2007 Toyota Prius Hybrid Get 40+ Mpg 1 Owner Clean Carfax Auto No Reserve on 2040-cars
Trenton, New Jersey, United States
Vehicle Title:Clear
Fuel Type:Hybrid-Electric
For Sale By:Dealer
Transmission:Automatic
Make: Toyota
Warranty: Unspecified
Model: Prius
Mileage: 107,831
Options: CD Player
Sub Model: 5dr HB
Safety Features: Anti-Lock Brakes
Exterior Color: Silver
Power Options: Power Windows
Interior Color: Gray
Number of Cylinders: 4
Toyota Prius for Sale
Electric ev mode installed! go on only electric up to 34mph! car charges itself!
2005 toyota prius 1-owner 48/45 mpg clean loaded no reserve
2007 toyota prius touring 1-owner clean loaded no reserve!!!
New 2013 toyota prius c for just $18,988 plus your get 0% for 60 months(US $18,988.00)
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2012 toyota prius
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Auto blog
Toyota: One Bold Choice
Mon, Feb 2 2015Toyota paired paralympian Amy Purdy and the incomparable words of Muhammad Ali in its 2015 Super Bowl spot, How Great I Am. Interspersing cuts of Purdy triumphing over her disability with images of the new-for-2015 Camry, Toyota tied its ad in with the simple hastag, #OneBoldChoice. That said, we aren't sure how this spot will play for those who aren't familiar with Purdy's triumphant story. We've already sampled the refreshed Camry in a lengthy and comprehensive review, so head over and have a look.
Recharge Wrap-up: Toyota allowed to inspect own hydrogen tanks, Telsa tour reveals expansion
Tue, Sep 2 2014Japan's Ministry of Economy, Trade and Ministry has certified Toyota to self-inspect its high-pressure hydrogen tanks. The approval allows more freedom in production timing, as outside inspectors previously had to be on site during the manufacture of hydrogen tanks for vehicle prototypes. Toyota has passed the stringent standards to become a registered manufacturer of the 700-bar hydrogen tanks, which the company will use in its upcoming fuel cell vehicle (FCV). With the improved efficiency this certification allows in the manufacturing process, Toyota believes it will help to lower the cost of the FCV. Read more in the press release below. A look inside Telsa's fremont Factory shows thriving activity and increased capacity. Analyst Trip Chowdhry, in a rare tour of the factory, describes a bustling facility capable of producing the Model X and Model III alongside the Model S. A part of the floor labeled "Driver Assist" suggests to Teslarati that Tesla is researching a self-driving car. Chowdhry reports that the factory lobby was "busy with European suppliers and Asian suppliers." He also found an energized workforce and culture similar to Silicon Valley startups. Read more at International Business Times. Mahindra has introduced a premium version of the e2o electric car, made in partnership with Reva. The car features a range of almost 75 miles, power steering, infotainment, rear-view parking camera, driver information display and an emergency power reserve feature, called REVive, offering an extra five miles of range activated through a smartphone. Mahindra also launched a program called "Goodbye Fuel, Hello Electric" in which customers pay to use the e2o by the mile. Learn more at The Indian Express. Toyota Approved to Self-inspect and Manufacture Hydrogen Tanks for FCVs Toyota City, Japan, August 29, 2014-Toyota Motor Corporation has received approval from Japan's Ministry of Economy, Trade and Industry (METI) to self-inspect and manufacture high-pressure hydrogen tanks for fuel cell vehicles (FCVs). This makes Toyota the first company to become a registered manufacturer of 70 MPa (700 bar) hydrogen tanks under Japan's High Pressure Gas Safety Act, revised in 1997 by METI. Toyota will now be able to increase the efficiency of the process of manufacturing safe high-pressure hydrogen tanks that ensure customer confidence.
Toyota claims hydrogen fuel cell breakthrough
Tue, May 19 2015Platinum isn't cheap. And it's a necessary component of hydrogen fuel-cell technology. Which means that Toyota's recent discovery of a way to better analyze how platinum breaks down is a bit of an H2 vehicle breakthrough. Toyota worked with the Japan Fine Ceramics Center (JFCC) to observe nanometer-sized platinum particles and, specifically, how they deteriorate. Platinum is used as a catalyst for when electrons are stripped away from the hydrogen molecule to create an electrical charge and when hydrogen ions and electrons mix with oxygen to create water vapor. So, when platinum gets more course during the countless chemical reactions inside of fuel cells, things slow down. Now that Toyota says it's figured out a better way to observe this process, greater efficiency and durability within the fuel-cell process of electricity production are likely to follow, though more chemistry study will be needed to figure out how that will work. Still, it's topical because Toyota last year started producing the world's first production hydrogen fuel-cell vehicle. The Japanese automaker debuted sales of the Mirai fuel-cell vehicle in Japan late last year and plans to start selling the car in California this fall (the car will be priced at $57,500). Toyota also plans to boost Mirai production to about 2,000 units in 2016 from about 700 this year. Take a look at Toyota's documents and video below. R&D Breakthrough Sets Stage for More Efficient, Durable Fuel Cell Stacks Toyota City, Japan, May 18, 2015—A breakthrough in the real-time observation of fuel cell catalyst degradation could lead to a new generation of more efficient and durable fuel cell stacks. Toyota Motor Corporation and Japan Fine Ceramics Center (JFCC) have developed a new observation technique that allows researchers to monitor the behavior of nanometer-sized particles of platinum during chemical reactions in fuel cells, so that the processes leading to reduced catalytic reactivity can be observed. Platinum is an essential catalyst for the electricity-producing chemical reactions occurring between oxygen and hydrogen in fuel cell stacks. Reduced reactivity is the result of "coarsening" of platinum nanoparticles—a process whereby the nanoparticles increase in size and decrease in surface area. Up until now, however, it has not been possible to observe the processes leading to coarsening, making it difficult to analyze the root causes.

































