Trending...
- Plaza Mexico presents "Good Friday Celebration" - 120
- California: Governor Newsom announces appointments 3.20.2026
- California announces 300 wildfire projects fast-tracked in 300 days
TEMPE, Ariz. - Californer -- Recent testing: initial contact angles of 45 degrees to 75 degrees were measured. After plasma treatment in our AutoGlow 1000 the contact angle was measured < 2 degrees. Testing performed in the AutoGlow 1000 production plasma cleaner.
Plasma Treatment is used to modify silicon wafer surface properties, specifically targeting hydrophilicity. This process involves exposing the silicon substrate to a low-pressure plasma environment, typically utilizing gases such as oxygen or argon/hydrogen mixture. Through the interaction between plasma species and the silicon surface, a cascade of intricate chemical reactions occurs, leading to the formation of hydrophilic functional groups, primarily hydroxyl (-OH) moieties, on the surface.
The plasma-induced surface modification proceeds through sequential steps. Initially, energetic plasma species, including ions, electrons, and radicals, impact the silicon surface, breaking surface bonds--forming reactive species like silicon radicals and dangling bonds. Subsequently, these species react with surrounding gas molecules, predominantly oxygen or hydrogen, resulting in the incorporation of oxygen or hydrogen atoms onto the silicon surface.
More on The Californer
The introduction of these functional groups, notably hydroxyl (-OH) groups, alters the silicon wafer's surface chemistry, rendering it hydrophilic. Hydroxyl groups exhibit a strong affinity for water molecules due to their polar nature, facilitating water adsorption and enhancing surface wetting. This transition, from hydrophobic to hydrophilic surfaces, holds significant importance in various technological domains, notably microfluidics, where precise control over surface wettability is vital for fluid manipulation and bioanalytical applications. Also important for bonding applications.
In semiconductor manufacturing, plasma treatment is particularly relevant for enhancing adhesion between silicon surfaces and functional layers like dielectric films or photoresists, thereby improving device performance and reliability. Moreover, the ability to tailor surface properties at the nanoscale level enables the fabrication of advanced nanostructures and surface patterns, paving the way for the development of innovative electronic and photonic devices.
More on The Californer
Plasma treatment emerges as a sophisticated methodology, offering unparalleled precision in tailoring silicon wafer surfaces. Our test show results to increase the hydrophilic surfaces to reducing contact angles. Plasma treatment plays a pivotal role in various applications such as increasing bonding strength.
Testing was performed on the AutoGlow 1000 plasma system configured for RIE and Direct Plasma.
Plasma Treatment is used to modify silicon wafer surface properties, specifically targeting hydrophilicity. This process involves exposing the silicon substrate to a low-pressure plasma environment, typically utilizing gases such as oxygen or argon/hydrogen mixture. Through the interaction between plasma species and the silicon surface, a cascade of intricate chemical reactions occurs, leading to the formation of hydrophilic functional groups, primarily hydroxyl (-OH) moieties, on the surface.
The plasma-induced surface modification proceeds through sequential steps. Initially, energetic plasma species, including ions, electrons, and radicals, impact the silicon surface, breaking surface bonds--forming reactive species like silicon radicals and dangling bonds. Subsequently, these species react with surrounding gas molecules, predominantly oxygen or hydrogen, resulting in the incorporation of oxygen or hydrogen atoms onto the silicon surface.
More on The Californer
- Governor Newsom launches campaign to recruit young men, and all Californians, to serve communities and gain job skills
- VCCCD Announces Ventura College Presidential Finalists
- Squeegex Expands Window Cleaning and Exterior Services Across 30+ San Diego Neighborhoods
- Long Beach: City Recognizes Tsunami Preparedness Week 2026: Know the Risk. Know the Route.
- Mark Dobosz Makes Donorassess.org Free To Every Nonprofit On The Planet
The introduction of these functional groups, notably hydroxyl (-OH) groups, alters the silicon wafer's surface chemistry, rendering it hydrophilic. Hydroxyl groups exhibit a strong affinity for water molecules due to their polar nature, facilitating water adsorption and enhancing surface wetting. This transition, from hydrophobic to hydrophilic surfaces, holds significant importance in various technological domains, notably microfluidics, where precise control over surface wettability is vital for fluid manipulation and bioanalytical applications. Also important for bonding applications.
In semiconductor manufacturing, plasma treatment is particularly relevant for enhancing adhesion between silicon surfaces and functional layers like dielectric films or photoresists, thereby improving device performance and reliability. Moreover, the ability to tailor surface properties at the nanoscale level enables the fabrication of advanced nanostructures and surface patterns, paving the way for the development of innovative electronic and photonic devices.
More on The Californer
- THE DASH CAM: THINKWARE Launches Big Spring Sale on Select Dash Cam Models
- Genpak Announces Closure of Utah Manufacturing Facility
- Magai V3 Launches to Deliver a Faster, Cleaner, More Capable AI Workspace
- Newborn Care Network Introduces Clinical Standard to Bridge the Six-Week Postpartum Gap
- California: Governor Newsom announces nearly $900 million for cutting-edge transportation systems of the future
Plasma treatment emerges as a sophisticated methodology, offering unparalleled precision in tailoring silicon wafer surfaces. Our test show results to increase the hydrophilic surfaces to reducing contact angles. Plasma treatment plays a pivotal role in various applications such as increasing bonding strength.
Testing was performed on the AutoGlow 1000 plasma system configured for RIE and Direct Plasma.
Source: Glow Research
Filed Under: Technology
0 Comments
Latest on The Californer
- One Circle Foundation Launches Calm & Connected, a New Youth Mental Health Curriculum
- United Hotel Supply Rolls Out Upgraded PTAC & HVAC Solution for Hotels & Motels in the U.S
- Blackfoot Communications Expands Into New Rural Digital Opportunity Fund With netElastic vBNG and CGNAT Networking Software
- Colette Barris's Open Letter To Revolt's Detavio Samuels 'The BlackPrint' Interview Of Kenya Barris
- NYC Composer/Educator Launches Debut Children's Book to Fantastic Reviews
- EFA Announces 2026 Editorial Rate Chart
- Red5 Taps PubNub to Power the Next Era of Real-Time Interactive Streaming
- Connect Convenes Regional Leaders to Amplify San Diego's Innovation Momentum
- Shoutout Joseph Neibich aka Nybyk
- Meet Joseph Neibich aka Joseph Nybyk of Beachwood Canyon
- Div Zero: A Spatial Mystery Built for the Evolving Future of Apple Vision Pro
- SoCal Locksmith With 113K YouTube Subscribers Shares Car Theft Prevention Tips
- LARUS Launches Business Continuity Framework for IPv4-Dependent Networks
- 438–444 N. La Cienega Boulevard Trades in West Hollywood's Premier Design Corridor
- California Housing Crisis Sparks Growth: Dave Simmons and StrataX Development Double Down on ADU Expansion
- California and European Commission discuss cooperation to accelerate the global transition to a carbon-neutral, resilient, and equitable future
- California Lutheran University Expands Board of Regents
- KeysCaribbean Offers 'Skip-the-Crowds' Savings With 15 Percent Off April Stays
- California: Governor Newsom announces appointments 3.23.2026
- Breaking the Civilian Barrier: ResuModAI Helps Veterans Translate Military Service into Job Offers in 60 Seconds