This paper reports the study of in-situ deposition temperature (ranging from 20°C to 80°C) effects on Parylene-C properties in terms of glass transition temperature (T_g), β-relaxation temperature (T_β), Young's modulus and crystallinity (including crystallite size). The results show that the Parylene-C (PA-C) thin film deposited at higher deposition temperature exhibits higher T_g and T_β, revealing that the movement of the molecular backbones is further frozen and restricted. It is physically consistent with the data showing that higher deposition temperature induces greater degree of crystallinity and larger Young's modulus. With the new knowledge, Parylene-C thin film with properties tailored to various requirements could be achieved by...
Neural interface devices have been developed for neural science and neuroprosthetics applications to...
Thermal effects accompanying the vacuum deposition of poly-para-xylene (Parylene N) at different tem...
Thermal effects accompanying the vacuum deposition of poly-para-xylene (Parylene N) at different tem...
This paper reports the study of in-situ deposition temperature (ranging from 20°C to 80°C) effects o...
This paper reports the study of in-situ deposition temperature (ranging from 20°C to 80°C) effects o...
This paper reports the study of in-situ deposition temperature (ranging from 20°C to 80°C) effects o...
The glass transition temperature of as-deposited parylene-C is first measured to be 50°C with a ramp...
The glass transition temperature of as-deposited parylene-C is first measured to be 50°C with a ramp...
The glass transition temperature of as-deposited parylene-C is first measured to be 50°C with a ramp...
We present a comparative study of the viscoelasticity of parylene C (PPXC) by using Nano-DMA (Dynami...
We present a comparative study of the viscoelasticity of parylene C (PPXC) by using Nano-DMA (Dynami...
Biocompatible polymer films demonstrating excellent thermal stability are highly desirable for high-...
We present a comparative study of the viscoelasticity of parylene C (PPXC) by using Nano-DMA (Dynami...
This paper reports the influence of thermal annealing on the residual stress in parylene-c thin-film...
The application of poly(p-xylylene)s as barrier and passivation layer is limited by the high tensile...
Neural interface devices have been developed for neural science and neuroprosthetics applications to...
Thermal effects accompanying the vacuum deposition of poly-para-xylene (Parylene N) at different tem...
Thermal effects accompanying the vacuum deposition of poly-para-xylene (Parylene N) at different tem...
This paper reports the study of in-situ deposition temperature (ranging from 20°C to 80°C) effects o...
This paper reports the study of in-situ deposition temperature (ranging from 20°C to 80°C) effects o...
This paper reports the study of in-situ deposition temperature (ranging from 20°C to 80°C) effects o...
The glass transition temperature of as-deposited parylene-C is first measured to be 50°C with a ramp...
The glass transition temperature of as-deposited parylene-C is first measured to be 50°C with a ramp...
The glass transition temperature of as-deposited parylene-C is first measured to be 50°C with a ramp...
We present a comparative study of the viscoelasticity of parylene C (PPXC) by using Nano-DMA (Dynami...
We present a comparative study of the viscoelasticity of parylene C (PPXC) by using Nano-DMA (Dynami...
Biocompatible polymer films demonstrating excellent thermal stability are highly desirable for high-...
We present a comparative study of the viscoelasticity of parylene C (PPXC) by using Nano-DMA (Dynami...
This paper reports the influence of thermal annealing on the residual stress in parylene-c thin-film...
The application of poly(p-xylylene)s as barrier and passivation layer is limited by the high tensile...
Neural interface devices have been developed for neural science and neuroprosthetics applications to...
Thermal effects accompanying the vacuum deposition of poly-para-xylene (Parylene N) at different tem...
Thermal effects accompanying the vacuum deposition of poly-para-xylene (Parylene N) at different tem...