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1. Approaching the Intrinsic Properties of Moir\'e Structures Using Atomic Force Microscopy Ironing

2. Pencil and Paper Electronics: An Accessible Approach to Teaching Basic Physics Concepts

3. Strong electrostatic control of excitonic features in MoS$_2$ by a free-standing ultrahigh-$\kappa$ ferroelectric perovskite

5. Paper-based Flexible Supercapacitors with drawn van der Waals materials

6. An automated system for strain engineering and straintronics of 2D materials

7. Strongly anisotropic strain-tunability of excitons in exfoliated ZrSe$_3$

8. Chip-integrated van der Waals PN heterojunction photodetector with low dark current and high responsivity

9. Broadband-tunable spectral response of perovskite-on-paper photodetectors using halide mixing

12. In-plane anisotropic optical and mechanical properties of two-dimensional MoO$_3$

13. Integrating van der Waals materials on paper substrates for electrical and optical applications

14. Optical microscopy-based thickness estimation in thin GaSe flakes

15. Integrating superconducting van der Waals materials on paper substrates

16. Biaxial versus uniaxial strain tuning of single-layer MoS$_2$

17. Raman Fingerprint of Pressure-Induced Phase Transitions in TiS3 Nanoribbons: Implications for Thermal Measurements under Extreme Stress Conditions

18. Engineering symmetry breaking in two-dimensional layered materials

20. Naturally occurring van der Waals materials

21. Drawing WS2 thermal sensors on paper substrates

22. Long-Term Stabilization of Two-Dimensional Perovskites by Encapsulation with Hexagonal Boron Nitride

23. Superlattices based on van der Waals 2D materials

24. Thickness identification of thin InSe by optical microscopy methods

25. Optical-based thickness measurement of MoO$_3$ nanosheets

26. Giant piezoresistive effect and strong band gap tunability in ultrathin InSe upon biaxial strain

27. InSe Schottky diodes based on van der Waals contacts

28. The role of traps in the photocurrent generation mechanism in thin In-Se photodetectors

29. Microheater actuators as a versatile platform for strain engineering in 2D materials

30. Strain engineering in single-, bi- and tri-layer MoS2, MoSe2, WS2 and WSe2

31. Tunable Photodetectors via in situ Thermal Conversion of TiS$_3$ to TiO$_2$

32. Direct transformation of crystalline MoO$_3$ into few-layers MoS$_2$

33. A system to test 2D optoelectronic devices in high vacuum

34. MoS$_2$-on-paper optoelectronics: drawing photodetectors with van der Waals semiconductors beyond graphite

35. Multi-terminal electronic transport in boron nitride encapsulated TiS$_3$ nanosheets

36. InSe: a two-dimensional semiconductor with superior flexibility

37. An inexpensive system for the deterministic transfer of 2D materials

38. A system for the deterministic transfer of 2D materials under inert environmental conditions

40. Tailored Graphenic Structures Directly Grown on Titanium Oxide Boost the Interfacial Charge Transfer

41. Symmetry breakdown in franckeite: spontaneous strain, rippling and interlayer moir\'e

42. Biaxial strain tuning of interlayer excitons in bilayer MoS2

43. Anisotropic buckling of few-layer black phosphorus

44. Thickness determination of MoS2, MoSe2, WS2 and WSe2 on transparent stamps used for deterministic transfer of 2D materials

45. Mechanical and liquid phase exfoliation of cylindrite: a natural van der Waals superlattice with intrinsic magnetic interactions

46. Fast Yet Quantum-Efficient Few-Layer Vertical MoS2 Photodetectors

47. Polarization-sensitive and broadband photodetection based on a mixed-dimensionality TiS3/Si p-n junction

48. Revisiting the buckling metrology method to determine the Young's modulus of 2D materials

49. A strain tunable single-layer MoS2 photodetector

50. Moir\'e Intralayer Excitons in a MoSe$_2$/MoS$_2$ Heterostructure

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