Line 257: | Line 257: | ||
cursor:pointer; | cursor:pointer; | ||
} | } | ||
− | . | + | .content { |
+ | background-color: rgba(240,240,240,0.85); | ||
+ | width:96%; | ||
+ | border: 1px solid #cccccc; | ||
+ | border-radius: 10px; | ||
+ | box-shadow: 1px 1px 3px rgba(0, 0, 0, 0.35); | ||
+ | color: #3d3d3d; | ||
+ | font-size: 18px; | ||
+ | margin-left:2%; | ||
+ | margin-top:50px; | ||
+ | padding: 10px 30px; | ||
+ | } | ||
+ | .imground { | ||
+ | width:100%; | ||
+ | margin-left:2%; | ||
+ | border-radius: 10px 10px 10px 10px; | ||
+ | } | ||
+ | .introimg { | ||
+ | width:80%; | ||
+ | margin-left:10%; | ||
+ | border-radius: 10px 10px 10px 10px; | ||
+ | } | ||
+ | |||
+ | .contentBorder { | ||
+ | border: 1px solid #aaaaaa; | ||
+ | border-radius: 7px; | ||
+ | box-shadow: 2px 2px 6px rgba(0, 0, 0, 0.35); | ||
+ | } | ||
+ | .ContentHeader { | ||
+ | color: #3d3d3d; | ||
+ | font-size: 30px; | ||
+ | font-weight: bold; | ||
+ | margin-bottom: 5px; | ||
+ | margin-left: 15px; | ||
+ | } | ||
</style> | </style> | ||
<head class="no-skrollr"> | <head class="no-skrollr"> | ||
Line 313: | Line 347: | ||
</div> | </div> | ||
</nav> | </nav> | ||
− | <div | + | <div data-0="opacity:1;top:3%;transform:rotate(0deg);transform-origin:0 0;" data-300="opacity:0;top:-10%;transform:rotate(-90deg);"> |
− | + | <img class="introimg" src="https://static.igem.org/mediawiki/2016/2/26/Intro-image.jpg"> | |
− | + | ||
− | + | ||
− | + | ||
− | + | ||
− | <img src="https://static.igem.org/mediawiki/2016/2/26/Intro-image.jpg | + | |
</div> | </div> | ||
− | + | <div class="content" style="margin-top:30%" data-0="display:block;top:100%;" data-200="top:30%;" data-2300="top:-300%;" > | |
− | + | <div class="row"> | |
− | <div | + | <div class="col-lg-6"> |
− | + | <img class="imground" src="https://static.igem.org/mediawiki/2016/5/5d/Plan_1_V2.jpg"> | |
− | + | ||
− | + | ||
</div> | </div> | ||
− | + | <div class="col-lg-6"> | |
− | <div | + | Artificial photosynthesis represents a promising solution for energy issues, however, the efficiency, robustness, and scalability does not meet the requirements of industrial applications. We proposed and demonstrated a sun-powered biofilm-interfaced artificial hydrogen-producing system, Solar Hunter, that could potentially solve the issues above. Biofilm-anchored nanorods can efficiently convert photons to electrons, which seamlessly tap into the electron chain of engineered strain carrying FeFe hydrogenase gene cluster, thereby achieving high-efficiency hydrogen production. Furthermore, the intrinsic adherence of biofilms towards various interfaces allows us to grow biofilms on easy-separation micro-beads, therefore facilitating recyclable usage of the biofilm-anchored NRs and endowing. |
− | + | ||
− | + | ||
− | + | ||
</div> | </div> | ||
− | |||
− | |||
− | |||
− | |||
− | |||
− | |||
</div> | </div> | ||
− | <div | + | <div class="row" style="margin-top:80px"> |
− | + | <div class="col-lg-8"> | |
− | + | Artificial photosynthesis represents a promising solution for energy issues, however, the efficiency, robustness, and scalability does not meet the requirements of industrial applications. We proposed and demonstrated a sun-powered biofilm-interfaced artificial hydrogen-producing system, Solar Hunter, that could potentially solve the issues above. Biofilm-anchored nanorods can efficiently convert photons to electrons, which seamlessly tap into the electron chain of engineered strain carrying FeFe hydrogenase gene cluster, thereby achieving high-efficiency hydrogen production. Furthermore, the intrinsic adherence of biofilms towards various interfaces allows us to grow biofilms on. | |
− | + | ||
− | + | ||
</div> | </div> | ||
− | <div id="easing_wrapper" data-0="display:none;" data-2400="display:block;" data-2900="background:rgba(0, 0, 0, 0);color[swing]:rgb(0,0,0);" data-3900="background:rgba(0,0,0,1);color:rgb(255,255,255);" data-4400="top:0%;" | + | <div class="col-lg-4"> |
− | <div id="easing" data-0="display:none;" data-3200="display:block | + | <img class="imground" src="https://static.igem.org/mediawiki/2016/7/71/Biofilm_2.jpg"> |
+ | </div> | ||
+ | </div> | ||
+ | <div class="row" style="margin-top:80px"> | ||
+ | <div class="col-lg-4"> | ||
+ | <img class="imground" src="https://static.igem.org/mediawiki/2016/5/5c/Hydrogenase_2.jpg"> | ||
+ | </div> | ||
+ | <div class="col-lg-8"> | ||
+ | Artificial photosynthesis represents a promising solution for energy issues, however, the efficiency, robustness, and scalability does not meet the requirements of industrial applications. We proposed and demonstrated a sun-powered biofilm-interfaced artificial hydrogen-producing system, Solar Hunter, that could potentially solve the issues above. Biofilm-anchored nanorods can efficiently convert photons to electrons, which seamlessly tap into the electron chain of engineered strain carrying FeFe hydrogenase gene cluster, thereby achieving high-efficiency hydrogen production. Furthermore, the intrinsic adherence of biofilms towards various interfaces allows us to grow biofilms on. | ||
+ | </div> | ||
+ | |||
+ | </div> | ||
+ | <div class="row" style="margin-top:80px"> | ||
+ | |||
+ | <div style="width:66%"> | ||
+ | Artificial photosynthesis represents a promising solution for energy issues, however, the efficiency, robustness, and scalability does not meet the requirements of industrial applications. We proposed and demonstrated a sun-powered biofilm-interfaced artificial hydrogen-producing system, Solar Hunter, that could potentially solve the issues above. Biofilm-anchored nanorods can efficiently convert photons to electrons, which seamlessly tap into the electron chain of engineered strain carrying FeFe hydrogenase gene cluster, thereby achieving high-efficiency hydrogen production. Furthermore, the intrinsic adherence of biofilms towards various interfaces allows us to grow biofilms on. | ||
+ | </div> | ||
+ | <div style="width:33%"> | ||
+ | <img class="imground" src="https://static.igem.org/mediawiki/2016/6/6a/Nanomaterials_2.jpg"> | ||
+ | </div> | ||
+ | </div> | ||
+ | </div> | ||
+ | <div id="easing_wrapper" data-0="display:none;" data-2400="display:block;" data-2900="background:rgba(0, 0, 0, 0);color[swing]:rgb(0,0,0);" data-3900="background:rgba(0,0,0,1);color:rgb(255,255,255);" data-4400="top:0%;"> | ||
+ | <div id="easing" data-0="display:none;" data-3200="display:block;left:100%" data-4200="left:25%;"> | ||
<div class="embed-responsive embed-responsive-16by9"> | <div class="embed-responsive embed-responsive-16by9"> | ||
<iframe height="100%" src="https://www.youtube.com/embed/JYpXdKFRm90" frameborder="0" allowfullscreen></iframe> | <iframe height="100%" src="https://www.youtube.com/embed/JYpXdKFRm90" frameborder="0" allowfullscreen></iframe> | ||
</div> | </div> | ||
</div> | </div> | ||
− | </div> | + | </div> |
+ | <div id="bg1" data-0="background-position:0px 0px;" data-end="background-position:-500px -10000px;"></div> | ||
+ | <div id="bg2" data-0="background-position:0px 0px;" data-end="background-position:-500px -8000px;"></div> | ||
+ | <div id="bg3" data-0="background-position:0px 0px;" data-end="background-position:-500px -6000px;"></div> | ||
<script> | <script> | ||
var s = skrollr.init({ | var s = skrollr.init({ |
Revision as of 09:08, 19 October 2016