An imaging system including a plurality of developing stations for developing an image on a sheet, a releasably removable image receiving module having at least one exposing unit and an image receiving substrate and a support structure for receiving the releasably removable image receiving module. The releasably removable image receiving module is configured to engage the support structure of the system such that the image receiving substrate of the module can be disposed in an operative relationship with the developing stations when the removable module is engaged with the support structure. This imaging system provides a method for upgrading, downgrading or modifying the imaging system that could be substantially performed by an end user. This imaging system may be embodied in a monocolor or multicolor printer, copier, facsimile machine or other electrophotographic based apparatus.
Richard Shaun Welches - Amherst NH, US Daniel P. Hohm - Nashua NH, US Jian Wen - North Andover MA, US Kevin E LeRow - Lowell MA, US Richard Griessel - Derry NH, US Thomas O'Reilly - Hollis NH, US
The invention in the simplest form is an improved variable speed engine/generator set with an integrated power conditioning system and control method, used to generate high quality AC power with optimum fuel efficiency and reduced emissions. The variable speed generator control scheme allows for load adaptive speed control of engine and generator field. The transformerless power inverter topology and control method provides the necessary output frequency, voltage and/or current waveform regulation, harmonic distortion rejection, and provides for single phase, or unbalanced loading.
The present invention relates generally to reinforced carbon nanotubes, and more particularly to reinforced carbon nanotubes having a plurality of microparticulate carbide or oxide materials formed substantially on the surface of such reinforced carbon nanotubes composite materials. In particular, the present invention provides reinforced carbon nanotubes (CNTs) having a plurality of boron carbide nanolumps formed substantially on a surface of the reinforced CNTs that provide a reinforcing effect on CNTs, enabling their use as effective reinforcing fillers for matrix materials to give high-strength composites. The present invention also provides methods for producing such carbide reinforced CNTs.
The invention in one embodiment is an improved variable speed engine/generator set with an integrated power conditioning system and control method including load shedding to generate high quality AC power with improved fuel efficiency and reduced emissions. The variable speed generator control scheme allows for load adaptive speed control of engine and generator field. The transformerless power inverter topology and control method provides the necessary output frequency, voltage and/or current waveform regulation, harmonic distortion rejection, and provides for single phase, or unbalanced loading.
Zhifeng Ren - Newton MA, US Jian Wen - Newton MA, US Jinghua Chen - Chestnut Hill MA, US Zhongping Huang - Belmont MA, US Dezhi Wang - Wellesley MA, US
The present invention provides conductive carbon nanotube (CNT) electrode materials comprising aligned CNT substrates coated with an electrically conducting polymer, and the fabrication of electrodes for use in high performance electrical energy storage devices. In particular, the present invention provides conductive CNTs electrode material whose electrical properties render them especially suitable for use in high efficiency rechargeable batteries. The present invention also provides methods for obtaining surface modified conductive CNT electrode materials comprising an array of individual linear, aligned CNTs having a uniform surface coating of an electrically conductive polymer such as polypyrrole, and their use in electrical energy storage devices.
Varied Morphology Carbon Nanotubes And Method For Their Manufacture
Wenzhi Li - Brookline MA, US Jian Guo Wen - Champaign IL, US Zhi Feng Ren - Roslindale MA, US
Assignee:
The Trustees of Boston College - Chestnut Hill MA
International Classification:
D01F 9/12
US Classification:
4234473, 4272491, 977843
Abstract:
The present invention describes the preparation of carbon nanotubes of varied morphology, catalyst materials for their synthesis. The present invention also describes reactor apparatus and methods of optimizing and controlling process parameters for the manufacture carbon nanotubes with pre-determined morphologies in relatively high purity and in high yields. In particular, the present invention provides methods for the preparation of non-aligned carbon nanotubes with controllable morphologies, catalyst materials and methods for their manufacture.
Zhifeng Ren - Newton MA, US Jian Wen - Newton MA, US Jinghua Chen - Chestnut Hill MA, US Zhongping Huang - Belmont MA, US Dezhi Wang - Wellesley MA, US
Assignee:
The Trustees of Boston College - Chestnut Hill MA
International Classification:
H01M 4/66
US Classification:
205159, 205317, 204294
Abstract:
The present invention provides conductive carbon nanotube (CNT) electrode materials comprising aligned CNT substrates coated with an electrically conducting polymer, and the fabrication of electrodes for use in high performance electrical energy storage devices. In particular, the present invention provides conductive CNTs electrode material whose electrical properties render them especially suitable for use in high efficiency rechargeable batteries. The present invention also provides methods for obtaining surface modified conductive CNT electrode materials comprising an array of individual linear, aligned CNTs having a uniform surface coating of an electrically conductive polymer such as polypyrrole, and their use in electrical energy storage devices.
Zhifen Ren - Newton MA, US Jian Guo Wen - Newton MA, US Jing Y. Lao - Chestnut Hill MA, US Wenzhi Li - Brookline MA, US
Assignee:
The Trustees of Boston College - Chestnut Hill MA
International Classification:
C23C 16/22
US Classification:
4272491, 4272493, 4272495, 427250, 264642, 264682
Abstract:
Methods for producing reinforced carbon nanotubes having a plurality of microparticulate carbide or oxide materials formed substantially on the surface of such reinforced carbon nanotubes composite materials are disclosed. In particular, the present invention provides reinforced carbon nanotubes (CNTs) having a plurality of boron carbide nanolumps formed substantially on a surface of the reinforced CNTs that provide a reinforcing effect on CNTs, enabling their use as effective reinforcing fillers for matrix materials to give high-strength composites. The present invention also provides methods for producing such carbide reinforced CNTs.
Name / Title
Company / Classification
Phones & Addresses
Jian Wen Administrator
Jjj Microsystems, Inc. Commercial Physical and Biological Research
150 Chadwick St, North Andover, MA 01845
Jian Wen President
OFO EXPRESS, INC Business Services at Non-Commercial Site · Nonclassifiable Establishments
22029 Birds Eye Dr, Diamond Bar, CA 91765 18536 Mescal St, Whittier, CA 91748
Jian Wen President
G. W. DEVELOPMENT CORP., INC
494 Pleasant St, Malden, MA 02148 San Francisco, CA 94118
Teradata - Greater San Diego Area Jun 2011 - Sep 2011
Intern Software Engineer
Teradata Jun 2010 - Dec 2010
Intern Software Engineer
Beijing Institution of Science Information and Technology - Haidian, Beijing, China Aug 2005 - Apr 2006
Intern Software Engineer
Education:
University of California, Riverside 2009 - 2013
PhD, Computer Science
Northeastern University 2006 - 2010
Central University of Finance and Economics 2002 - 2006
Bachelor, Information Management and Information System
Aug 2009 to 2000 Senior Scientist, R&D Advanced Development and TechnologyMassachusetts Institute of Technology Cambridge, MA Aug 2007 to Aug 2009 Post-doctoral Associate, Department of Chemical EngineeringUniversity of Virginia Charlottesville, VA Aug 2002 to Aug 2007 PhD research associate, Interdisciplinary Program of BiophysicsKangtai Biological Products (China) CO. LTD Shenzhen, CN Jun 2003 to Dec 2003 Marketing Supervisor
Education:
University of Massachusetts Amherst Amherst, MA 2014 MBAUniversity of Virginia 2007 PhDWuhan University 1999 to 2002 BS in Chemistry
Skills:
In-vitro Diagnostics, Microfluidics, Electrochemical bio-sensors, Immune-sensors, Formulation and reprocessing, Design control, Diagnostic development process. Whole blood sample preparation, plasma separation, DNA extraction, PCR, ELISA, Electrophoresis, Florescent assay, Protein NMR structure. Six-Sigma Green Belt, Design for Six Sigma, Voice of Customer (VOC), KJ analysis, House of Quality (QFD), Pugh, DOE, DFM/DFA. Minitab.
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