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Zhiliang Han

Donghua University

Shanghai 200051

China

SCHOLARLY PAPERS

5

DOWNLOADS

131

TOTAL CITATIONS

1

Scholarly Papers (5)

1.

Wearable Device with High Thermoelectric Performance and Long-Lasting Usability Based on Ionogel for Body Heat Harvesting

Number of pages: 16 Posted: 12 Dec 2023
Donghua University, Donghua University, Donghua University, Donghua University, Donghua University, Donghua University, Fujian Agriculture and Forestry University, Donghua University and Donghua University
Downloads 41 (1,170,409)

Abstract:

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Thermoelectric, deep eutectic solvents, wearable device, bacterial cellulose

2.

Coordination Enhanced High-Seebeck Coefficient N-Type Gel-Based Thermocells for Low-Grade Energy Harvesting and N-P Type Connected Devices

Number of pages: 21 Posted: 23 Nov 2023
Donghua University, Donghua University, Donghua University, Donghua University, Donghua University, Donghua University, Donghua University and Donghua University
Downloads 29 (1,332,057)

Abstract:

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Gel, Thermocells, n-Type, n-p Device, Low-grade energy harvesting

3.

Coordination Enhanced High-Se N-Type Gel-Based Tecs for Low-Grade Energy Harvesting and N-P Type Connected Devices

Number of pages: 21 Posted: 06 Oct 2023
Donghua University, Donghua University, Donghua University, Donghua University, Donghua University, Donghua University, Donghua University and Donghua University
Downloads 27 (1,359,097)

Abstract:

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gel, Thermocells, n-Type, n-p Device, Low-grade energy harvesting

4.

Bacterial Cellulose-Based Film with Self-Floating Hierarchical Porous Structure for Efficient Solar-Driven Interfacial Evaporation

Number of pages: 28 Posted: 09 Jun 2023
Donghua University, Donghua University, Donghua University, Donghua University, Donghua University, Donghua University and Donghua University
Downloads 22 (1,424,331)
Citation 1

Abstract:

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bacterial cellulose, foaming treatment, surface topography, self-floating, interface evaporation

5.

Microscopic Charge-Anisotropic Nanochannels for High-Efficiency Osmotic Energy Conversion by Mitigating Ion Concentration Polarization

Number of pages: 25 Posted: 01 Aug 2025
Donghua University, Donghua University, Donghua University, affiliation not provided to SSRN, Donghua University, Donghua University, affiliation not provided to SSRN, Donghua University and Donghua University
Downloads 12 (1,526,714)

Abstract:

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osmotic energy conversion, ion concentration polarization, microscopic charge anisotropy, nanochannel, ion transport