopores: the crucial role of reservoir geometry and sizeChih-Yuan Lin, Fu Chen, Li-Hsien Yeh, et al.
Nanoscale|January 12, 2016
Salinity gradient power: influences of temperature and nanopore sizeShiojenn Tseng, Yu-Ming Li, Chih-Yuan Lin, et al.
Small (Weinheim an Der Bergstrasse, Germany)|July 8, 2015
Regulating Current Rectification and Nanoparticle Transport Through a Salt Gradient in Bipolar NanoporesChih-Yuan Lin, Li-Hsien Yeh, Jyh-Ping Hsu, et al.
Arxiv|December 25, 2025
Uncovering hidden protein conformations with high bandwidth nanopore measurementsKyril Kavetsky, Sabine Hong, Chih-Yuan Lin, et al.
Nano Letters|February 6, 2026
Uncovering Hidden Protein Conformations with High Bandwidth Nanopore MeasurementsKyril Kavetsky, Sabine Hong, Chih-Yuan Lin, et al.
Nature Communications|March 29, 2020
Ionic amplifying circuits inspired by electronics and biologyRachel A Lucas, Chih-Yuan Lin, Lane A Baker, et al.
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