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1. Paper‐Based Hydroelectric Generators for Water Evaporation‐Induced Electricity Generation.

2. Improvement of breakdown and flashover properties against thermal aging of oil paper insulation through addition of TiO2 nanoparticles.

3. Influence of oil–paper configuration on electric field distribution of main insulation structure on valve‐side winding of UHV‐DC converter transformer.

4. Measurement of dissolved decay products of transformer oil using D‐shaped plastic optical fibre as a sensor.

5. Effect of moisture content on the accuracy and economic feasibility of oil–paper insulation prediction model.

6. Effect of moisture content on the accuracy and economic feasibility of oil–paper insulation prediction model.

7. Investigation on space charge properties of Nomex insulation paper in the mining dry type transformer during hygrothermal ageing.

8. HST calculation of a 10 kV oil‐immersed transformer with 3D coupled‐field method.

9. Cellular, Mineralized, and Programmable Cellulose Composites Fabricated by 3D Printing of Aqueous Pastes Derived from Paper Wastes and Microfibrillated Cellulose.

10. Investigation on distribution of electro‐thermal coupled field and improved design of ±1100 kV converter valve‐side bushing.

11. Investigation of AC breakdown properties of paper insulators and enamel insulation impregnated with rice oil, corn oil and peanut oil for transformers.

12. Estimation of paper conductivity from short duration polarisation–depolarisation current for diagnosis of power transformer.

13. Bacteria‐in‐paper, a versatile platform to study bacterial ecology.

14. Influence of charging voltage magnitude on time domain dielectric response of oil–paper insulation.

15. Effect of the oil‐paper insulation aging on partial discharge characteristics in a hemispherical surface model.

16. Modelling the low‐frequency electrode dielectric response based on transformer equivalent oil‐paper insulation model.

17. Kirigami Patterning of MXene/Bacterial Cellulose Composite Paper for All-Solid-State Stretchable Micro-Supercapacitor Arrays.

18. Neural network–based methodology to study effects of oil properties on induction period evaluated from response of oil‐paper insulation employing mineral oil, ester, and mixture.

19. Method for predicting the remaining life of oil–paper insulation system based on stochastic degradation process.

20. Time‐varying model for the effective diagnosis of oil‐paper insulation used in power transformers.

21. Effects of waveform parameters on the breakdown characteristics of OIP subjected to impulse voltages and evaluation method for waveform equivalence.

22. Understanding the ageing behaviour of transformer oil–paper insulation with ester and mixed dielectric fluids.

23. Study on FDS characteristics of oil‐immersed paper insulation bushing under non‐uniform moisture content.

24. Effect of temperature on the production and diffusion behaviour of furfural in oil–paper insulation systems.

25. Estimation of paper‐moisture in transformer insulation employing dielectric spectroscopy data.

26. Effect of measurement temperature on power transformer insulation diagnosis using frequency‐domain spectroscopy.

27. Modelling of frequency characteristics of the oil‐paper compound insulation based on the fractional calculus.

29. Quantitative diagnosis of moisture content in oil‐paper condenser bushing insulation based on frequency domain spectroscopy and polarisation and depolarisation current.

30. Modelling the low‐frequency dielectric response test of insulation oil.

31. Reducing frequency domain spectroscopy measurement time for condition monitoring of transformer oil‐paper insulation using non‐sinusoidal excitations.

32. Inhibition method for the degradation of oil–paper insulation and corrosive sulphur in a transformer using adsorption treatment.

33. Effect of an electric field on copper sulphide deposition in oil‐impregnated power transformers.

34. Understanding and analysis on frequency dielectric parameter for quantitative diagnosis of moisture content in paper–oil insulation system.

35. Investigations of dielectric monitoring on an energised transformer oil–paper insulation system.

36. Surface roughness characterisation using optical feedback interferometry.

37. White Light‐Emitting Diodes: Highly Efficient and Stable White Light‐Emitting Diodes Using Perovskite Quantum Dot Paper (Adv. Sci. 24/2019).

38. Highly Efficient and Stable White Light‐Emitting Diodes Using Perovskite Quantum Dot Paper.

39. Paper‐based flexible piezoelectric nanogenerator using fibrous polymer/piezoelectric nanoparticle composite material.

40. Paper‐based capillary actuation of liquid metal.