Himanshu Joshi

About Himanshu Joshi

Himanshu Joshi, With an exceptional h-index of 18 and a recent h-index of 17 (since 2020), a distinguished researcher at University of Illinois at Urbana-Champaign, specializes in the field of DNA Nanotechnology, Biophysics, Nanopores..

His recent articles reflect a diverse array of research interests and contributions to the field:

Dehydrated Biomimetic Membranes with Skinlike Structure and Function

All-atom molecular dynamics simulations of membrane-spanning DNA origami nanopores

High-affinity DNA nanomatrix: a platform technology for synergistic drug delivery and photothermal therapy

Sulfur-Containing Foldamer-Based Artificial Lithium Channels

Leakless end-to-end transport of small molecules through micron-length DNA nanochannels

Fluorofoldamer-based salt-and proton-rejecting artificial water channels for ultrafast water transport

Hydrophobic Interactions between DNA Duplexes and Synthetic and Biological Membranes

Foldamer-based ultrapermeable and highly selective artificial water channels that exclude protons

Himanshu Joshi Information

University

Position

___

Citations(all)

900

Citations(since 2020)

818

Cited By

287

hIndex(all)

18

hIndex(since 2020)

17

i10Index(all)

24

i10Index(since 2020)

24

Email

University Profile Page

Google Scholar

Himanshu Joshi Skills & Research Interests

DNA Nanotechnology

Biophysics

Nanopores.

Top articles of Himanshu Joshi

Dehydrated Biomimetic Membranes with Skinlike Structure and Function

ACS Applied Materials & Interfaces

2024/4/10

All-atom molecular dynamics simulations of membrane-spanning DNA origami nanopores

2023/5/12

Himanshu Joshi
Himanshu Joshi

H-Index: 9

Aleksei Aksimentiev
Aleksei Aksimentiev

H-Index: 45

High-affinity DNA nanomatrix: a platform technology for synergistic drug delivery and photothermal therapy

ACS Macro Letters

2023/2/1

Sulfur-Containing Foldamer-Based Artificial Lithium Channels

Angewandte Chemie International Edition

2023

Leakless end-to-end transport of small molecules through micron-length DNA nanochannels

Science Advances

2022/9

Fluorofoldamer-based salt-and proton-rejecting artificial water channels for ultrafast water transport

Nano letters

2022/6/8

Hydrophobic Interactions between DNA Duplexes and Synthetic and Biological Membranes

Journal of the American Chemical Society

2021/5/20

Foldamer-based ultrapermeable and highly selective artificial water channels that exclude protons

Nature Nanotechnology

2021/5/20

Cations Regulate Membrane Attachment and Functionality of DNA Nanostructures

Journal of the American Chemical Society

2021/5/7

Determining the in-plane orientation and binding mode of single fluorescent dyes in DNA origami structures

ACS nano

2021/3/4

Chiral systems made from DNA

2021/3

Membrane Activity of a DNA-Based Ion Channel Depends on the Stability of Its Double-Stranded Structure

Nano Letters

2021/11

DNA Origami Voltage Sensors for Transmembrane Potentials with Single-Molecule Sensitivity

Nano Letters

2021/11

Synthetic Macrocycle Nanopore for Potassium-Selective Transmembrane Transport

Journal of the American Chemical Society

2021/8/17

High-fidelity capture, threading, and infinite-depth sequencing of single DNA molecules with a double-nanopore system

Acs Nano

2020/11/11

Tailoring interleaflet lipid transfer with a DNA-based synthetic enzyme

Nano letters

2020/5/6

Polyhydrazide‐Based Organic Nanotubes as Efficient and Selective Artificial Iodide Channels

Angewandte Chemie

2020/3/16

Rosette nanotube porins as ion selective transporters and single-molecule sensors

Journal of the American Chemical Society

2020/1/8

Artificial water channels enable fast and selective water permeation through water-wire networks

Nature nanotechnology

2020/1/2

See List of Professors in Himanshu Joshi University(University of Illinois at Urbana-Champaign)

Co-Authors

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