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Tianwen Zhu

Researcher at Sun Yat-sen University

Publications -  10
Citations -  255

Tianwen Zhu is an academic researcher from Sun Yat-sen University. The author has contributed to research in topics: Dielectric & Chemistry. The author has an hindex of 4, co-authored 6 publications receiving 85 citations.

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Facile Strategy for Intrinsic Low-k Dielectric Polymers: Molecular Design Based on Secondary Relaxation Behavior

TL;DR: In this article, an original design strategy for the preparation of polymers with a low dielectric constant is presented, which takes the most advantage of the secondary relaxation of the polymers.
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Amphiphilic Polymer-Mediated Aggregation-Induced Emission Nanoparticles for Highly Sensitive Organophosphorus Pesticide Biosensing.

TL;DR: This study reports a self-assembling strategy to fabricate AIE nanoparticles (PTDNPs) through dispersion of amphiphilic polymers (PTD) in phosphate buffer saline (PBS) and finds that the particle size, morphology, functional groups and fluorescence property of PTDNPs can be fine-tuned.
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Modified halloysite nanotube filled polyimide composites for film capacitors: high dielectric constant, low dielectric loss and excellent heat resistance

TL;DR: In this article, halloysite nanotubes (HNTs) were chosen as fillers and high performance polyimide (PI) was used as the matrix to form a series of dielectric composite materials with high Dielectric constant, low dielectrics loss and excellent heat resistance.
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Temperature Resistant Amorphous Polyimides with High Intrinsic Permittivity for Electronic Applications

TL;DR: In this article , an intrinsic high-k polyimide with rigid backbone and polar side groups was presented, which exhibited high permittivity (5.2 ∼ 6.0) and excellent thermal stability.
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Intrinsic high-k–low-loss dielectric polyimides containing ortho-position aromatic nitrile moieties: reconsideration on Clausius–Mossotti equation

TL;DR: In this paper, a facile molecular design strategy was developed by directly introducing two ortho-position aromatic nitrile groups into the rigid polyimide backbone, which can greatly increase the polarizability and dielectric constant of the designed polyimides.